For: | Bernstein H, Bernstein C, Payne CM, Dvorak K. Bile acids as endogenous etiologic agents in gastrointestinal cancer. World J Gastroenterol 2009; 15(27): 3329-3340 [PMID: PMC2712893 DOI: 10.3748/wjg.15.3329] |
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URL: | https://www.wjgnet.com/1007-9327/full/v15/i27/3329.htm |
Number | Citing Articles |
1 |
|
2 |
Kishore Vipperla, Stephen J. O’Keefe. Intestinal Microbes, Diet, and Colorectal Cancer. Current Colorectal Cancer Reports 2013; 9(1): 95 doi: 10.1007/s11888-012-0158-x
|
3 |
M. D. Long, J. L. Thorne, J. Russell, S. Battaglia, P. K. Singh, L. E. Sucheston-Campbell, M. J. Campbell. Cooperative behavior of the nuclear receptor superfamily and its deregulation in prostate cancer. Carcinogenesis 2014; 35(2): 262 doi: 10.1093/carcin/bgt334
|
4 |
Suilma Ivette Pérez-Pineda, Lidia Baylón-Pacheco, Patricia Espíritu-Gordillo, Victor Tsutsumi, José Luis Rosales-Encina. Effect of bile acids on the expression of MRP3 and MRP4: An In vitro study in HepG2 cell line. Annals of Hepatology 2021; 24: 100325 doi: 10.1016/j.aohep.2021.100325
|
5 |
Marinella Marzano, Bruno Fosso, Elisabetta Piancone, Giuseppe Defazio, Graziano Pesole, Mariangela De Robertis. Stem Cell Impairment at the Host-Microbiota Interface in Colorectal Cancer. Cancers 2021; 13(5): 996 doi: 10.3390/cancers13050996
|
6 |
Tsung-Yu Tsai, Che-Chen Lin, Cheng-Yuan Peng, Wen-Hsin Huang, Wen-Pang Su, Shih-Wei Lai, Hsuan-Ju Chen, Hsueh-Chou Lai. The association between biliary tract inflammation and risk of digestive system cancers. Medicine 2016; 95(31): e4427 doi: 10.1097/MD.0000000000004427
|
7 |
Ralf Kubitz, Carola Dröge, Stefanie Kluge, Jan Stindt, Dieter Häussinger. Genetic variations of bile salt transporters. Drug Discovery Today: Technologies 2014; 12: e55 doi: 10.1016/j.ddtec.2014.03.006
|
8 |
Jiaqi Dai, Hongxia Wang, Ying Dong, Yinxin Zhang, Jian Wang. Bile Acids Affect the Growth of Human Cholangiocarcinoma via NF-kB Pathway. Cancer Investigation 2013; 31(2): 111 doi: 10.3109/07357907.2012.762781
|
9 |
Marwan Ghabril, Won Kyoo Cho. Practical Hepatic Pathology: A Diagnostic Approach. 2011; : 37 doi: 10.1016/B978-0-443-06803-4.00003-4
|
10 |
Dustin G. Brown, Sangeeta Rao, Tiffany L. Weir, Joanne O’Malia, Marlon Bazan, Regina J. Brown, Elizabeth P. Ryan. Metabolomics and metabolic pathway networks from human colorectal cancers, adjacent mucosa, and stool. Cancer & Metabolism 2016; 4(1) doi: 10.1186/s40170-016-0151-y
|
11 |
Wonwoong Lee, Jinhee Um, Keon-hee Ko, Yong Chan Lee, Bong Chul Chung, Jongki Hong. UHPLC-MS/MS profiling of histidine and bile acid metabolism in human gastric fluid for diagnosis of gastric diseases. Journal of Analytical Science and Technology 2020; 11(1) doi: 10.1186/s40543-020-00218-6
|
12 |
Yamila B. Gándola, Camila Fontana, Mariana A. Bojorge, Tania T. Luschnat, Marcela A. Moretton, Diego A. Chiapetta, Sandra V. Verstraeten, Lorena González. Concentration-dependent effects of sodium cholate and deoxycholate bile salts on breast cancer cells proliferation and survival. Molecular Biology Reports 2020; 47(5): 3521 doi: 10.1007/s11033-020-05442-2
|
13 |
Molly Pratt, Jessica D. Forbes, Natalie C. Knox, Charles N. Bernstein, Gary Van Domselaar. Microbiome-Mediated Immune Signaling in Inflammatory Bowel Disease and Colorectal Cancer: Support From Meta-omics Data. Frontiers in Cell and Developmental Biology 2021; 9 doi: 10.3389/fcell.2021.716604
|
14 |
Rajendra Kumar, Ashmeen Kaur, Divyanshu Rajput, Jian Wu. An Insight on Gut Flora, Colorectal Cancer Mechanism, and Treatment Strategies. Advanced Gut & Microbiome Research 2023; 2023: 1 doi: 10.1155/2023/7429949
|
15 |
Maria Luisa Navacchia, Elena Marchesi, Daniela Perrone. Bile Acid Conjugates with Anticancer Activity: Most Recent Research. Molecules 2020; 26(1): 25 doi: 10.3390/molecules26010025
|
16 |
Elisa Lozano, Laura Sanchez-Vicente, Maria J. Monte, Elisa Herraez, Oscar Briz, Jesus M. Banales, Jose J.G. Marin, Rocio I.R. Macias. Cocarcinogenic Effects of Intrahepatic Bile Acid Accumulation in Cholangiocarcinoma Development. Molecular Cancer Research 2014; 12(1): 91 doi: 10.1158/1541-7786.MCR-13-0503
|
17 |
Yongkun Fang, Cheng Yan, Qi Zhao, Jiaming Xu, Zhuangzhuang Liu, Jin Gao, Hanjian Zhu, Zhujiang Dai, Daorong Wang, Dong Tang. The roles of microbial products in the development of colorectal cancer: a review. Bioengineered 2021; 12(1): 720 doi: 10.1080/21655979.2021.1889109
|
18 |
Di Zhang, Wei Lv, Yue Xu, Zijian Zhang, Song Zeng, Weixun Zhang, Lian Gong, Limei Shao, Min Zhang, Tian He, Yingying Liu, Yuxuan Wang, Ling Liu, Xiaopeng Hu. Microbial bile acid metabolite ameliorates mycophenolate mofetil-induced gastrointestinal toxicity through vitamin D3 receptor. American Journal of Transplantation 2024; 24(7): 1132 doi: 10.1016/j.ajt.2024.02.029
|
19 |
Hsiu‐Li Lin, Hsiu‐Chen Lin, Ching‐Chun Lin, Herng‐Ching Lin. Increased risk of colorectal cancer among patients with biliary tract inflammation: A 5‐year follow‐up study. International Journal of Cancer 2011; 128(2): 447 doi: 10.1002/ijc.25354
|
20 |
Georgina L. Hold. Gastrointestinal Microbiota and Colon Cancer. Digestive Diseases 2016; 34(3): 244 doi: 10.1159/000443358
|
21 |
Negin Nokhandani, Arash Poursheikhani, Mahdyieh Naghavi Alhosseini, Homa Davoodi. Bacteria in Carcinogenesis and Cancer Prevention: A Review Study. International Journal of Cancer Management 2021; 14(2) doi: 10.5812/ijcm.107956
|
22 |
Feng Chen, Xudong Dai, Chang-Chun Zhou, Ke-xin Li, Yu-juan Zhang, Xiao-Ying Lou, Yuan-Min Zhu, Yan-Lai Sun, Bao-Xiang Peng, Wei Cui. Integrated analysis of the faecal metagenome and serum metabolome reveals the role of gut microbiome-associated metabolites in the detection of colorectal cancer and adenoma. Gut 2022; 71(7): 1315 doi: 10.1136/gutjnl-2020-323476
|
23 |
Hao Zhang, Yihui Zhang, Yujie Gong, Jun Zhang, Donghua Li, Yadong Tian, Ruili Han, Yujie Guo, Guirong Sun, Wenting Li, Yanhua Zhang, Xinlong Zhao, Xiaoran Zhang, Pengyu Wang, Xiangtao Kang, Ruirui Jiang. Fasting-Induced Molting Impacts the Intestinal Health by Altering the Gut Microbiota. Animals 2024; 14(11): 1640 doi: 10.3390/ani14111640
|
24 |
Ho Joong Choi, Suk Joon Cho, Ok-Hee Kim, Jin Sook Song, Ha-Eun Hong, Sang Chul Lee, Kee-Hwan Kim, Sang Kuon Lee, Young Kyoung You, Tae Ho Hong, Eun Young Kim, Jung Hyun Park, Gun Hyung Na, Dong Do You, Jae Hyun Han, Jae Woo Park, Bong Jun Kwak, Tae Yun Lee, Joseph Ahn, Hwan Hee Lee, Seung Kyu Kang, Kyu-Seok Hwang, Jae-Kyung Jung, Kwan-Young Jung, Say-June Kim. Efficacy and safety of a novel topical agent for gallstone dissolution: 2-methoxy-6-methylpyridine. Journal of Translational Medicine 2019; 17(1) doi: 10.1186/s12967-019-1943-y
|
25 |
Yoon Jin Choi, Eun Hyo Jin, Joo Hyun Lim, Cheol Min Shin, Nayoung Kim, Kyungdo Han, Dong Ho Lee. Increased Risk of Cancer after Cholecystectomy: A Nationwide Cohort Study in Korea including 123,295 Patients. Gut and Liver 2022; 16(3): 465 doi: 10.5009/gnl210009
|
26 |
Molly Pratt, Jessica D. Forbes, Natalie C. Knox, Gary Van Domselaar, Charles N. Bernstein. Colorectal Cancer Screening in Inflammatory Bowel Diseases—Can Characterization of GI Microbiome Signatures Enhance Neoplasia Detection?. Gastroenterology 2022; 162(5): 1409 doi: 10.1053/j.gastro.2021.12.287
|
27 |
Tohru Saeki, Haruka Inui, Saya Fujioka, Suguru Fukuda, Ayumi Nomura, Yasushi Nakamura, Eun Young Park, Kenji Sato, Ryuhei Kanamoto. Staurosporine synergistically potentiates the deoxycholate-mediated induction of COX-2 expression. Physiological Reports 2014; 2(8): e12143 doi: 10.14814/phy2.12143
|
28 |
Wenxiao Dong, Li Liu, Yan Dou, Mengque Xu, Tianyu Liu, Sinan Wang, Yujie Zhang, Baoru Deng, Bangmao Wang, Hailong Cao. Deoxycholic acid activates epidermal growth factor receptor and promotes intestinal carcinogenesis by ADAM17‐dependent ligand release. Journal of Cellular and Molecular Medicine 2018; 22(9): 4263 doi: 10.1111/jcmm.13709
|
29 |
Hourieh Sadrekarimi, Zhanna R. Gardanova, Morteza Bakhshesh, Farnoosh Ebrahimzadeh, Amirhossein Fakhre Yaseri, Lakshmi Thangavelu, Zahra Hasanpoor, Firoozeh Abolhasani Zadeh, Mohammad Saeed Kahrizi. Emerging role of human microbiome in cancer development and response to therapy: special focus on intestinal microflora. Journal of Translational Medicine 2022; 20(1) doi: 10.1186/s12967-022-03492-7
