For: | Bynigeri RR, Jakkampudi A, Jangala R, Subramanyam C, Sasikala M, Rao GV, Reddy DN, Talukdar R. Pancreatic stellate cell: Pandora's box for pancreatic disease biology. World J Gastroenterol 2017; 23(3): 382-405 [PMID: 28210075 DOI: 10.3748/wjg.v23.i3.382] |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v23/i3/382.htm |
Number | Citing Articles |
1 |
Didem Saka, Muazzez Gökalp, Betül Piyade, Nedim Can Cevik, Elif Arik Sever, Derya Unutmaz, Güralp O. Ceyhan, Ihsan Ekin Demir, Hande Asimgil. Mechanisms of T-Cell Exhaustion in Pancreatic Cancer. Cancers 2020; 12(8): 2274 doi: 10.3390/cancers12082274
|
2 |
Rasmus Hagn-Meincke, Dhiraj Yadav, Dana K. Andersen, Santhi Swaroop Vege, Evan L. Fogel, Jose Serrano, Melena D. Bellin, Mark D. Topazian, Darwin L. Conwell, Liang Li, Stephen K. Van Den Eeden, Asbjørn M. Drewes, Stephen J. Pandol, Chris E. Forsmark, William E. Fisher, Phil A. Hart, Søren S. Olesen, Walter G. Park. Circulating immune signatures in chronic pancreatitis with and without preceding acute pancreatitis: A pilot study. Pancreatology 2024; 24(3): 384 doi: 10.1016/j.pan.2024.02.012
|
3 |
Viola Sgarminato, Jorge Madrid-Wolff, Antoine Boniface, Gianluca Ciardelli, Chiara Tonda-Turo, Christophe Moser. 3D in vitro modeling of the exocrine pancreatic unit using tomographic volumetric bioprinting. Biofabrication 2024; 16(4): 045034 doi: 10.1088/1758-5090/ad6d8d
|
4 |
Yu Zhang, Wen-Qing Zhang, Xin-Yuan Liu, Qi Zhang, Tao Mao, Xiao-Yu Li. Immune cells and immune cell-targeted therapy in chronic pancreatitis. Frontiers in Oncology 2023; 13 doi: 10.3389/fonc.2023.1151103
|
5 |
Junyu Cao, Jie Li, Liankang Sun, Tao Qin, Ying Xiao, Ke Chen, Weikun Qian, Wanxing Duan, Jianjun Lei, Jiguang Ma, Qingyong Ma, Liang Han. Hypoxia‐driven paracrine osteopontin/integrin αvβ3 signaling promotes pancreatic cancer cell epithelial–mesenchymal transition and cancer stem cell‐like properties by modulating forkhead box protein M1. Molecular Oncology 2019; 13(2): 228 doi: 10.1002/1878-0261.12399
|
6 |
Qi-Chao Ge, Christoph F Dietrich, Manoop S Bhutani, Bao-Zhen Zhang, Yue Zhang, Yi-Dan Wang, Jing-Jing Zhang, Yu-Fan Wu, Si-Yu Sun, Jin-Tao Guo. Comprehensive review of diagnostic modalities for early chronic pancreatitis. World Journal of Gastroenterology 2021; 27(27): 4342-4357 doi: 10.3748/wjg.v27.i27.4342
|
7 |
Li-Hua Cui, Cai-Xia Li, Yu-Zhen Zhuo, Lei Yang, Nai-Qiang Cui, Shu-Kun Zhang. Saikosaponin d ameliorates pancreatic fibrosis by inhibiting autophagy of pancreatic stellate cells via PI3K/Akt/mTOR pathway. Chemico-Biological Interactions 2019; 300: 18 doi: 10.1016/j.cbi.2019.01.005
|
8 |
Priyanka Gupta, Pedro A. Pérez-Mancera, Hemant Kocher, Andrew Nisbet, Giuseppe Schettino, Eirini G. Velliou. A Novel Scaffold-Based Hybrid Multicellular Model for Pancreatic Ductal Adenocarcinoma—Toward a Better Mimicry of the in vivo Tumor Microenvironment. Frontiers in Bioengineering and Biotechnology 2020; 8 doi: 10.3389/fbioe.2020.00290
|
9 |
Silviya Radoslavova, Benedikt Fels, Zoltan Pethö, Matthias Gruner, Tobias Ruck, Sven G. Meuth, Antoine Folcher, Natalia Prevarskaya, Albrecht Schwab, Halima Ouadid-Ahidouch. TRPC1 channels regulate the activation of pancreatic stellate cells through ERK1/2 and SMAD2 pathways and perpetuate their pressure-mediated activation. Cell Calcium 2022; 106: 102621 doi: 10.1016/j.ceca.2022.102621
|
10 |
C.A. Mandarim-de-Lacerda. L’îlot pancréatique : ce que nous savons 150 ans après Langerhans. Bulletin de l'Académie Nationale de Médecine 2019; 203(8-9): 670 doi: 10.1016/j.banm.2019.06.015
|
11 |
Christian Benzing, Fritz Klein, Uwe Pelzer, Marianne Sinn, Johann Pratschke, Marcus Bahra. An inflammatory subtype of pancreatic ductal adenocarcinoma is associated with poor prognosis and increased perioperative mortality. Journal of Pancreatology 2019; 2(3): 107 doi: 10.1097/JP9.0000000000000022