|
30 |
Kentaro Inamura, Tsuyoshi Hamada, Susan Bullman, Tomotaka Ugai, Shinichi Yachida, Shuji Ogino. Cancer as microenvironmental, systemic and environmental diseases: opportunity for transdisciplinary microbiomics science. Gut 2022; 71(10): 2107 doi: 10.1136/gutjnl-2022-327209
|
31 |
Abhimanyu Aggarwal, Auh Whan Park, Jonathan West. De novo hepatico-gastric stent placement for biliary stricture via percutaneous transhepatic biliary approach. International Journal of Gastrointestinal Intervention 2017; 6(3): 183 doi: 10.18528/gii160027
|
32 |
Alicia H. Chang, Julie Parsonnet. Role of Bacteria in Oncogenesis. Clinical Microbiology Reviews 2010; 23(4): 837 doi: 10.1128/CMR.00012-10
|
33 |
Federica Francescangeli, Maria Laura De Angelis, Ann Zeuner. Dietary Factors in the Control of Gut Homeostasis, Intestinal Stem Cells, and Colorectal Cancer. Nutrients 2019; 11(12): 2936 doi: 10.3390/nu11122936
|
34 |
Ming-Yu Hsieh. Reflections on the association between cholecystectomy, cholelithiasis, and colorectal cancer. Formosan Journal of Surgery 2024; 57(1): 39 doi: 10.1097/FS9.0000000000000081
|
35 |
Jiaqi Dai, Hongxia Wang, Yihui Shi, Ying Dong, Yinxin Zhang, Jian Wang. Impact of bile acids on the growth of human cholangiocarcinoma via FXR. Journal of Hematology & Oncology 2011; 4(1) doi: 10.1186/1756-8722-4-41
|
36 |
Wenbo Chen, Ming Ding, Liyan Ji, Jingjing Yao, Yajuan Guo, Wenxin Yan, Shaofang Yu, Qinghong Shen, Min Huang, Yaqiu Zheng, Yuefang Lin, Ying Wang, Zhongqiu Liu, Linlin Lu, Xin Jin. Bile acids promote the development of HCC by activating the inflammasome. Hepatology Communications 2023; 7(9) doi: 10.1097/HC9.0000000000000217
|
37 |
Weixin Cheng, Xinxin Zhou, Ciliang Jin, Jicheng Wu, Yi Xia, Miaomiao Lu, Yida Yang, Xi Jin, Feng Ji, Ben Wang. Acid-base transformative HADLA micelles alleviate colitis by restoring adaptive immunity and gut microbiome. Journal of Controlled Release 2023; 364: 283 doi: 10.1016/j.jconrel.2023.10.039
|
38 |
Edmund B. Chen, Cori Cason, Jack A. Gilbert, Karen J. Ho. Current State of Knowledge on Implications of Gut Microbiome for Surgical Conditions. Journal of Gastrointestinal Surgery 2018; 22(6): 1112 doi: 10.1007/s11605-018-3755-4
|
39 |
Ajaz A. Bhat, Heng Lu, Mohammed Soutto, Anthony Capobianco, Priyamvada Rai, Alexander Zaika, Wael El-Rifai. Exposure of Barrett’s and esophageal adenocarcinoma cells to bile acids activates EGFR–STAT3 signaling axis via induction of APE1. Oncogene 2018; 37(46): 6011 doi: 10.1038/s41388-018-0388-8
|
40 |
Kishore Vipperla, Stephen J. O'Keefe. Diet, microbiota, and dysbiosis: a ‘recipe’ for colorectal cancer. Food & Function 2016; 7(4): 1731 doi: 10.1039/C5FO01276G
|
41 |
Iris Trefflich, Hanns-Ulrich Marschall, Romina di Giuseppe, Marcus Ståhlman, Andreas Michalsen, Alfonso Lampen, Klaus Abraham, Cornelia Weikert. Associations between Dietary Patterns and Bile Acids—Results from a Cross-Sectional Study in Vegans and Omnivores. Nutrients 2019; 12(1): 47 doi: 10.3390/nu12010047
|
42 |
Isabel Aranda-Olmedo, Luis A. Rubio. Dietary legumes, intestinal microbiota, inflammation and colorectal cancer. Journal of Functional Foods 2020; 64: 103707 doi: 10.1016/j.jff.2019.103707
|
43 |
Laura A. Kresty, Katherine M. Weh, Bree Zeyzus-Johns, Laura N. Perez, Amy B. Howell. Cranberry proanthocyanidins inhibit esophageal adenocarcinoma in vitro and in vivo through pleiotropic cell death induction and PI3K/AKT/mTOR inactivation. Oncotarget 2015; 6(32): 33438 doi: 10.18632/oncotarget.5586
|
44 |
T. V. Radhakrishna Mullapudi, Punna Rao Ravi, Ganapathi Thipparapu. Simultaneous determination of seven bile acids to study the effect of ivermectin on their plasma levels in rat by UHPLC–MS/MS. Journal of Analytical Science and Technology 2023; 14(1) doi: 10.1186/s40543-023-00408-y
|
45 |
Francesca Romana Ponziani, Alberto Nicoletti, Antonio Gasbarrini, Maurizio Pompili. Diagnostic and therapeutic potential of the gut microbiota in patients with early hepatocellular carcinoma. Therapeutic Advances in Medical Oncology 2019; 11 doi: 10.1177/1758835919848184
|
46 |
Nagaraj S. Nagathihalli, Yugandhar Beesetty, Wooin Lee, M. Kay Washington, Xi Chen, A. Craig Lockhart, Nipun B. Merchant. Novel Mechanistic Insights into Ectodomain Shedding of EGFR Ligands Amphiregulin and TGF-α: Impact on Gastrointestinal Cancers Driven by Secondary Bile Acids. Cancer Research 2014; 74(7): 2062 doi: 10.1158/0008-5472.CAN-13-2329
|
47 |
Thi Thinh Nguyen, Trong Thuan Ung, Nam Ho Kim, Young Do Jung. Role of bile acids in colon carcinogenesis. World Journal of Clinical Cases 2018; 6(13): 577-588 doi: 10.12998/wjcc.v6.i13.577
|
48 |
Ann Zeuner, Maria Laura De Angelis, Federica Francescangeli. Comprehensive Gut Microbiota. 2022; : 357 doi: 10.1016/B978-0-12-819265-8.00029-2
|
49 |
Sarinya Tawthep, Satoru Fukiya, Ja-Young Lee, Masahito Hagio, Yoshitoshi Ogura, Tetsuya Hayashi, Atsushi Yokota. Isolation of six novel 7-oxo- or urso-type secondary bile acid-producing bacteria from rat cecal contents. Journal of Bioscience and Bioengineering 2017; 124(5): 514 doi: 10.1016/j.jbiosc.2017.06.002
|
50 |
Hagit Shapiro, Aleksandra A. Kolodziejczyk, Daniel Halstuch, Eran Elinav. Bile acids in glucose metabolism in health and disease. Journal of Experimental Medicine 2018; 215(2): 383 doi: 10.1084/jem.20171965
|
51 |
Hailong Cao, Shenhui Luo, Mengque Xu, Yujie Zhang, Shuli Song, Shan Wang, Xinyue Kong, Nana He, Xiaocang Cao, Fang Yan, Bangmao Wang. The secondary bile acid, deoxycholate accelerates intestinal adenoma–adenocarcinoma sequence in Apc min/+ mice through enhancing Wnt signaling. Familial Cancer 2014; 13(4): 563 doi: 10.1007/s10689-014-9742-3
|
52 |
Antoine Soprani, Hortense Boullenois, Viola Zulian, Anamaria Nedelcu, Sergio Carandina. One-Anastomosis Gastric Bypass and Hiatal Hernia: Nissen Fundoplication with the Excluded Stomach to Decrease the Risk of Postoperative Gastroesophageal Reflux. Journal of Clinical Medicine 2022; 11(21): 6441 doi: 10.3390/jcm11216441
|
53 |
Jiangling Peng, Mingjie Fan, Kelly X. Huang, Lina A. Huang, Yangmeng Wang, Runkai Yin, Hanyi Zhao, Senlin Xu, Hongzhi Li, Alon Agua, Jun Xie, David A. Horne, Fouad Kandeel, Wendong Huang, Junfeng Li. Design, Synthesis, Computational and Biological Evaluation of Novel Structure Fragments Based on Lithocholic Acid (LCA). Molecules 2023; 28(14): 5332 doi: 10.3390/molecules28145332
|
54 |
Mariëtte Y. M. van der Wulp, Muriel Derrien, Frans Stellaard, Henk Wolters, Michiel Kleerebezem, Jan Dekker, Edmond H. H. M. Rings, Albert K. Groen, Henkjan J. Verkade. Laxative treatment with polyethylene glycol decreases microbial primary bile salt dehydroxylation and lipid metabolism in the intestine of rats. American Journal of Physiology-Gastrointestinal and Liver Physiology 2013; 305(7): G474 doi: 10.1152/ajpgi.00375.2012
|
55 |
Amy I. Yu, Grace Y. Chen. Inflammation, Infection, and Microbiome in Cancers. Physiology in Health and Disease 2021; : 63 doi: 10.1007/978-3-030-67951-4_3
|
56 |
Yonggang Fan, Jie Hu, Bing Feng, Wei Wang, Guoliang Yao, Jingming Zhai, Xin Li. Increased Risk of Pancreatic Cancer Related to Gallstones and Cholecystectomy. Pancreas 2016; 45(4): 503 doi: 10.1097/MPA.0000000000000502
|
57 |
Jennifer M. Noto, M. Blanca Piazuelo, Shailja C. Shah, Judith Romero-Gallo, Jessica L. Hart, Chao Di, James D. Carmichael, Alberto G. Delgado, Alese E. Halvorson, Robert A. Greevy, Lydia E. Wroblewski, Ayushi Sharma, Annabelle B. Newton, Margaret M. Allaman, Keith T. Wilson, M. Kay Washington, M. Wade Calcutt, Kevin L. Schey, Bethany P. Cummings, Charles R. Flynn, Joseph P. Zackular, Richard M. Peek. Iron deficiency linked to altered bile acid metabolism promotes Helicobacter pylori–induced inflammation–driven gastric carcinogenesis. Journal of Clinical Investigation 2022; 132(10) doi: 10.1172/JCI147822
|
58 |
Michael D. Williams, Lingling Xian, Tait Huso, Jeong-Jin Park, David Huso, Leslie M. Cope, David R. Gang, William F. Siems, Linda Resar, Raymond Reeves, Herbert H. Hill. Fecal Metabolome in Hmga1 Transgenic Mice with Polyposis: Evidence for Potential Screen for Early Detection of Precursor Lesions in Colorectal Cancer. Journal of Proteome Research 2016; 15(12): 4176 doi: 10.1021/acs.jproteome.6b00035
|
59 |
Heng Lu, Ajaz A. Bhat, Dunfa Peng, Zheng Chen, Shoumin Zhu, Jun Hong, Selma Maacha, Jin Yan, David J. Robbins, M. Kay Washington, Abbes Belkhiri, Wael El-Rifai. APE1 Upregulates MMP-14 via Redox-Sensitive ARF6-Mediated Recycling to Promote Cell Invasion of Esophageal Adenocarcinoma. Cancer Research 2019; 79(17): 4426 doi: 10.1158/0008-5472.CAN-19-0237
|
60 |
Loredana Baffoni, Francesca Gaggìa, Diana Di Gioia, Bruno Biavati. Role of intestinal microbiota in colon cancer prevention. Annals of Microbiology 2012; 62(1): 15 doi: 10.1007/s13213-011-0306-6
|
61 |
Yunwei Li, Jingjing Jiang, Liying Zhu, Xin Wang, Weilin Wan, Danhua Wang, Zhenghong Li. Evaluation of Intestinal Microbial Metabolites in Preterm Infants with Different Initial Feeding Methods by In Vitro Fermentation Modeling System. Microorganisms 2022; 10(7): 1453 doi: 10.3390/microorganisms10071453
|
62 |
Sándor Sipka, Geza Bruckner. The Immunomodulatory Role of Bile Acids. International Archives of Allergy and Immunology 2014; 165(1): 1 doi: 10.1159/000366100
|
63 |
Joy Sarkar, Hiroaki Aoki, Rongrong Wu, Masayo Aoki, Phillip Hylemon, Huiping Zhou, Kazuaki Takabe. Conjugated Bile Acids Accelerate Progression of Pancreatic Cancer Metastasis via S1PR2 Signaling in Cholestasis. Annals of Surgical Oncology 2023; 30(3): 1630 doi: 10.1245/s10434-022-12806-4
|
64 |
Aadra P. Bhatt, Matthew R. Redinbo, Scott J. Bultman. The role of the microbiome in cancer development and therapy. CA: A Cancer Journal for Clinicians 2017; 67(4): 326 doi: 10.3322/caac.21398
|
65 |
Ying Geng, Yifang Li, Ge Liu, Jian Jiao. Identification of biomarkers for the diagnosis in colorectal polyps and metabolic dysfunction-associated steatohepatitis (MASH) by bioinformatics analysis and machine learning. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-81120-8
|
66 |
Banchob Sripa, Raksawan Deenonpoe, Paul J. Brindley. Co-infections with liver fluke and Helicobacter species: A paradigm change in pathogenesis of opisthorchiasis and cholangiocarcinoma?. Parasitology International 2017; 66(4): 383 doi: 10.1016/j.parint.2016.11.016
|
67 |
Wei Jia, Guoxiang Xie, Weiping Jia. Bile acid–microbiota crosstalk in gastrointestinal inflammation and carcinogenesis. Nature Reviews Gastroenterology & Hepatology 2018; 15(2): 111 doi: 10.1038/nrgastro.2017.119
|
68 |
Yong Zhang, Hao Liu, Li Li, Min Ai, Zheng Gong, Yong He, Yunlong Dong, Shuanglan Xu, Jun Wang, Bo Jin, Jianping Liu, Zhaowei Teng, Nathan A. Ellis. Cholecystectomy can increase the risk of colorectal cancer: A meta-analysis of 10 cohort studies. PLOS ONE 2017; 12(8): e0181852 doi: 10.1371/journal.pone.0181852
|
69 |
Frank Weinberg, Nithya Ramnath, Deepak Nagrath. Reactive Oxygen Species in the Tumor Microenvironment: An Overview. Cancers 2019; 11(8): 1191 doi: 10.3390/cancers11081191
|
70 |
Zhongjian Chen, Xiancong Huang, Yun Gao, Su Zeng, Weimin Mao. Plasma-metabolite-based machine learning is a promising diagnostic approach for esophageal squamous cell carcinoma investigation. Journal of Pharmaceutical Analysis 2021; 11(4): 505 doi: 10.1016/j.jpha.2020.11.009
|
71 |
Md Nafiujjaman, S. M. Shatil Shahriar, Mohammad Nazmul Hasan. Bioinspired and Biomimetic Materials for Drug Delivery. 2021; : 171 doi: 10.1016/B978-0-12-821352-0.00017-4
|
72 |
Md. Mominur Rahman, Md. Rezaul Islam, Sheikh Shohag, Md. Tanjimul Ahasan, Nadia Sarkar, Hosneara Khan, Alexandru Madalin Hasan, Simona Cavalu, Abdur Rauf. Microbiome in cancer: Role in carcinogenesis and impact in therapeutic strategies. Biomedicine & Pharmacotherapy 2022; 149: 112898 doi: 10.1016/j.biopha.2022.112898
|
73 |
Eun Hye Oh, Ye-Jee Kim, Minju Kim, Seung Ha Park, Tae Oh Kim, Sang Hyoung Park. Risks of colorectal cancer and biliary cancer according to accompanied primary sclerosing cholangitis in Korean patients with ulcerative colitis: a nationwide population-based study. Intestinal Research 2023; 21(2): 252 doi: 10.5217/ir.2022.00092
|
74 |
Yosuke Saito, Toyoaki Sagae. Defecation status, intestinal microbiota, and habitual diet are associated with the fecal bile acid composition: a cross-sectional study in community-dwelling young participants. European Journal of Nutrition 2023; 62(5): 2015 doi: 10.1007/s00394-023-03126-8
|
75 |
Min Jung Kim, Myoung-Hyun Song, Yo-Sep Ji, Ji Won Park, Young-Kyoung Shin, Soon-Chan Kim, Gihyeon Kim, Beomki Cho, Hansoo Park, Ja-Lok Ku, Seung-Yong Jeong. Cell free supernatants of Bifidobacterium adolescentis and Bifidobacterium longum suppress the tumor growth in colorectal cancer organoid model. Scientific Reports 2025; 15(1) doi: 10.1038/s41598-024-83048-5
|
76 |
Saptadip Samanta. Microbiome, Immunity, Digestive Health and Nutrition. 2022; : 387 doi: 10.1016/B978-0-12-822238-6.00014-5
|
77 |
Célia Faustino, Cláudia Serafim, Patrícia Rijo, Catarina Pinto Reis. Bile acids and bile acid derivatives: use in drug delivery systems and as therapeutic agents. Expert Opinion on Drug Delivery 2016; 13(8): 1133 doi: 10.1080/17425247.2016.1178233
|
78 |
Noémie Péan, Isabelle Doignon, Thierry Tordjmann. Bile acids and liver carcinogenesis: TGR5 as a novel piece in the puzzle?. Clinics and Research in Hepatology and Gastroenterology 2013; 37(3): 226 doi: 10.1016/j.clinre.2012.12.005
|
79 |
Wiktoria Maria Izdebska, Jaroslaw Daniluk, Jacek Niklinski. Microbiome and MicroRNA or Long Non-Coding RNA—Two Modern Approaches to Understanding Pancreatic Ductal Adenocarcinoma. Journal of Clinical Medicine 2023; 12(17): 5643 doi: 10.3390/jcm12175643
|
80 |
Daniel R. Schmidt, Steven A. Kliewer, David J. Mangelsdorf. Vitamin D. 2011; : 763 doi: 10.1016/B978-0-12-381978-9.10043-5
|
81 |
Kuen Kuen Lam, Raman Sethi, Grace Tan, Swati Tomar, Michelle Lo, Carol Loi, Choong Leong Tang, Emile Tan, Poh San Lai, Peh Yean Cheah. The orphan nuclear receptor NR0B2 could be a novel susceptibility locus associated with microsatellite‐stable, APC mutation‐negative early‐onset colorectal carcinomas with metabolic manifestation. Genes, Chromosomes and Cancer 2021; 60(2): 61 doi: 10.1002/gcc.22904
|
82 |
Anita Fechner, Katrin Fenske, Gerhard Jahreis. Effects of legume kernel fibres and citrus fibre on putative risk factors for colorectal cancer: a randomised, double-blind, crossover human intervention trial. Nutrition Journal 2013; 12(1) doi: 10.1186/1475-2891-12-101
|
83 |
Amar W. Sharif, Horace R.T. Williams, Temi Lampejo, Shahid A. Khan, Devinder S. Bansi, David Westaby, Andrew V. Thillainayagam, Howard C. Thomas, I. Jane Cox, Simon D. Taylor-Robinson. Metabolic profiling of bile in cholangiocarcinoma using in vitro magnetic resonance spectroscopy. HPB 2010; 12(6): 396 doi: 10.1111/j.1477-2574.2010.00185.x
|
84 |
Kawther Zaher, Fatemah Basingab. Interaction between Gut Microbiota and Dendritic Cells in Colorectal Cancer. Biomedicines 2023; 11(12): 3196 doi: 10.3390/biomedicines11123196
|
85 |
Romil Saxena. Practical Hepatic Pathology: a Diagnostic Approach. 2018; : 445 doi: 10.1016/B978-0-323-42873-6.00029-9
|
86 |
Aaron Goldman, HwuDauRw Chen, Mohammad R. Khan, Heather Roesly, Kimberly A. Hill, Mohammad Shahidullah, Amritlal Mandal, Nicholas A. Delamere, Katerina Dvorak, Ruben Claudio Aguilar. The Na+/H+ Exchanger Controls Deoxycholic Acid-Induced Apoptosis by a H+-Activated, Na+-Dependent Ionic Shift in Esophageal Cells. PLoS ONE 2011; 6(8): e23835 doi: 10.1371/journal.pone.0023835
|
87 |
Anne-Marie Bouvier, Michel Robaszkiewicz, Valérie Jooste, Mélanie Cariou, Antoine Drouillard, Véronique Bouvier, Jean-Baptiste Nousbaum. Trends in incidence of small bowel cancer according to histology: a population-based study. Journal of Gastroenterology 2020; 55(2): 181 doi: 10.1007/s00535-019-01636-z
|
88 |
Na Sun, Yi-Qiang Chen, Yan-Sheng Chen, Lei Gao, Run-Wei Deng, Jing Huang, You-Li Fan, Xuan Gao, Bin-Feng Sun, Na-Na Dong, Bo Yu, Xia Gu, Bing-Xiang Wu. Plasma Deoxycholic Acid Levels are Associated with Hemodynamic and Clinical Outcomes in Acute Pulmonary Embolism Patients. Cardiovascular Toxicology 2024; 24(9): 879 doi: 10.1007/s12012-024-09893-y
|
89 |
Alexis García, Yu Zeng, Sureshkumar Muthupalani, Zhongming Ge, Amanda Potter, Melissa W. Mobley, Chakib Boussahmain, Yan Feng, John S. Wishnok, James G. Fox.