|
12 |
Haimin Feng, Taiki Moriyama, Kenoki Ohuchida, Nan Sheng, Chika Iwamoto, Koji Shindo, Kengo Shirahane, Naoki Ikenaga, Shuntaro Nagai, Kohei Nakata, Kazuhiro Mizumoto, Masafumi Nakamura. N-acetyl cysteine induces quiescent-like pancreatic stellate cells from an active state and attenuates cancer-stroma interactions. Journal of Experimental & Clinical Cancer Research 2021; 40(1) doi: 10.1186/s13046-021-01939-1
|
13 |
Yunting Zhou, Wei Li, Junming Zhou, Juan Chen, Xiaohang Wang, Min Cai, Fengfei Li, Wei Xu, Per-Ola Carlsson, Zilin Sun. Lipotoxicity reduces β cell survival through islet stellate cell activation regulated by lipid metabolism-related molecules. Experimental Cell Research 2019; 380(1): 1 doi: 10.1016/j.yexcr.2019.04.012
|
14 |
Antonio González, José Antonio Tapia. Special issue: 2022 pancreatic cancer and the role of the stroma in the pathophysiology of the gland. Journal of Physiology and Biochemistry 2023; 79(1): 175 doi: 10.1007/s13105-022-00942-0
|
15 |
Srikanth Iyer, Macie Enman, Preeti Sahay, Vikas Dudeja. Novel therapeutics to treat chronic pancreatitis: targeting pancreatic stellate cells and macrophages. Expert Review of Gastroenterology & Hepatology 2024; 18(4-5): 171 doi: 10.1080/17474124.2024.2355969
|
16 |
Zhou Chen, Zhengfeng Wang, Yan Du, Huaqing Shi, Wence Zhou. The microbiota and aging microenvironment in pancreatic cancer: Cell origin and fate. Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 2022; 1877(6): 188826 doi: 10.1016/j.bbcan.2022.188826
|
17 |
Miaomiao Li, Yue Yuan, Xue Han, Xinjuan Liu, Weizhen Zhang, Jianyu Hao. Antioxidant Mitoquinone Alleviates Chronic Pancreatitis via Anti-Fibrotic and Antioxidant Effects. Journal of Inflammation Research 2022; : 4409 doi: 10.2147/JIR.S357394
|
18 |
Salomé Martínez-Morcillo, Marcos Pérez-López, Francisco Soler-Rodríguez, Antonio González. The organophosphorus pesticide dimethoate decreases cell viability and induces changes in different biochemical parameters of rat pancreatic stellate cells. Toxicology in Vitro 2019; 54: 89 doi: 10.1016/j.tiv.2018.09.011
|
19 |
Yang Wu, Chun Zhang, Mei Guo, Weikang Hu, Yangling Qiu, Mengran Li, Dong Xu, Pengfei Wu, Jing Sun, Run Shi, Zili Zhang, Kuirong Jiang. Targeting pancreatic stellate cells in chronic pancreatitis: Focus on therapeutic drugs and natural compounds. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.1042651
|
20 |
Hui Wang, Liang Qi, Han Han, Xuena Li, Mengmeng Han, Lei Xing, Ling Li, Hulin Jiang. Nanomedicine regulating PSC-mediated intercellular crosstalk: Mechanisms and therapeutic strategies. Acta Pharmaceutica Sinica B 2024; 14(11): 4756 doi: 10.1016/j.apsb.2024.07.007
|
21 |
Ya-Wei Bi, Long-Song Li, Nan Ru, Bo Zhang, Xiao Lei. Nicotinamide adenine dinucleotide phosphate oxidase in pancreatic diseases: Mechanisms and future perspectives. World Journal of Gastroenterology 2024; 30(5): 429-439 doi: 10.3748/wjg.v30.i5.429
Abstract(322) |
Core Tip(319) |
Full Article(HTML)(1636)
|
Full Article with Cover (PDF)-4970K(135)
|
Full Article (Word)-1388K(8)
|
Audio-772K(4)
|
Peer-Review Report-231K(49)
|
Answering Reviewers-92K(54)
|
Full Article (PDF)-1976K(102)
|
Full Article (XML)-205K(33)
|
Times Cited (0)
|
Total Visits (3682)
|
Open
|
22 |
Wenchao Yao, Dankun Luo, Zhenyi Lv, Yang Yang, Liyi Wang, Biao Ma, Dongbo Xue, Chenjun Hao, Yingmei Zhang. The Rabep1-Mediated Endocytosis and Activation of Trypsinogen to Promote Pancreatic Stellate Cell Activation. Biomolecules 2022; 12(8): 1063 doi: 10.3390/biom12081063
|
23 |
Matias Estaras, Antonio Gonzalez. Modulation of cell physiology under hypoxia in pancreatic cancer. World Journal of Gastroenterology 2021; 27(28): 4582-4602 doi: 10.3748/wjg.v27.i28.4582
|
24 |