Helicobacter hepaticus–Induced Liver Tumor Promotion Is Associated with Increased Serum Bile Acid and a Persistent Microbial-Induced Immune Response. Cancer Research 2011; 71(7): 2529 doi: 10.1158/0008-5472.CAN-10-1975
|
90 |
Feng CC, Zhang AH, Miao JH, Sun H, Han Y, Yan GL, Wu FF, Wang XJ. Recent advances in understanding cross-talk between Bile Acids and Gut Microbiota. Open Journal of Proteomics and Genomics 2018; : 024 doi: 10.17352/ojpg.000007
|
91 |
Dae Young Cheung, Myung-Gyu Choi. Current Advance in Small Bowel Tumors. Clinical Endoscopy 2011; 44(1): 13 doi: 10.5946/ce.2011.44.1.13
|
92 |
Lifeng Liang, Yunhai Yi, Yunyun Lv, Junwei Qian, Xuejing Lei, Gengyun Zhang. A Comprehensive Genome Survey Provides Novel Insights into Bile Salt Hydrolase (BSH) in Lactobacillaceae. Molecules 2018; 23(5): 1157 doi: 10.3390/molecules23051157
|
93 |
Ying Hu, Thinh Chau, Hui-Xin Liu, Degui Liao, Ryan Keane, Yuqiang Nie, Hui Yang, Yu-Jui Yvonne Wan. Bile Acids Regulate Nuclear Receptor (Nur77) Expression and Intracellular Location to Control Proliferation and Apoptosis. Molecular Cancer Research 2015; 13(2): 281 doi: 10.1158/1541-7786.MCR-14-0230
|
94 |
Katia Tortora, Francesco Vitali, Carlotta De Filippo, Giovanna Caderni, Lisa Giovannelli. DNA damage in colon mucosa of Pirc rats, an Apc-driven model of colon tumorigenesis. Toxicology Letters 2020; 324: 12 doi: 10.1016/j.toxlet.2020.02.002
|
95 |
Devvrat Yadav, Chiranjeevi Sainatham, Evgenii Filippov, Sai Gautham Kanagala, Syed Murtaza Ishaq, Thejus Jayakrishnan. Gut Microbiome–Colorectal Cancer Relationship. Microorganisms 2024; 12(3): 484 doi: 10.3390/microorganisms12030484
|
96 |
Yu Lu, Aoxi Cui, Xiaobo Zhang. Commensal microbiota-derived metabolite agmatine triggers inflammation to promote colorectal tumorigenesis. Gut Microbes 2024; 16(1) doi: 10.1080/19490976.2024.2348441
|
97 |
Kendra Swain, Israël Casabon, Lindsay D. Eltis, William W. Mohn. Two Transporters Essential for Reassimilation of Novel Cholate Metabolites by Rhodococcus jostii RHA1. Journal of Bacteriology 2012; 194(24): 6720 doi: 10.1128/JB.01167-12
|
98 |
Claudia D. Fuchs, Michael Trauner. Role of bile acids and their receptors in gastrointestinal and hepatic pathophysiology. Nature Reviews Gastroenterology & Hepatology 2022; 19(7): 432 doi: 10.1038/s41575-021-00566-7
|
99 |
Radwa N. Morgan, Sarra E. Saleh, Hala A. Farrag, Mohammad M. Aboulwafa. Bacterial cyclomodulins: types and roles in carcinogenesis. Critical Reviews in Microbiology 2022; 48(1): 42 doi: 10.1080/1040841X.2021.1944052
|
100 |
Dimitra Vageli, Sotirios Doukas, Panagiotis Doukas, Benjamin Judson. Bile reflux and hypopharyngeal cancer (Review). Oncology Reports 2021; 46(5) doi: 10.3892/or.2021.8195
|
101 |
Amnon Sonnenberg, Kevin O. Turner, Robert M. Genta. Increased Risk for Colon Polyps in Patients with Reflux Disease. Digestive Diseases and Sciences 2018; 63(1): 228 doi: 10.1007/s10620-017-4841-2
|
102 |
Haifeng Lu, Liang Chen, Xiaxia Pan, Yujun Yao, Hua Zhang, Xiaofei Zhu, Xiaobin Lou, Chunxia Zhu, Jun Wang, Lanjuan Li, Zhongwen Wu. Lactitol Supplementation Modulates Intestinal Microbiome in Liver Cirrhotic Patients. Frontiers in Medicine 2021; 8 doi: 10.3389/fmed.2021.762930
|
103 |
Ralf Kubitz, Carola Dröge, Jan Stindt, Katrin Weissenberger, Dieter Häussinger. The bile salt export pump (BSEP) in health and disease. Clinics and Research in Hepatology and Gastroenterology 2012; 36(6): 536 doi: 10.1016/j.clinre.2012.06.006
|
104 |
Linchong Sun, Caixia Suo, Shi-ting Li, Huafeng Zhang, Ping Gao. Metabolic reprogramming for cancer cells and their microenvironment: Beyond the Warburg Effect. Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 2018; 1870(1): 51 doi: 10.1016/j.bbcan.2018.06.005
|
105 |
Dong Do You, Suk Joon Cho, Ok-Hee Kim, Jin Sook Song, Kyu-Seok Hwang, Sang Chul Lee, Kee-Hwan Kim, Ho Joong Choi, Ha-Eun Hong, Haeyeon Seo, Tae Ho Hong, Jung Hyun Park, Tae Yoon Lee, Joseph Ahn, Jae-Kyung Jung, Kwan-Young Jung, Say-June Kim. Superior gallstone dissolubility and safety of tert-amyl ethyl ether over methyl-tertiary butyl ether. World Journal of Gastroenterology 2019; 25(39): 5936-5952 doi: 10.3748/wjg.v25.i39.5936
|
106 |
Adam N. Bennett, Rui Xuan Huang, Qian He, Nikki P. Lee, Wing-Kin Sung, Kei Hang Katie Chan. Drug repositioning for esophageal squamous cell carcinoma. Frontiers in Genetics 2022; 13 doi: 10.3389/fgene.2022.991842
|
107 |
Tatiana Claro da Silva, James E. Polli, Peter W. Swaan. The solute carrier family 10 (SLC10): Beyond bile acid transport. Molecular Aspects of Medicine 2013; 34(2-3): 252 doi: 10.1016/j.mam.2012.07.004
|
108 |
Songbo Li, Xiaodong Qu, Luyao Zhang, Na Wang, Min Chen, Xingyu Zhao, Jie Wang, Huanhuan Lv, Ying Qi, Lifeng Zhang, Junye Liu, Yongquan Shi. Serum Total Bile Acids in Relation to Gastrointestinal Cancer Risk: A Retrospective Study. Frontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.859716
|
109 |
Jipeng Jiang, Jie Mei, Shaoqiong Yi, Changjiang Feng, Yongfu Ma, Yang Liu, Ying Liu, Chunying Chen. Tumor associated macrophage and microbe: The potential targets of tumor vaccine delivery. Advanced Drug Delivery Reviews 2022; 180: 114046 doi: 10.1016/j.addr.2021.114046
|
110 |
Thomas A. Eldredge, Madison Bills, Ying Yang Ting, Mikayla Dimitri, Matthew M. Watson, Mark C. Harris, Jennifer C. Myers, Dylan L. Bartholomeusz, George K. Kiroff, Jonathan Shenfine. Once in a Bile — the Incidence of Bile Reflux Post-Bariatric Surgery. Obesity Surgery 2022; 32(5): 1428 doi: 10.1007/s11695-022-05977-2
|
111 |
Fábio Pereira, Asunción Fernández‐Barral, María Jesús Larriba, Antonio Barbáchano, José Manuel González‐Sancho. From molecular basis to clinical insights: a challenging future for the vitamin D endocrine system in colorectal cancer. The FEBS Journal 2024; 291(12): 2485 doi: 10.1111/febs.16955
|
112 |
Lulu Farhana, Pratima Nangia-Makker, Evan Arbit, Kathren Shango, Sarah Sarkar, Hamidah Mahmud, Timothy Hadden, Yingjie Yu, Adhip P. N. Majumdar. Bile acid: a potential inducer of colon cancer stem cells. Stem Cell Research & Therapy 2016; 7(1) doi: 10.1186/s13287-016-0439-4
|
113 |
Chang Yin, Xiaobin Wen, Guoqi Dang, Ruqing Zhong, Qingshi Meng, Xiaohui Feng, Lei Liu, Shusong Wu, Jianhua He, Liang Chen, Hongfu Zhang. Modulation of pectin on intestinal barrier function via changes in microbial functional potential and bile acid metabolism. The Journal of Nutritional Biochemistry 2024; 124: 109491 doi: 10.1016/j.jnutbio.2023.109491
|
114 |
Fuqiang Xu, Qiaoqiao Li, Shuyang Wang, Miaoyin Dong, Guoqing Xiao, Jin Bai, Junkai Wang, Xisi Sun, John M. Chaston.
The efficacy of prevention for colon cancer based on the microbiota therapy and the antitumor mechanisms with intervention of dietary
Lactobacillus
. Microbiology Spectrum 2023; 11(5) doi: 10.1128/spectrum.00189-23
|
115 |
Miljana Nenkov, Yihui Shi, Yunxia Ma, Nikolaus Gaßler, Yuan Chen. Targeting Farnesoid X Receptor in Tumor and the Tumor Microenvironment: Implication for Therapy. International Journal of Molecular Sciences 2023; 25(1): 6 doi: 10.3390/ijms25010006
|
116 |
Vicente Medina‐Arana, Luciano Delgado, Alberto Bravo, Juana Martín, Antonia M. Fernández‐Peralta, Juan J. González‐Aguilera. Tumor spectrum in lynch syndrome, DNA mismatch repair system and endogenous carcinogens. Journal of Surgical Oncology 2012; 106(1): 10 doi: 10.1002/jso.23054
|
117 |
Vanessa L. Hale, Jun Chen, Stephen Johnson, Sean C. Harrington, Tracy C. Yab, Thomas C. Smyrk, Heidi Nelson, Lisa A. Boardman, Brooke R. Druliner, Theodore R. Levin, Douglas K. Rex, Dennis J. Ahnen, Peter Lance, David A. Ahlquist, Nicholas Chia. Shifts in the Fecal Microbiota Associated with Adenomatous Polyps. Cancer Epidemiology, Biomarkers & Prevention 2017; 26(1): 85 doi: 10.1158/1055-9965.EPI-16-0337
|
118 |
Manish Singh, Sandhya Bansal, Somanath Kundu, Priyanshu Bhargava, Ashima Singh, Rajender K. Motiani, Radhey Shyam, Vedagopuram Sreekanth, Sagar Sengupta, Avinash Bajaj.