Ran Xue, Jing Yang, Jing Wu, Qinghua Meng, Jianyu Hao. Coenzyme Q10 inhibits the activation of pancreatic stellate cells through PI3K/AKT/mTOR signaling pathway. Oncotarget 2017; 8(54): 92300 doi: 10.18632/oncotarget.21247
|
25 |
D.I. Pylov. The importance of vaspin in external and internal secretory activity of the pancreas. Shidnoevropejskij zurnal vnutrisnoi ta simejnoi medicini 2021; 2021(1): 96 doi: 10.15407/internalmed2021.01.096
|
26 |
Yan Liu, Xiaodi Wu, Feifan Chen, Hao Li, Tao Wang, Ningning Liu, Kang Sun, Guangdong Zhou, Ke Tao. Modulating cancer-stroma crosstalk by a nanoparticle-based photodynamic method to pave the way for subsequent therapies. Biomaterials 2022; 289: 121813 doi: 10.1016/j.biomaterials.2022.121813
|
27 |
Marta Bombardo, Rong Chen, Ermanno Malagola, Enrica Saponara, Andrew P. Hills, Rolf Graf, Sabrina Sonda. Inhibition of Class I Histone Deacetylases Abrogates Tumor Growth FactorβExpression and Development of Fibrosis during Chronic Pancreatitis. Molecular Pharmacology 2018; 94(2): 793 doi: 10.1124/mol.117.110924
|
28 |
Fu Zhang, Qida Hu, Bowen Li, Yong Huang, Meng Wang, Shiyi Shao, Honglin Tang, Zhuo Yao, Yuan Ping, Tingbo Liang. A biomimetic nanodrug for enhanced chemotherapy of pancreatic tumors. Journal of Controlled Release 2023; 354: 835 doi: 10.1016/j.jconrel.2023.01.007
|
29 |
Cai-Xia Li, Li-Hua Cui, Lan-Qiu Zhang, Lei Yang, Yu-Zhen Zhuo, Nai-Qiang Cui, Shu-Kun Zhang. Role of NLR family pyrin domain-containing 3 inflammasome in the activation of pancreatic stellate cells. Experimental Cell Research 2021; 404(2): 112634 doi: 10.1016/j.yexcr.2021.112634
|
30 |
Veethika Pandey, Peter Storz. Targeting the tumor microenvironment in pancreatic ductal adenocarcinoma. Expert Review of Anticancer Therapy 2019; 19(6): 473 doi: 10.1080/14737140.2019.1622417
|
31 |
Akiko Sagara, Kohei Nakata, Tomohiro Yamashita, Weiyu Guan, Pingshan Zhong, Sokichi Matsumoto, Sho Endo, Chika Iwamoto, Koji Shindo, Naoki Ikenaga, Taiki Moriyama, Kenoki Ohuchida, Kazuhiro Mizumoto, Masafumi Nakamura. New high-throughput screening detects compounds that suppress pancreatic stellate cell activation and attenuate pancreatic cancer growth. Pancreatology 2021; 21(6): 1071 doi: 10.1016/j.pan.2021.04.002
|
32 |
Wei Mu, Zhe Wang, Margot Zöller. Ping-Pong—Tumor and Host in Pancreatic Cancer Progression. Frontiers in Oncology 2019; 9 doi: 10.3389/fonc.2019.01359
|
33 |
Cheng Qin, Bangbo Zhao, Yuanyang Wang, Zeru Li, Tianyu Li, Yutong Zhao, Weibin Wang, Yupei Zhao. Extracellular vesicles miR‐31‐5p promotes pancreatic cancer chemoresistance via regulating LATS2‐Hippo pathway and promoting SPARC secretion from pancreatic stellate cells. Journal of Extracellular Vesicles 2024; 13(8) doi: 10.1002/jev2.12488
|
34 |
Ozkan Kanat, Hulya Ertas. Shattering the castle walls: Anti-stromal therapy for pancreatic cancer. World Journal of Gastrointestinal Oncology 2018; 10(8): 202-210 doi: 10.4251/wjgo.v10.i8.202
|
35 |
Viola Sgarminato, Simone Luigi Marasso, Matteo Cocuzza, Giorgio Scordo, Alberto Ballesio, Gianluca Ciardelli, Chiara Tonda-Turo. PDAC-on-chip for in vitro modeling of stromal and pancreatic cancer cell crosstalk. Biomaterials Science 2023; 11(1): 208 doi: 10.1039/D2BM00881E
|
36 |
Mohini Singh, Paulami Pal, Rajat Subhra Dutta, Daphisha Marbaniang, Subhabrata Ray, Bhaskar Mazumder. Nanodiamond Mediated Molecular Targeting in Pancreatic Ductal Adenocarcinoma:
Disrupting the Tumor-stromal Cross-talk, Next Hope on the
Horizon?. Current Cancer Drug Targets 2023; 23(8): 620 doi: 10.2174/1568009623666230227120837
|
37 |
Decai Wang, Shengbo Han, Guozheng Lv, Yuhang Hu, Wenfeng Zhuo, Zhu Zeng, Jiang Tang, Yan Huang, Fan Wang, Jie Wang, Yong Zhao, Gang Zhao. Pancreatic Acinar Cells-Derived Sphingosine-1-Phosphate Contributes to Fibrosis of Chronic Pancreatitis via Inducing Autophagy and Activation of Pancreatic Stellate Cells. Gastroenterology 2023; 165(6): 1488 doi: 10.1053/j.gastro.2023.08.029
|
38 |
Zhengyu Zhou, Lewen Zhang, Xun Wei, Aiqing Wang, Yudie Hu, Min Xiao, Yuxuan Zheng. 1,25(OH)2D3 inhibits pancreatic stellate cells activation and promotes insulin secretion in T2DM. Endocrine 2024; 85(3): 1193 doi: 10.1007/s12020-024-03833-0
|
39 |
Priyanka Gupta, Camino Bermejo‐Rodriguez, Hemant Kocher, Pedro A. Pérez‐Mancera, Eirini G. Velliou. Chemotherapy Assessment in Advanced Multicellular 3D Models of Pancreatic Cancer: Unravelling the Importance of Spatiotemporal Mimicry of the Tumor Microenvironment. Advanced Biology 2024; 8(7) doi: 10.1002/adbi.202300580
|
40 |
Ioannis Tsomidis, Argyro Voumvouraki, Elias Kouroumalis. The Pathogenesis of Pancreatitis and the Role of Autophagy. Gastroenterology Insights 2024; 15(2): 303 doi: 10.3390/gastroent15020022
|
41 |
Mohsin Aslam, Nitin Jagtap, Arun Karyampudi, Rupjyoti Talukdar, D. Nageshwar Reddy. Risk factors for development of endocrine insufficiency in chronic pancreatitis. Pancreatology 2021; 21(1): 15 doi: 10.1016/j.pan.2020.11.011
|
42 |
P Hrabák, M Kalousová, T Krechler, T Zima. Pancreatic stellate cells - rising stars in pancreatic pathologies. Physiological Research 2021; (S4): S597 doi: 10.33549//physiolres.934783
|
43 |
Xiangyu Chu, Yinmo Yang, Xiaodong Tian. Crosstalk between Pancreatic Cancer Cells and Cancer-Associated Fibroblasts in the Tumor Microenvironment Mediated by Exosomal MicroRNAs. International Journal of Molecular Sciences 2022; 23(17): 9512 doi: 10.3390/ijms23179512
|
44 |
Yifan Ren, Qing Cui, Jia Zhang, Wuming Liu, Meng Xu, Yi Lv, Zheng Wu, Yuanyuan Zhang, Rongqian Wu. Milk Fat Globule-EGF Factor 8 Alleviates Pancreatic Fibrosis by Inhibiting ER Stress-Induced Chaperone-Mediated Autophagy in Mice. Frontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.707259
|
45 |
Kıvanç Görgülü, Kalliope N. Diakopoulos, Ezgi Kaya-Aksoy, Katrin J. Ciecielski, Jiaoyu Ai, Marina Lesina, Hana Algül. The Role of Autophagy in Pancreatic Cancer: From Bench to the Dark Bedside. Cells 2020; 9(4): 1063 doi: 10.3390/cells9041063
|
46 |
Zixin Pi, Xiangning Qiu, Jiani Liu, Yaqian Shi, Zhuotong Zeng, Rong Xiao. Activating Protein-1 (AP-1): A Promising Target for the Treatment of
Fibrotic Diseases. Current Medicinal Chemistry 2024; 31(7): 904 doi: 10.2174/0929867330666230209100059
|
47 |
Wei Li, Yunting Zhou, Xiaohang Wang, Min Cai, Feng Gao, Per-Ola Carlsson, Zilin Sun. A modified in vitro tool for isolation and characterization of rat quiescent islet stellate cells. Experimental Cell Research 2019; 384(1): 111617 doi: 10.1016/j.yexcr.2019.111617
|
48 |
Hongyan Li, Ming Xiu, Shuhua Wang, David R. Brigstock, Li Sun, Limei Qu, Runping Gao. Role of Gut‐Derived Endotoxin on Type I Collagen Production in the Rat Pancreas After Chronic Alcohol Exposure. Alcoholism: Clinical and Experimental Research 2018; 42(2): 306 doi: 10.1111/acer.13550
|
49 |
S. K. Daniel, K. M. Sullivan, K. P. Labadie, V. G. Pillarisetty. Hypoxia as a barrier to immunotherapy in pancreatic adenocarcinoma. Clinical and Translational Medicine 2019; 8(1) doi: 10.1186/s40169-019-0226-9
|
50 |
Sarah Klauss, Stephan Schorn, Steffen Teller, Hendrik Steenfadt, Helmut Friess, Güralp O. Ceyhan, Ihsan Ekin Demir. Genetically inducedvs.classical animal models of chronic pancreatitis: a critical comparison. The FASEB Journal 2018; 32(11): 5778 doi: 10.1096/fj.201800241RR
|
51 |
Ran Xue, Kai Jia, Jianxin Wang, Lixin Yang, Yanbin Wang, Lingyun Gao, Jianyu Hao. A Rising Star in Pancreatic Diseases: Pancreatic Stellate Cells. Frontiers in Physiology 2018; 9 doi: 10.3389/fphys.2018.00754
|
52 |
Mohammad Awaji, Rakesh K. Singh. Cancer-Associated Fibroblasts’ Functional Heterogeneity in Pancreatic Ductal Adenocarcinoma. Cancers 2019; 11(3): 290 doi: 10.3390/cancers11030290
|
53 |