Synthesis, structure–activity relationship, and mechanistic investigation of lithocholic acidamphiphiles for colon cancer therapy. MedChemComm 2015; 6(1): 192 doi: 10.1039/C4MD00223G
|
119 |
Ulrike Trautvetter, Bianka Ditscheid, Gerhard Jahreis, Michael Glei. Calcium and Phosphate Metabolism, Blood Lipids and Intestinal Sterols in Human Intervention Studies Using Different Sources of Phosphate as Supplements—Pooled Results and Literature Search. Nutrients 2018; 10(7): 936 doi: 10.3390/nu10070936
|
120 |
Amir Mokhlesi, Zahra Sharifi, Ahmad Berimipour, Sara Taleahmad, Mahmood Talkhabi. Identification of hub genes and microRNAs with prognostic values in esophageal cancer by integrated analysis. Non-coding RNA Research 2023; 8(3): 459 doi: 10.1016/j.ncrna.2023.05.009
|
121 |
J. E. Eaton, T. C. Smyrk, M. Imam, D. S. Pardi, E. V. Loftus, V. L. Owens, J. A. Talwalkar. The fate of indefinite and low-grade dysplasia in ulcerative colitis and primary sclerosing cholangitis colitis before and after liver transplantation. Alimentary Pharmacology & Therapeutics 2013; 38(8): 977 doi: 10.1111/apt.12469
|
122 |
Mingyang Song, Andrew T. Chan, Jun Sun. Influence of the Gut Microbiome, Diet, and Environment on Risk of Colorectal Cancer. Gastroenterology 2020; 158(2): 322 doi: 10.1053/j.gastro.2019.06.048
|
123 |
Andrey D. Dolbnya, Igor A. Popov, Stanislav I. Pekov. Molecular Biomarkers in Cholangiocarcinoma: Focus on Bile. Current Topics in Medicinal Chemistry 2024; 24(8): 722 doi: 10.2174/0115680266290367240130054142
|
124 |
Petra Louis, Georgina L. Hold, Harry J. Flint. The gut microbiota, bacterial metabolites and colorectal cancer. Nature Reviews Microbiology 2014; 12(10): 661 doi: 10.1038/nrmicro3344
|
125 |
Satheesh Kumar Palanisamy, Velusamy Arumugam, Magesh D. Peter, Umamaheswari Sundaresan. Patterns of chemical diversity in the marine ascidian Phallusia spp.: anti-tumor activity and metabolic pathway inhibiting steroid biosynthesis. 3 Biotech 2018; 8(5) doi: 10.1007/s13205-018-1273-4
|
126 |
Guoxiang Xie, Xiaoning Wang, Fengjie Huang, Aihua Zhao, Wenlian Chen, Jingyu Yan, Yunjing Zhang, Sha Lei, Kun Ge, Xiaojiao Zheng, Jiajian Liu, Mingming Su, Ping Liu, Wei Jia. Dysregulated hepatic bile acids collaboratively promote liver carcinogenesis. International Journal of Cancer 2016; 139(8): 1764 doi: 10.1002/ijc.30219
|
127 |
Clarence T. Sasaki, Sotirios G. Doukas, Jose Costa, Dimitra P. Vageli. Biliary reflux as a causal factor in hypopharyngeal carcinoma: New clinical evidence and implications. Cancer 2019; 125(20): 3554 doi: 10.1002/cncr.32369
|
128 |
Xichun Sun. Well-Differentiated Malignancies. Current Clinical Pathology 2015; : 99 doi: 10.1007/978-1-4939-1692-4_7
|
129 |
Madeline Alizadeh, Jean-Pierre Raufman. Gastrointestinal neoplasia: carcinogenic interaction between bile acids and Helicobacter pylori in the stomach. Journal of Clinical Investigation 2022; 132(10) doi: 10.1172/JCI160194
|
130 |
Narcis Zarnescu, Eugenia Zarnescu, Ioana Dumitrascu, Alexandru Chirca, Nicoleta Sanda, Andreea Iliesiu, Radu Costea. Synchronous biliary gallstones and colorectal cancer: A single center analysis. Experimental and Therapeutic Medicine 2021; 23(2) doi: 10.3892/etm.2021.11061
|
131 |
Fei Xiong, Zhongdaixi Zheng, Lingyu Xiao, Chuhong Su, Junbin Chen, Xiangfu Gu, Jiaqi Tang, Yue Zhao, Huiyu Luo, Longying Zha. Soyasaponin A2 Alleviates Steatohepatitis Possibly through Regulating Bile Acids and Gut Microbiota in the Methionine and Choline‐Deficient (MCD) Diet‐induced Nonalcoholic Steatohepatitis (NASH) Mice. Molecular Nutrition & Food Research 2021; 65(14) doi: 10.1002/mnfr.202100067
|
132 |
Clarence T. Sasaki, Sotirios G. Doukas, Jose Costa, Dimitra P. Vageli. The Progressive Mutagenic Effects of Acidic Bile Refluxate in Hypopharyngeal Squamous Cell Carcinogenesis: New Insights. Cancers 2020; 12(5): 1064 doi: 10.3390/cancers12051064
|
133 |
Maria Coats, Sami M Shimi. Cholecystectomy and the risk of alimentary tract cancers: A systematic review. World Journal of Gastroenterology 2015; 21(12): 3679-3693 doi: 10.3748/wjg.v21.i12.3679
|
134 |
Fabrizio Termite, Sebastiano Archilei, Francesca D’Ambrosio, Lucrezia Petrucci, Nicholas Viceconti, Roberta Iaccarino, Antonio Liguori, Antonio Gasbarrini, Luca Miele. Gut Microbiota at the Crossroad of Hepatic Oxidative Stress and MASLD. Antioxidants 2025; 14(1): 56 doi: 10.3390/antiox14010056
|
135 |
Valentina Cossiga, Maria Guarino, Mario Capasso, Filomena Morisco. Relevance of Bile Acids in Cholangiocarcinoma Pathogenesis: Critical Revision and Future Directions. Cells 2023; 12(12): 1576 doi: 10.3390/cells12121576
|
136 |
Cristiana Caliceti, Angela Punzo, Alessia Silla, Patrizia Simoni, Giulia Roda, Silvana Hrelia. New Insights into Bile Acids Related Signaling Pathways in the Onset of Colorectal Cancer. Nutrients 2022; 14(14): 2964 doi: 10.3390/nu14142964
|
137 |
Guoxiang Xie, Xiaoning Wang, Aihua Zhao, Jingyu Yan, Wenlian Chen, Runqiu Jiang, Junfang Ji, Fengjie Huang, Yunjing Zhang, Sha Lei, Kun Ge, Xiaojiao Zheng, Cynthia Rajani, Rosanna A. Alegado, Jiajian Liu, Ping Liu, Jeremy Nicholson, Wei Jia. Sex-dependent effects on gut microbiota regulate hepatic carcinogenic outcomes. Scientific Reports 2017; 7(1) doi: 10.1038/srep45232
|
138 |
Anuradha Kirtonia, Gautam Sethi, Manoj Garg. The multifaceted role of reactive oxygen species in tumorigenesis. Cellular and Molecular Life Sciences 2020; 77(22): 4459 doi: 10.1007/s00018-020-03536-5
|
139 |
Prarthana Thiagarajan, Janusz A. Jankowski. Early Gastrointestinal Cancers. Recent Results in Cancer Research 2012; 196: 115 doi: 10.1007/978-3-642-31629-6_8
|
140 |
Chunhao Cao, Siran Yue, Aiping Lu, Chao Liang. Host-Gut Microbiota Metabolic Interactions and Their Role in Precision Diagnosis and Treatment of Gastrointestinal Cancers. Pharmacological Research 2024; 207: 107321 doi: 10.1016/j.phrs.2024.107321
|
141 |
Jipeng Jiang, Jie Mei, Yongfu Ma, Shasha Jiang, Jian Zhang, Shaoqiong Yi, Changjiang Feng, Yang Liu, Ying Liu. Tumor hijacks macrophages and microbiota through extracellular vesicles. Exploration 2022; 2(1) doi: 10.1002/EXP.20210144
|
142 |
Saiyu Hang, Donggi Paik, Lina Yao, Eunha Kim, Jamma Trinath, Jingping Lu, Soyoung Ha, Brandon N. Nelson, Samantha P. Kelly, Lin Wu, Ye Zheng, Randy S. Longman, Fraydoon Rastinejad, A. Sloan Devlin, Michael R. Krout, Michael A. Fischbach, Dan R. Littman, Jun R. Huh. Bile acid metabolites control TH17 and Treg cell differentiation. Nature 2019; 576(7785): 143 doi: 10.1038/s41586-019-1785-z
|
143 |
Youn Ju Na, Kyu Won Chung, Sun Young Yi. Clinicopathologic Charateristics and Gallbladder Dysfunction in Patients with Endoscopic Bile Reflux. The Ewha Medical Journal 2013; 36(1): 18 doi: 10.12771/emj.2013.36.1.18
|
144 |
Hsueh–Chou Lai, Che–Chen Lin, Ken–Sheng Cheng, Jung–Ta Kao, Jen–Wei Chou, Cheng–Yuan Peng, Shih–Wei Lai, Pei–Chun Chen, Fung–Chang Sung. Increased Incidence of Gastrointestinal Cancers Among Patients With Pyogenic Liver Abscess: A Population-Based Cohort Study. Gastroenterology 2014; 146(1): 129 doi: 10.1053/j.gastro.2013.09.058
|
145 |
Kai Wang, Yue Chen, Jinyi Cao, Ruimin Liang, Yi Qiao, Likun Ding, Xiaojuan Yang, Zhifu Yang. Mechanism of Huangqi–Honghua combination regulating the gut microbiota to affect bile acid metabolism towards preventing cerebral ischaemia–reperfusion injury in rats. Pharmaceutical Biology 2022; 60(1): 2189 doi: 10.1080/13880209.2022.2136209
|
146 |
Yuan Chen, Xiulong Song, Leila Valanejad, Alexander Vasilenko, Vijay More, Xi Qiu, Weikang Chen, Yurong Lai, Angela Slitt, Matthew Stoner, Bingfang Yan, Ruitang Deng. Bile salt export pump is dysregulated with altered farnesoid X receptor isoform expression in patients with hepatocellular carcinoma. Hepatology 2013; 57(4): 1530 doi: 10.1002/hep.26187
|
147 |
Jikai He, Haijun Li, Jiaqi Jia, Yang Liu, Ning Zhang, Rumeng Wang, Wenhao Qu, Yanqi Liu, Lizhou Jia. Mechanisms by which the intestinal microbiota affects gastrointestinal tumours and therapeutic effects. Molecular Biomedicine 2023; 4(1) doi: 10.1186/s43556-023-00157-9
|
148 |
Johan ET van Hylckama Vlieg, Patrick Veiga, Chenhong Zhang, Muriel Derrien, Liping Zhao. Impact of microbial transformation of food on health—from fermented foods to fermentation in the gastro-intestinal tract. Current Opinion in Biotechnology 2011; 22(2): 211 doi: 10.1016/j.copbio.2010.12.004