Rupinder Mann, Umesha Boregowda, Neil Vyas, Mahesh Gajendran, Chandra Prakash Umapathy, Hari Sayana, Juan Echavarria, Sandeep Patel, Shreyas Saligram. Current advances in the management of chronic pancreatitis. Disease-a-Month 2021; 67(12): 101225 doi: 10.1016/j.disamonth.2021.101225
|
54 |
Shiao Li Oei, Friedemann Schad. Are Aspects of Integrative Concepts Helpful to Improve Pancreatic Cancer Therapy?. Cancers 2023; 15(4): 1116 doi: 10.3390/cancers15041116
|
55 |
Matthew A. Wallig, John L. Vahle, John M. Sullivan. Haschek and Rousseaux' s Handbook of Toxicologic Pathology. 2024; : 417 doi: 10.1016/B978-0-12-821046-8.00008-6
|
56 |
Brendon Herring, Samuel Jang, Jason Whitt, Kayla Goliwas, Zviadi Aburjania, Vikas Dudeja, Bin Ren, Joel Berry, James Bibb, Andra Frost, Herbert Chen, John Bart Rose, Renata Jaskula-Sztul. Ex Vivo Modeling of Human Neuroendocrine Tumors in Tissue Surrogates. Frontiers in Endocrinology 2021; 12 doi: 10.3389/fendo.2021.710009
|
57 |
Maria V. Monteiro, Luís P. Ferreira, Marta Rocha, Vítor M. Gaspar, João F. Mano. Advances in bioengineering pancreatic tumor-stroma physiomimetic Biomodels. Biomaterials 2022; 287: 121653 doi: 10.1016/j.biomaterials.2022.121653
|
58 |
Bang-Wei Huang, Peng-Yuan Wang, Liang-Hao Hu. Transcriptional regulation of pancreatic stellate cell activation in chronic pancreatitis. World Chinese Journal of Digestology 2023; 31(21): 877 doi: 10.11569/wcjd.v31.i21.877
|
59 |
Allison N. Lau, Matthew G. Vander Heiden. Metabolism in the Tumor Microenvironment. Annual Review of Cancer Biology 2020; 4(1): 17 doi: 10.1146/annurev-cancerbio-030419-033333
|
60 |
Zhao Li, Yue Du, Xin Wang. Pancreatic Lineage Cell Differentiation of Bone Marrow Mesenchymal Stromal Cells on Acellular Pancreatic Bioscaffold. Pancreas 2022; 51(10): 1411 doi: 10.1097/MPA.0000000000002184
|
61 |
Andreas Domen, Delphine Quatannens, Sara Zanivan, Christophe Deben, Jonas Van Audenaerde, Evelien Smits, An Wouters, Filip Lardon, Geert Roeyen, Yannick Verhoeven, Annelies Janssens, Timon Vandamme, Peter van Dam, Marc Peeters, Hans Prenen. Cancer-Associated Fibroblasts as a Common Orchestrator of Therapy Resistance in Lung and Pancreatic Cancer. Cancers 2021; 13(5): 987 doi: 10.3390/cancers13050987
|
62 |
Jitai Zhang, Juan Bai, Qian Zhou, Yuxin Hu, Qian Wang, Lanting Yang, Huamin Chen, Hui An, Chuanzan Zhou, Yongyu Wang, Xiufang Chen, Ming Li. Glutathione prevents high glucose-induced pancreatic fibrosis by suppressing pancreatic stellate cell activation via the ROS/TGFβ/SMAD pathway. Cell Death & Disease 2022; 13(5) doi: 10.1038/s41419-022-04894-7
|
63 |
V. V. Zhdanov, A. V. Chaikovskii, E. S. Pan. Hepatic stellate cells and their role in the formation of the progenitor cell niche. Bulletin of Siberian Medicine 2024; 23(1): 126 doi: 10.20538/1682-0363-2024-1-126-133
|
64 |
Yasuhiro Oyama, Hideya Onishi, Satoko Koga, Mutsunori Murahashi, Shu Ichimiya, Kazunori Nakayama, Akiko Fujimura, Makoto Kawamoto, Akira Imaizumi, Masayo Umebayashi, Kenoki Ohuchida, Takashi Morisaki, Masafumi Nakamura. Patched 1-interacting Peptide Represses Fibrosis in Pancreatic Cancer to Augment the Effectiveness of Immunotherapy. Journal of Immunotherapy 2020; 43(4): 121 doi: 10.1097/CJI.0000000000000305
|
65 |
Tao Zhang, Guangquan Zhang, Wenbo Yang, Hongze Chen, Jisheng Hu, Zhongjie Zhao, Chundong Cheng, Guanqun Li, Yu Xie, Yilong Li, Rui Kong, Yongwei Wang, Gang Wang, Hua Chen, Xue-Wei Bai, Shangha Pan, Bei Sun, Le Li. Lnc-PFAR facilitates autophagy and exacerbates pancreatic fibrosis by reducing pre-miR-141 maturation in chronic pancreatitis. Cell Death & Disease 2021; 12(11) doi: 10.1038/s41419-021-04236-z
|
66 |
P SUHAJ, T OLEJAR, R MATEJ. PAR2: The Cornerstone of Pancreatic Diseases. Physiological Research 2022; : 583 doi: 10.33549/physiolres.934931
|
67 |
Meifang Zheng, Runping Gao. Vitamin D: A Potential Star for Treating Chronic Pancreatitis. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.902639
|
68 |
You-Fan Peng, Hao Lin, De-Chen Liu, Xiang-Yun Zhu, Nan Huang, Ying-Xiang Wei, Ling Li. Heat shock protein 90 inhibitor ameliorates pancreatic fibrosis by degradation of transforming growth factor-β receptor. Cellular Signalling 2021; 84: 110001 doi: 10.1016/j.cellsig.2021.110001
|
69 |
Meifang Zheng, Hongyan Li, Li Sun, David R Brigstock, Runping Gao. Interleukin-6 participates in human pancreatic stellate cell activation and collagen I production via TGF-β1/Smad pathway. Cytokine 2021; 143: 155536 doi: 10.1016/j.cyto.2021.155536
|
70 |
Guixian Zhang, Liming Tang, Hongbin Liu, Dawei Liu, Manxue Wang, Jun Cai, Weijun Liu, Wei Nie, Yi Zhang, Xiaomeng Yu. Psidium guajava Flavonoids Prevent NLRP3 Inflammasome Activation and Alleviate the Pancreatic Fibrosis in a Chronic Pancreatitis Mouse Model. The American Journal of Chinese Medicine 2021; 49(08): 2001 doi: 10.1142/S0192415X21500944
|
71 |
Guixian Zhang, Xiumei Zhao, Jun Cai, Sainan Li, Xijing Li, Wenchang Li, Pengcheng Shi, Dawei Liu, Duo Zheng, Ting Zhang, Renrui Feng, Hongbin Liu. XCHT alleviates the pancreatic fibrosis via VDR/NLRP3 signaling pathway in a mouse model of CP. Journal of Ethnopharmacology 2023; 300: 115689 doi: 10.1016/j.jep.2022.115689
|
72 |
Ramiz S. Ahmad, Timothy D. Eubank, Slawomir Lukomski, Brian A. Boone. Immune Cell Modulation of the Extracellular Matrix Contributes to the Pathogenesis of Pancreatic Cancer. Biomolecules 2021; 11(6): 901 doi: 10.3390/biom11060901
|
73 |
Yael Ben-Harosh, Mariana Anosov, Hagit Salem, Yekaterina Yatchenko, R. Birk. Pancreatic stellate cell activation is regulated by fatty acids and ER stress. Experimental Cell Research 2017; 359(1): 76 doi: 10.1016/j.yexcr.2017.08.007
|
74 |
Puvanesswaray Ramakrishnan, Wei Mee Loh, Subash C.B. Gopinath, Srinivasa Reddy Bonam, Ismail M. Fareez, Rhanye Mac Guad, Maw Shin Sim, Yuan Seng Wu. Selective phytochemicals targeting pancreatic stellate cells as new anti-fibrotic agents for chronic pancreatitis and pancreatic cancer. Acta Pharmaceutica Sinica B 2020; 10(3): 399 doi: 10.1016/j.apsb.2019.11.008
|
75 |
Silviya Radoslavova, Antoine Folcher, Thibaut Lefebvre, Kateryna Kondratska, Stéphanie Guénin, Isabelle Dhennin-Duthille, Mathieu Gautier, Natalia Prevarskaya, Halima Ouadid-Ahidouch. Orai1 Channel Regulates Human-Activated Pancreatic Stellate Cell Proliferation and TGFβ1 Secretion through the AKT Signaling Pathway. Cancers 2021; 13(10): 2395 doi: 10.3390/cancers13102395
|
76 |
Qi Wu, Ying Tian, Jingqiu Zhang, Hongpeng Zhang, Fengming Gu, Yongdie Lu, Shengnan Zou, Yuji Chen, Pengxiang Sun, Mengyue Xu, Xiaoming Sun, Chao Xia, Hao Chi, A Ying Zhu, Dong Tang, Daorong Wang. Functions of pancreatic stellate cell-derived soluble factors in the microenvironment of pancreatic ductal carcinoma. Oncotarget 2017; 8(60): 102721 doi: 10.18632/oncotarget.21970
|
77 |
Ran Xue, Jianxin Wang, Lixin Yang, Xinjuan Liu, Yan Gao, Yanhua Pang, Yanbin Wang, Jianyu Hao. Coenzyme Q10 Ameliorates Pancreatic Fibrosis via the ROS-Triggered mTOR Signaling Pathway. Oxidative Medicine and Cellular Longevity 2019; 2019: 1 doi: 10.1155/2019/8039694
|
78 |
Yan Liu, Xiaodi Wu, Feifan Chen, Hao Li, Tao Wang, Ningning Liu, Kang Sun, Guangdong Zhou, Ke Tao. Modulating Cancer-Stroma Crosstalk by a Nanoparticle-Based Photodynamic Method to Pave the Way for Subsequent Therapies. SSRN Electronic Journal 2022; doi: 10.2139/ssrn.4055067
|
79 |
Ayan Roy, Jayaprakash Sahoo, Sadishkumar Kamalanathan, Dukhabandhu Naik, Pazhanivel Mohan, Biju Pottakkat. Islet cell dysfunction in patients with chronic pancreatitis. World Journal of Diabetes 2020; 11(7): 280-292 doi: 10.4239/wjd.v11.i7.280
|
80 |