|
149 |
Junwei Xiang, Zhengyan Zhang, Hongyi Xie, Chengcheng Zhang, Yan Bai, Hua Cao, Qishi Che, Jiao Guo, Zhengquan Su. Effect of different bile acids on the intestine through enterohepatic circulation based on FXR. Gut Microbes 2021; 13(1) doi: 10.1080/19490976.2021.1949095
|
150 |
Xiaozhuan Lin, Xuan Zhu, Yan Xin, Peiwen Zhang, Yunjun Xiao, Taiping He, Honghui Guo. Intermittent Fasting Alleviates Non‐Alcoholic Steatohepatitis by Regulating Bile Acid Metabolism and Promoting Fecal Bile Acid Excretion in High‐Fat and High‐Cholesterol Diet Fed Mice. Molecular Nutrition & Food Research 2023; 67(14) doi: 10.1002/mnfr.202200595
|
151 |
Aarti Kumar, Pranav Gwalani, Prasad G. Iyer, Kenneth K. Wang, Gary W. Falk, Gregory G. Ginsberg, Charles J. Lightdale, Armando Del Portillo, Stephen M. Lagana, Yun Li, Hongzhe Li, Jeanine Genkinger, Zhezhen Jin, Anil K. Rustgi, Timothy C. Wang, Harris H. Wang, Michael Quante, Julian A. Abrams. Shifts in Serum Bile Acid Profiles Associated With Barrett's Esophagus and Stages of Progression to Esophageal Adenocarcinoma. Clinical and Translational Gastroenterology 2024; 15(10): e1 doi: 10.14309/ctg.0000000000000762
|
152 |
Suzanne C. Schiffman, Yan Li, Deyi Xiao, Xuanshe Li, Harini S. Aiyer, Robert C.G. Martin. The Resistance of Esophageal Adenocarcinoma to Bile Salt Insult is Associated with Manganese Superoxide Dismutase Expression. Journal of Surgical Research 2011; 171(2): 623 doi: 10.1016/j.jss.2010.04.038
|
153 |
Harris Bernstein, Carol Bernstein. Bile acids as carcinogens in the colon and at other sites in the gastrointestinal system. Experimental Biology and Medicine 2023; 248(1): 79 doi: 10.1177/15353702221131858
|
154 |
Marcello Chieppa, Marianna Kashyrina, Alessandro Miraglia, Diana Vardanyan. Enhanced CRC Growth in Iron-Rich Environment, Facts and Speculations. International Journal of Molecular Sciences 2024; 25(22): 12389 doi: 10.3390/ijms252212389
|
155 |
Helen G. Coleman, Shivaram K. Bhat, Liam J. Murray. Esophageal cancer and barrett's esophagus. 2015; : 25 doi: 10.1002/9781118655153.ch3
|
156 |
Zhi-Wei Guan, En-Ze Yu, Qiang Feng. Soluble Dietary Fiber, One of the Most Important Nutrients for the Gut Microbiota. Molecules 2021; 26(22): 6802 doi: 10.3390/molecules26226802
|
157 |
Adrian Frick, Michaela Lang. Chemoprävention und Ernährungsfaktoren bei Darmkrebs. Journal für Gastroenterologische und Hepatologische Erkrankungen 2018; 16(1): 9 doi: 10.1007/s41971-018-0019-9
|
158 |
Baoxiang Guan, Hao Li, Zhengduo Yang, Ashraful Hoque, Xiaochun Xu. Inhibition of farnesoid X receptor controls esophageal cancer cell growth in vitro and in nude mouse xenografts. Cancer 2013; 119(7): 1321 doi: 10.1002/cncr.27910
|
159 |
Yan Zhang, Xueyan Gao, Shuochen Gao, Yang Liu, Wenkang Wang, Yudi Feng, Liping Pei, Zhenqiang Sun, Lin Liu, Chengzeng Wang. Effect of gut flora mediated‐bile acid metabolism on intestinal immune microenvironment. Immunology 2023; 170(3): 301 doi: 10.1111/imm.13672
|
160 |
Adriana González, Asier Fullaondo, Iñaki Odriozola, Adrian Odriozola. Advances in Host Genetics and Microbiome in Colorectal Cancer-Related Phenotypes. Advances in Genetics 2024; 112: 309 doi: 10.1016/bs.adgen.2024.08.006
|
161 |
Antonina Giammanco, Valerie Blanc, Grace Montenegro, Coen Klos, Yan Xie, Susan Kennedy, Jianyang Luo, Sung-Hee Chang, Timothy Hla, ILKe Nalbantoglu, Sekhar Dharmarajan, Nicholas O. Davidson. Intestinal Epithelial HuR Modulates Distinct Pathways of Proliferation and Apoptosis and Attenuates Small Intestinal and Colonic Tumor Development. Cancer Research 2014; 74(18): 5322 doi: 10.1158/0008-5472.CAN-14-0726
|
162 |
Fahad Aurif, Harsimran Kaur, Jeoffrey Patrick G Chio, Mahdi Kittaneh, Bilal Haider Malik. The Association Between Cholecystectomy and Colorectal Cancer in the Female Gender. Cureus 2021; doi: 10.7759/cureus.20113
|
163 |
M. Andrea Azcárate-Peril, Michael Sikes, José M. Bruno-Bárcena. The intestinal microbiota, gastrointestinal environment and colorectal cancer: a putative role for probiotics in prevention of colorectal cancer?. American Journal of Physiology-Gastrointestinal and Liver Physiology 2011; 301(3): G401 doi: 10.1152/ajpgi.00110.2011
|
164 |
Li Ma, Moritz Jüttner, Gerd A. Kullak-Ublick, Jyrki J. Eloranta. Regulation of the gene encoding the intestinal bile acid transporter ASBT by the caudal-type homeobox proteins CDX1 and CDX2. American Journal of Physiology-Gastrointestinal and Liver Physiology 2012; 302(1): G123 doi: 10.1152/ajpgi.00102.2011
|
165 |
Wenyue Cheng, Fan Li, Rongcun Yang. The Roles of Gut Microbiota Metabolites in the Occurrence and Development of Colorectal Cancer: Multiple Insights for Potential Clinical Applications. Gastro Hep Advances 2024; 3(6): 855 doi: 10.1016/j.gastha.2024.05.012
|
166 |
Ja-Young Lee, Hisashi Arai, Yusuke Nakamura, Satoru Fukiya, Masaru Wada, Atsushi Yokota. Contribution of the 7β-hydroxysteroid dehydrogenase from Ruminococcus gnavus N53 to ursodeoxycholic acid formation in the human colon. Journal of Lipid Research 2013; 54(11): 3062 doi: 10.1194/jlr.M039834
|
167 |
Orsolya Toke. Structural and Dynamic Determinants of Molecular Recognition in Bile Acid-Binding Proteins. International Journal of Molecular Sciences 2022; 23(1): 505 doi: 10.3390/ijms23010505
|
168 |
Glynn Martin, Sofia Kolida, Julian R. Marchesi, Elizabeth Want, James E. Sidaway, Jonathan R. Swann. In Vitro Modeling of Bile Acid Processing by the Human Fecal Microbiota. Frontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.01153
|
169 |
Jingjing Cong, Pianpian Liu, Zili Han, Wei Ying, Chaoliang Li, Yifei Yang, Shuling Wang, Jianbo Yang, Fei Cao, Juntao Shen, Yu Zeng, Yu Bai, Congzhao Zhou, Lilin Ye, Rongbin Zhou, Chunjun Guo, Chunlei Cang, Dennis L. Kasper, Xinyang Song, Lei Dai, Linfeng Sun, Wen Pan, Shu Zhu. Bile acids modified by the intestinal microbiota promote colorectal cancer growth by suppressing CD8+ T cell effector functions. Immunity 2024; 57(4): 876 doi: 10.1016/j.immuni.2024.02.014
|
170 |
Carol Bernstein, Hana Holubec, Achyut K. Bhattacharyya, Huy Nguyen, Claire M. Payne, Beryl Zaitlin, Harris Bernstein. Carcinogenicity of deoxycholate, a secondary bile acid. Archives of Toxicology 2011; 85(8): 863 doi: 10.1007/s00204-011-0648-7
|
171 |
Yanling Zhao, Shizhang Wei, Lisheng Chen, Xuelin Zhou, Xiao Ma. Primary biliary cholangitis: molecular pathogenesis perspectives and therapeutic potential of natural products. Frontiers in Immunology 2023; 14 doi: 10.3389/fimmu.2023.1164202
|
172 |
Takuya Kitamura, Jaya Srivastava, John DiGiovanni, Kaoru Kiguchi. Bile acid accelerates erbB2-induced pro-tumorigenic activities in biliary tract cancer. Molecular Carcinogenesis 2015; 54(6): 459 doi: 10.1002/mc.22118
|
173 |
Jian Xu, Liang Xu, Lintao Li, Qing You, Luosi Cha. HIF-1αC1772T Polymorphism and Gastrointestinal Tract Cancer Risk: A Meta-Analysis and Meta-Regression Analysis. Genetic Testing and Molecular Biomarkers 2013; 17(12): 918 doi: 10.1089/gtmb.2013.0325
|
174 |
Ang Li, Fei Li, Wei Song, Zi-Li Lei, Chang-Yin Zhou, Xue Zhang, Qing-Yuan Sun, Qin Zhang, Teng Zhang. Maternal exposure to 4-vinylcyclohexene diepoxide during pregnancy leads to disorder of gut microbiota and bile acid metabolism in offspring. Ecotoxicology and Environmental Safety 2024; 269: 115811 doi: 10.1016/j.ecoenv.2023.115811
|
175 |
Michael D. Williams, Xing Zhang, Amy S. Belton, Lingling Xian, Tait Huso, Jeong-Jin Park, William F. Siems, David R. Gang, Linda M. S. Resar, Raymond Reeves, Herbert H. Hill. HMGA1 Drives Metabolic Reprogramming of Intestinal Epithelium during Hyperproliferation, Polyposis, and Colorectal Carcinogenesis. Journal of Proteome Research 2015; 14(3): 1420 doi: 10.1021/pr501084s
|
176 |
Agostino Di Ciaula, David Q.-H. Wang, Emilio Molina-Molina, Raquel Lunardi Baccetto, Giuseppe Calamita, Vincenzo O. Palmieri, Piero Portincasa. Bile Acids and Cancer: Direct and Environmental-Dependent Effects. Annals of Hepatology 2017; 16: S87 doi: 10.5604/01.3001.0010.5501
|
177 |
Hongbin Wang, Shi He, Ruijia Wang, Xiaotong Zou, Zepeng Sun, Fuping Lu. Targeted profiling of rodent unconjugated bile acids using GC–MS to determine the influence of high‐fat diet. Biomedical Chromatography 2022; 36(9) doi: 10.1002/bmc.5428
|
178 |