Hong Xiang, Hao Yu, Qi Zhou, Yu Wu, Jiaqi Ren, Zirui Zhao, Xufeng Tao, Deshi Dong. Macrophages: A rising star in immunotherapy for chronic pancreatitis. Pharmacological Research 2022; 185: 106508 doi: 10.1016/j.phrs.2022.106508
|
81 |
Rupjyoti Talukdar, D Nageshwar Reddy, Manu Tandan, Rajesh Gupta, Sundeep Lakhtakia, Mohan Ramchandani, Rakesh Kalapala, Jahangeer Basha, Zaheer Nabi, Manohar Reddy, Santosh Darishetty, Vinod Koppoju, R Pradeep, G Venkat Rao. Impact of ductal interventions on diabetes in patients with chronic pancreatitis. Journal of Gastroenterology and Hepatology 2021; 36(5): 1226 doi: 10.1111/jgh.15279
|
82 |
Xuan Li, Salvatore Nania, Ingo Kleiter, J.-Matthias Löhr, Rainer L. Heuchel. Targeting of Smad7 in Mesenchymal Cells Does Not Exacerbate Fibrosis During Experimental Chronic Pancreatitis. Pancreas 2021; 50(10): 1427 doi: 10.1097/MPA.0000000000001951
|
83 |
Lijun Kong, Xiangxiang Xu, Hewei Zhang, Yi Zhou, Hongjian Huang, Bicheng Chen, Zhenxu Zhou. Human umbilical cord–derived mesenchymal stem cells improve chronic pancreatitis in rats via the AKT-mTOR-S6K1 signaling pathway. Bioengineered 2021; 12(1): 1986 doi: 10.1080/21655979.2021.1928441
|
84 |
Fenglin Hu, Ni Lou, Juying Jiao, Fangyue Guo, Hong Xiang, Dong Shang. Macrophages in pancreatitis: Mechanisms and therapeutic potential. Biomedicine & Pharmacotherapy 2020; 131: 110693 doi: 10.1016/j.biopha.2020.110693
|
85 |
Anirban Goutam Mukherjee, Uddesh Ramesh Wanjari, Abilash Valsala Gopalakrishnan, Pragya Bradu, Aarthi Sukumar, Megha Patil, Kaviyarasi Renu, Abhijit Dey, Balachandar Vellingiri, Alex George, Raja Ganesan. Implications of cancer stem cells in diabetes and pancreatic cancer. Life Sciences 2023; 312: 121211 doi: 10.1016/j.lfs.2022.121211
|
86 |
Gonçalo Mesquita, Natalia Prevarskaya, Albrecht Schwab, V’yacheslav Lehen’kyi. Role of the TRP Channels in Pancreatic Ductal Adenocarcinoma Development and Progression. Cells 2021; 10(5): 1021 doi: 10.3390/cells10051021
|
87 |
Lara Magni, Rayhana Bouazzi, Hugo Heredero Olmedilla, Patricia S. S. Petersen, Marco Tozzi, Ivana Novak. The P2X7 Receptor Stimulates IL-6 Release from Pancreatic Stellate Cells and Tocilizumab Prevents Activation of STAT3 in Pancreatic Cancer Cells. Cells 2021; 10(8): 1928 doi: 10.3390/cells10081928
|
88 |
Hong-Lei Guo, Xue-Song Liang, Xiang-Peng Zeng, Yu Liu, Zhao-Shen Li, Li-Juan Wang, Liang-Hao Hu. Pirfenidone alleviates chronic pancreatitis via suppressing the activation of pancreatic stellate cells and the M1 polarization of macrophages. International Immunopharmacology 2024; 130: 111691 doi: 10.1016/j.intimp.2024.111691
|
89 |
Yifan Ren, Jia Zhang, Mengzhou Wang, Jianbin Bi, Tao Wang, Minglong Qiu, Yi Lv, Zheng Wu, Rongqian Wu. Identification of irisin as a therapeutic agent that inhibits oxidative stress and fibrosis in a murine model of chronic pancreatitis. Biomedicine & Pharmacotherapy 2020; 126: 110101 doi: 10.1016/j.biopha.2020.110101
|
90 |
Chiara Bazzichetto, Fabiana Conciatori, Claudio Luchini, Francesca Simionato, Raffaela Santoro, Vanja Vaccaro, Vincenzo Corbo, Italia Falcone, Gianluigi Ferretti, Francesco Cognetti, Davide Melisi, Aldo Scarpa, Ludovica Ciuffreda, Michele Milella. From Genetic Alterations to Tumor Microenvironment: The Ariadne’s String in Pancreatic Cancer. Cells 2020; 9(2): 309 doi: 10.3390/cells9020309
|
91 |
Suya Wang, Jianshi Yu, Maureen A. Kane, Alexander R. Moise. Modulation of retinoid signaling: therapeutic opportunities in organ fibrosis and repair. Pharmacology & Therapeutics 2020; 205: 107415 doi: 10.1016/j.pharmthera.2019.107415
|
92 |
Nikolaj Nielsen, Kateryna Kondratska, Tobias Ruck, Benedikt Hild, Ilya Kovalenko, Sandra Schimmelpfennig, Jana Welzig, Sarah Sargin, Otto Lindemann, Sven Christian, Sven G. Meuth, Natalia Prevarskaya, Albrecht Schwab. TRPC6 channels modulate the response of pancreatic stellate cells to hypoxia. Pflügers Archiv - European Journal of Physiology 2017; 469(12): 1567 doi: 10.1007/s00424-017-2057-0