Akshaya Balasubramanian, Mark S. Sundrud. ATP-dependent transporters: emerging players at the crossroads of immunity and metabolism. Frontiers in Immunology 2023; 14 doi: 10.3389/fimmu.2023.1286696
|
179 |
芃萌 李. The Value of Serum Tumor Markers Combined with Bile Acid Detection in the Di-agnosis of Gastric Cancer. Advances in Clinical Medicine 2023; 13(03): 3163 doi: 10.12677/ACM.2023.133450
|
180 |
Yohei Ozawa, Fumiyoshi Fujishima, Hiroshi Okamoto, Jin Teshima, Go Miyata, Takashi Kamei, Noriaki Ohuchi, Hironobu Sasano. A Case of Two Barrett Esophageal Adenocarcinomas Arising in a Long-segment Barrett Esophagus and Esophagogastric Junction Adenocarcinoma. The Japanese Journal of Gastroenterological Surgery 2014; 47(3): 173 doi: 10.5833/jjgs.2013.0057
|
181 |
Awais Ahmad, Nasir Mahmood, Muhammad Ahtisham Raza, Zarina Mushtaq, Farhan Saeed, Muhammad Afzaal, Muzzamal Hussain, Hafiz Wasiqe Amjad, Hashim Mohammad Al-Awadi. Gut microbiota and their derivatives in the progression of colorectal cancer: Mechanisms of action, genome and epigenome contributions. Heliyon 2024; 10(8): e29495 doi: 10.1016/j.heliyon.2024.e29495
|
182 |
Reece J. Knippel, Cynthia L. Sears. The Microbiome Colorectal Cancer Puzzle: Initiator, Propagator, and Avenue for Treatment and Research. Journal of the National Comprehensive Cancer Network 2021; 19(8): 986 doi: 10.6004/jnccn.2021.7062
|
183 |
|
184 |
Dimitra P. Vageli, Panagiotis G. Doukas, Athanasios Siametis, Benjamin L. Judson. Targeting STAT3 prevents bile reflux‐induced oncogenic molecular events linked to hypopharyngeal carcinogenesis. Journal of Cellular and Molecular Medicine 2022; 26(1): 75 doi: 10.1111/jcmm.17011
|
185 |
Salman Azeem, Syed Wasif Gillani, Ammar Siddiqui, Suresh Babu Jandrajupalli, Vinci Poh, Syed Azhar Syed Sulaiman. Diet and Colorectal Cancer Risk in Asia - a Systematic Review. Asian Pacific Journal of Cancer Prevention 2015; 16(13): 5389 doi: 10.7314/APJCP.2015.16.13.5389
|
186 |
Ajaz A. Bhat, Sabah Nisar, Selma Maacha, Tatiana Correa Carneiro-Lobo, Sabah Akhtar, Kodappully Sivaraman Siveen, Nissar A. Wani, Arshi Rizwan, Puneet Bagga, Mayank Singh, Ravinder Reddy, Shahab Uddin, Jean-Charles Grivel, Gyan Chand, Michael P. Frenneaux, Mushtaq A. Siddiqi, Davide Bedognetti, Wael El-Rifai, Muzafar A. Macha, Mohammad Haris. Cytokine-chemokine network driven metastasis in esophageal cancer; promising avenue for targeted therapy. Molecular Cancer 2021; 20(1) doi: 10.1186/s12943-020-01294-3
|
187 |
Jing Cong, Hua Zhu, Dong Liu, Tianjun Li, Chuantao Zhang, Jingjuan Zhu, Hongying Lv, Kewei Liu, Chenxing Hao, Zibin Tian, Jianli Zhang, Xiaochun Zhang. A Pilot Study: Changes of Gut Microbiota in Post-surgery Colorectal Cancer Patients. Frontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.02777
|
188 |
Emily Connell, Gwenaelle Le Gall, Matthew G. Pontifex, Saber Sami, John F. Cryan, Gerard Clarke, Michael Müller, David Vauzour. Microbial-derived metabolites as a risk factor of age-related cognitive decline and dementia. Molecular Neurodegeneration 2022; 17(1) doi: 10.1186/s13024-022-00548-6
|
189 |
Heather B. Roesly, Mohammad R. Khan, Hwu Dau Rw Chen, Kimberly A. Hill, Nirushan Narendran, George S. Watts, Xiaoxin Chen, Katerina Dvorak. The decreased expression of Beclin-1 correlates with progression to esophageal adenocarcinoma: the role of deoxycholic acid. American Journal of Physiology-Gastrointestinal and Liver Physiology 2012; 302(8): G864 doi: 10.1152/ajpgi.00340.2011
|
190 |
Wonwoong Lee, Jinhee Um, Boram Hwang, Yong Chan Lee, Bong Chul Chung, Jongki Hong. Assessing the progression of gastric cancer via profiling of histamine, histidine, and bile acids in gastric juice using LC-MS/MS. The Journal of Steroid Biochemistry and Molecular Biology 2020; 197: 105539 doi: 10.1016/j.jsbmb.2019.105539
|
191 |
Hana Ajouz, Deborah Mukherji, Ali Shamseddine. Secondary bile acids: an underrecognized cause of colon cancer. World Journal of Surgical Oncology 2014; 12(1) doi: 10.1186/1477-7819-12-164
|
192 |
Claudiu Saracut, Calin Molnar, Cristian Russu, Nicoleta Todoran, Laurian Vlase, Sabin Turdean, Septimiu Voidazan, Constantin Copotoiu. Secondary bile acids effects in colon pathology. Experimental mice study. Acta Cirurgica Brasileira 2015; 30(9): 624 doi: 10.1590/S0102-865020150090000007
|
193 |
Mingmei Liao, Jinfeng Zhao, Ton Wang, Jinghua Duan, Yangde Zhang, Xingming Deng. Role of bile salt in regulating Mcl-1 phosphorylation and chemoresistance in hepatocellular carcinoma cells. Molecular Cancer 2011; 10(1) doi: 10.1186/1476-4598-10-44
|
194 |
N C Penney, J Kinross, R C Newton, S Purkayastha. The role of bile acids in reducing the metabolic complications of obesity after bariatric surgery: a systematic review. International Journal of Obesity 2015; 39(11): 1565 doi: 10.1038/ijo.2015.115
|
195 |
Xiaoyan Fan, Yuelei Jin, Guang Chen, Xueqiang Ma, Lixia Zhang. Gut Microbiota Dysbiosis Drives the Development of Colorectal Cancer. Digestion 2021; 102(4): 508 doi: 10.1159/000508328
|
196 |
Joshua S. Fleishman, Sunil Kumar. Bile acid metabolism and signaling in health and disease: molecular mechanisms and therapeutic targets. Signal Transduction and Targeted Therapy 2024; 9(1) doi: 10.1038/s41392-024-01811-6
|
197 |
Eudaldo M. López-Tomassetti Fernández, Juan Ramón Hernández Hernández, Valentine Nuñez Jorge. Right Colon Carcinoma Infiltrating the Alimentary Limb in a Patient With Biliopancreatic Diversion. International Surgery 2014; 99(4): 354 doi: 10.9738/INTSURG-D-12-00017.1
|
198 |
Jun Hong, Zheng Chen, Dunfa Peng, Alexander Zaika, Frank Revetta, M. Kay Washington, Abbes Belkhiri, Wael El-Rifai. APE1-mediated DNA damage repair provides survival advantage for esophageal adenocarcinoma cells in response to acidic bile salts. Oncotarget 2016; 7(13): 16688 doi: 10.18632/oncotarget.7696
|
199 |
Bojan Stanimirov, Karmen Stankov, Momir Mikov. Bile acid signaling through farnesoid X and TGR5 receptors in hepatobiliary and intestinal diseases. Hepatobiliary & Pancreatic Diseases International 2015; 14(1): 18 doi: 10.1016/S1499-3872(14)60307-6
|
200 |
Rong Zhang, Xiaoran Yin, Haitao Shi, Jie Wu, Pramod Shakya, Dong Liu, Jun Zhang. Adiponectin Modulates DCA-Induced Inflammation via the ROS/NF-Kappa B Signaling Pathway in Esophageal Adenocarcinoma Cells. Digestive Diseases and Sciences 2014; 59(1): 89 doi: 10.1007/s10620-013-2877-5
|
201 |
Wei Wang, Ming Zhan, Qi Li, Wei Chen, Huiling Chu, Qihong Huang, Zhaoyuan Hou, Mohan Man, Jian Wang. FXR agonists enhance the sensitivity of biliary tract cancer cells to cisplatin via SHP dependent inhibition of Bcl-xL expression. Oncotarget 2016; 7(23): 34617 doi: 10.18632/oncotarget.8964
|
202 |
Ze Dai, Kai-Li Deng, Xiao-Mei Wang, Dong-Xue Yang, Chun-Lan Tang, Yu-Ping Zhou. Bidirectional effects of the tryptophan metabolite indole-3-acetaldehyde on colorectal cancer. World Journal of Gastrointestinal Oncology 2024; 16(6): 2697-2715 doi: 10.4251/wjgo.v16.i6.2697
|
203 |
Sara M. Centuori, Cecil J. Gomes, Jesse Trujillo, Jamie Borg, Joshua Brownlee, Charles W. Putnam, Jesse D. Martinez. Deoxycholic acid mediates non-canonical EGFR-MAPK activation through the induction of calcium signaling in colon cancer cells. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 2016; 1861(7): 663 doi: 10.1016/j.bbalip.2016.04.006
|
204 |
Tingting Wang, Guoxiang Cai, Yunping Qiu, Na Fei, Menghui Zhang, Xiaoyan Pang, Wei Jia, Sanjun Cai, Liping Zhao. Structural segregation of gut microbiota between colorectal cancer patients and healthy volunteers. The ISME Journal 2012; 6(2): 320 doi: 10.1038/ismej.2011.109
|
205 |
Wanping Aw, Shinji Fukuda. An Integrated Outlook on the Metagenome and Metabolome of Intestinal Diseases. Diseases 2015; 3(4): 341 doi: 10.3390/diseases3040341
|
206 |
Indranil Chattopadhyay, Rohit Gundamaraju, Niraj Kumar Jha, Piyush Kumar Gupta, Abhijit Dey, Chandi C. Mandal, Bridget M. Ford, Chiara Nicolazzo. Interplay between Dysbiosis of Gut Microbiome, Lipid Metabolism, and Tumorigenesis: Can Gut Dysbiosis Stand as a Prognostic Marker in Cancer?. Disease Markers 2022; 2022: 1 doi: 10.1155/2022/2941248
|
207 |
Hans Raskov, Hans-Christian Pommergaard, Jakob Burcharth, Jacob Rosenberg. Colorectal carcinogenesis-update and perspectives. World Journal of Gastroenterology 2014; 20(48): 18151-18164 doi: 10.3748/wjg.v20.i48.18151
|
208 |
Elena Zaika, Jinxiong Wei, Dengping Yin, Claudia Andl, Ute Moll, Wael El‐Rifai, Alexander I. Zaika. p73 protein regulates DNA damage repair. The FASEB Journal 2011; 25(12): 4406 doi: 10.1096/fj.11-192815
|
209 |
Junwei Shao, Tiantian Ge, Cuilan Tang, Gang Wang, Lantian Pang, Zhi Chen. Synergistic anti-inflammatory effect of gut microbiota and lithocholic acid on liver fibrosis. Inflammation Research 2022; 71(10-11): 1389 doi: 10.1007/s00011-022-01629-4
|
210 |
Nilay Thakkar, Jason R. Slizgi, Kim L.R. Brouwer. Effect of Liver Disease on Hepatic Transporter Expression and Function. Journal of Pharmaceutical Sciences 2017; 106(9): 2282 doi: 10.1016/j.xphs.2017.04.053
|
211 |
Yahong Zheng, Chengcheng Yue, Hui Zhang, Haoran Chen, Yanyan Liu, Jiabin Li. Deoxycholic Acid and Lithocholic Acid Alleviate Liver Injury and Inflammation in Mice with Klebsiella pneumoniae-Induced Liver Abscess and Bacteremia. Journal of Inflammation Research 2021; : 777 doi: 10.2147/JIR.S298495
|
212 |
Himani Pandey, Daryl W. T. Tang, Sunny H. Wong, Devi Lal. Gut Microbiota in Colorectal Cancer: Biological Role and Therapeutic Opportunities. Cancers 2023; 15(3): 866 doi: 10.3390/cancers15030866
|
213 |
John E Eaton, Marina G Silveira, Darrell S Pardi, Emmanouil Sinakos, Kris V Kowdley, Velimir A C Luketic, Edwyn M Harrison, Timothy McCashland, Alex S Befeler, Denise Harnois, Roberta Jorgensen, Jan Petz, Keith D Lindor. High-Dose Ursodeoxycholic Acid Is Associated With the Development of Colorectal Neoplasia in Patients With Ulcerative Colitis and Primary Sclerosing Cholangitis. American Journal of Gastroenterology 2011; 106(9): 1638 doi: 10.1038/ajg.2011.156
|
214 |
Jason M. Ridlon, Shigeo Ikegawa, João M.P. Alves, Biao Zhou, Akiko Kobayashi, Takashi Iida, Kuniko Mitamura, Genzoh Tanabe, Myrna Serrano, Ainee De Guzman, Patsy Cooper, Gregory A. Buck, Phillip B. Hylemon. Clostridium scindens: a human gut microbe with a high potential to convert glucocorticoids into androgens. Journal of Lipid Research 2013; 54(9): 2437 doi: 10.1194/jlr.M038869
|
215 |
Maurice Barrett, Collette K. Hand, Fergus Shanahan, Thomas Murphy, Paul W. O’Toole. Mutagenesis by Microbe: the Role of the Microbiota in Shaping the Cancer Genome. Trends in Cancer 2020; 6(4): 277 doi: 10.1016/j.trecan.2020.01.019
|
216 |
Sara D’Amato, Maria Sofia, Marcello Agosta, Giorgia Litrico, Iacopo Sarvà, Gaetano La Greca, Saverio Latteri. The impact of bariatric surgery on colorectal cancer risk. Surgery for Obesity and Related Diseases 2023; 19(2): 144 doi: 10.1016/j.soard.2022.10.016
|
217 |
Juan I. Barrasa, Nieves Olmo, Ma Antonia Lizarbe, Javier Turnay. Bile acids in the colon, from healthy to cytotoxic molecules. Toxicology in Vitro 2013; 27(2): 964 doi: 10.1016/j.tiv.2012.12.020
|
218 |
Amnon Sonnenberg, Robert M. Genta. Barrett’s Metaplasia and Colonic Neoplasms: A Significant Association in a 203,534-Patient Study. Digestive Diseases and Sciences 2013; 58(7): 2046 doi: 10.1007/s10620-013-2565-5
|
219 |
Marie Lequoy, Elia Gigante, Jean-Pierre Couty, Christèle Desbois-Mouthon. Hepatocellular carcinoma in the context of non-alcoholic steatohepatitis (NASH): recent advances in the pathogenic mechanisms. Hormone Molecular Biology and Clinical Investigation 2020; 41(1) doi: 10.1515/hmbci-2019-0044
|
220 |
Xuebin Gao, Xiaozhuan Lin, Yan Xin, Xuan Zhu, Xiang Li, Ming Chen, Zhigang Huang, Honghui Guo. Dietary cholesterol drives the development of nonalcoholic steatohepatitis by altering gut microbiota mediated bile acid metabolism in high-fat diet fed mice. The Journal of Nutritional Biochemistry 2023; 117: 109347 doi: 10.1016/j.jnutbio.2023.109347
|
221 |
Sunny H. Wong, Jun Yu. Gut microbiota in colorectal cancer: mechanisms of action and clinical applications. Nature Reviews Gastroenterology & Hepatology 2019; 16(11): 690 doi: 10.1038/s41575-019-0209-8
|
222 |
Jason M. Ridlon, H. Rex Gaskins. Another renaissance for bile acid gastrointestinal microbiology. Nature Reviews Gastroenterology & Hepatology 2024; 21(5): 348 doi: 10.1038/s41575-024-00896-2
|
223 |
David O. Rees, Peter J. Crick, Gareth J. Jenkins, Yuqin Wang, William J. Griffiths, Tim H. Brown, Bilal Al-Sarireh. Comparison of the composition of bile acids in bile of patients with adenocarcinoma of the pancreas and benign disease. The Journal of Steroid Biochemistry and Molecular Biology 2017; 174: 290 doi: 10.1016/j.jsbmb.2017.10.011
|
224 |
Juan I. Barrasa, Angélica Santiago-Gómez, Nieves Olmo, María Antonia Lizarbe, Javier Turnay. Resistance to butyrate impairs bile acid-induced apoptosis in human colon adenocarcinoma cells via up-regulation of Bcl-2 and inactivation of Bax. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 2012; 1823(12): 2201 doi: 10.1016/j.bbamcr.2012.08.008
|
225 |
Prasant Kumar Jena, Lili Sheng, Nidhi Nagar, Chao Wu, Daniela Barile, David A. Mills, Yui-Jui Yvonne Wan. Synbiotics Bifidobacterium infantis and milk oligosaccharides are effective in reversing cancer-prone nonalcoholic steatohepatitis using western diet-fed FXR knockout mouse models. The Journal of Nutritional Biochemistry 2018; 57: 246 doi: 10.1016/j.jnutbio.2018.04.007
|
226 |
Qingmiao Shi, Xin Yuan, Chen Xue, Xinyu Gu, Lanjuan Li. Establishment and Validation of a Novel Risk Score for Hepatocellular Carcinoma Based on Bile Acid and Bile Salt Metabolism-Related Genes. International Journal of Molecular Sciences 2023; 24(10): 8597 doi: 10.3390/ijms24108597
|
227 |
J. M. Keane, S. A. Joyce, C. G. M. Gahan, N. P. Hyland, A. Houston. Symbiosis: Cellular, Molecular, Medical and Evolutionary Aspects. Results and Problems in Cell Differentiation 2020; 69: 581 doi: 10.1007/978-3-030-51849-3_22
|
228 |
Joann Romano-Keeler, Jilei Zhang, Jun Sun. The Life-Long Role of Nutrition on the Gut Microbiome and Gastrointestinal Disease. Gastroenterology Clinics of North America 2021; 50(1): 77 doi: 10.1016/j.gtc.2020.10.008
|
229 |
Madison Flory, Paloma Bravo, Ashfaqul Alam. Impact of gut microbiota and its metabolites on immunometabolism in colorectal cancer. Immunometabolism 2024; 6(4): e00050 doi: 10.1097/IN9.0000000000000050
|
230 |
Shinichi Yachida, Sayaka Mizutani, Hirotsugu Shiroma, Satoshi Shiba, Takeshi Nakajima, Taku Sakamoto, Hikaru Watanabe, Keigo Masuda, Yuichiro Nishimoto, Masaru Kubo, Fumie Hosoda, Hirofumi Rokutan, Minori Matsumoto, Hiroyuki Takamaru, Masayoshi Yamada, Takahisa Matsuda, Motoki Iwasaki, Taiki Yamaji, Tatsuo Yachida, Tomoyoshi Soga, Ken Kurokawa, Atsushi Toyoda, Yoshitoshi Ogura, Tetsuya Hayashi, Masanori Hatakeyama, Hitoshi Nakagama, Yutaka Saito, Shinji Fukuda, Tatsuhiro Shibata, Takuji Yamada. Metagenomic and metabolomic analyses reveal distinct stage-specific phenotypes of the gut microbiota in colorectal cancer. Nature Medicine 2019; 25(6): 968 doi: 10.1038/s41591-019-0458-7
|
231 |
Sunjae Lee, KiYoung Lee, Seyeol Yoon, Jae W. Lee, Doheon Lee, Antonio Moschetta. Anomalies in Network Bridges Involved in Bile Acid Metabolism Predict Outcomes of Colorectal Cancer Patients. PLoS ONE 2014; 9(9): e107925 doi: 10.1371/journal.pone.0107925
|
232 |
O. Erice, I. Labiano, A. Arbelaiz, A. Santos-Laso, P. Munoz-Garrido, R. Jimenez-Agüero, P. Olaizola, A. Caro-Maldonado, N. Martín-Martín, A. Carracedo, E. Lozano, J.J. Marin, C.J. O'Rourke, J.B. Andersen, J. Llop, V. Gómez-Vallejo, D. Padro, A. Martin, M. Marzioni, L. Adorini, M. Trauner, L. Bujanda, M.J. Perugorria, J.M. Banales. Differential effects of FXR or TGR5 activation in cholangiocarcinoma progression. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2018; 1864(4): 1335 doi: 10.1016/j.bbadis.2017.08.016
|
233 |
Mary I. Buescher, Daniel D. Gallaher. Wheat Color (Class), Not Refining, Influences Colon Cancer Risk in Rats. Nutrition and Cancer 2014; 66(5): 849 doi: 10.1080/01635581.2014.904909
|
234 |
Johan Gagnière, Jennifer Raisch, Julie Veziant, Nicolas Barnich, Richard Bonnet, Emmanuel Buc, Marie-Agnès Bringer, Denis Pezet, Mathilde Bonnet. Gut microbiota imbalance and colorectal cancer. World Journal of Gastroenterology 2016; 22(2): 501-518 doi: 10.3748/wjg.v22.i2.501
|
235 |
Rui Wang, Huaixing Kang, Xu Zhang, Qing Nie, Hongling Wang, Chaojun Wang, Shujun Zhou. Urinary metabolomics for discovering metabolic biomarkers of bladder cancer by UPLC-MS. BMC Cancer 2022; 22(1) doi: 10.1186/s12885-022-09318-5
|