|
93 |
Jonas Schnittert, Ruchi Bansal, Jai Prakash. Targeting Pancreatic Stellate Cells in Cancer. Trends in Cancer 2019; 5(2): 128 doi: 10.1016/j.trecan.2019.01.001
|
94 |
T. R. Sultanova, E. A. Mukhlynina, I. G. Danilova. Morphofunctional Characteristics of Primary Culture of Rat Pancreatic Stellate Cells in the Dynamics of Short-Term Culture. Cell and Tissue Biology 2024; 18(5): 528 doi: 10.1134/S1990519X24700494
|
95 |
Seon Ah Lim, Jungwon Kim, Seunghyun Jeon, Min Hwa Shin, Joonha Kwon, Tae-Jin Kim, Kyungtaek Im, Youngmin Han, Wooil Kwon, Sun-Whe Kim, Cassian Yee, Seong-Jin Kim, Jin-Young Jang, Kyung-Mi Lee. Defective Localization With Impaired Tumor Cytotoxicity Contributes to the Immune Escape of NK Cells in Pancreatic Cancer Patients. Frontiers in Immunology 2019; 10 doi: 10.3389/fimmu.2019.00496
|
96 |
Lihua Cui, Caixia Li, Ge Gao, Yuzhen Zhuo, Lei Yang, Naiqiang Cui, Shukun Zhang. FTY720 inhibits the activation of pancreatic stellate cells by promoting apoptosis and suppressing autophagy via the AMPK/mTOR pathway. Life Sciences 2019; 217: 243 doi: 10.1016/j.lfs.2018.12.019
|
97 |
Ran Xue, Lin Hua, Wenbin Xu, Yan Gao, Yanhua Pang, Jianyu Hao. Derivation and Validation of the Potential Core Genes in Pancreatic Cancer for Tumor-Stroma Crosstalk. BioMed Research International 2018; 2018: 1 doi: 10.1155/2018/4283673
|
98 |
Jianwei Fan, Lifang Duan, Nan Wu, Xiaofan Xu, Jiaqi Xin, Shengnan Jiang, Cheng Zhang, Hong Zhang. Baicalin Ameliorates Pancreatic Fibrosis by Inhibiting the Activation of Pancreatic Stellate Cells in Mice with Chronic Pancreatitis. Frontiers in Pharmacology 2021; 11 doi: 10.3389/fphar.2020.607133
|
99 |
Caixia Li, Lihua Cui, Lanqiu Zhang, Lei Yang, Yuzhen Zhuo, Jialin Cui, Naiqiang Cui, Shukun Zhang. Saikosaponin D Attenuates Pancreatic Injury Through Suppressing the Apoptosis of Acinar Cell via Modulation of the MAPK Signaling Pathway. Frontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.735079
|
100 |
Yeoree Yang, Ji‐Won Kim, Heon‐Seok Park, Eun‐Young Lee, Kun‐Ho Yoon. Pancreatic stellate cells in the islets as a novel target to preserve the pancreatic β‐cell mass and function. Journal of Diabetes Investigation 2020; 11(2): 268 doi: 10.1111/jdi.13202
|
101 |
Rupjyoti Talukdar. Progression of recurrent acute to chronic pancreatitis: More questions than answers!. Indian Journal of Gastroenterology 2018; 37(2): 77 doi: 10.1007/s12664-018-0839-8
|
102 |
Bing-Qing Li, Xin-Yuan Liu, Tao Mao, Tao-Hua Zheng, Peng Zhang, Qi Zhang, Yu Zhang, Xiao-Yu Li. The research progress of anti-inflammatory and anti-fibrosis treatment of chronic pancreatitis. Frontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.1050274
|
103 |
Yinxin Wu. SNHG11: A New Budding Star in Tumors and Inflammatory Diseases. Mini-Reviews in Medicinal Chemistry 2023; 23(20): 1993 doi: 10.2174/1389557523666230509122402
|
104 |
Sanghun Nam, Iftikhar Ali Khawar, Jong Kook Park, Suhwan Chang, Hyo-Jeong Kuh. Cellular context-dependent interaction between cancer and stellate cells in hetero-type multicellular spheroids of pancreatic tumor. Biochemical and Biophysical Research Communications 2019; 515(1): 183 doi: 10.1016/j.bbrc.2019.05.101
|
105 |
Raúl Muñoz Velasco, Ana García García, Paula Jiménez Sánchez, Inmaculada Montanuy Sellart, Víctor Javier Sánchez-Arévalo Lobo. Tumour microenvironment and heterotypic interactions in pancreatic cancer. Journal of Physiology and Biochemistry 2023; 79(1): 179 doi: 10.1007/s13105-022-00875-8
|
106 |
Akiko Sagara, Kohei Nakata, Sokichi Matsumoto, Weiyu Guan, Tomohiko Shinkawa, Chika Iwamoto, Naoki Ikenaga, Kenoki Ohuchida, Masafumi Nakamura. Repositioning of duloxetine to target pancreatic stellate cells. Oncology Letters 2021; 22(4) doi: 10.3892/ol.2021.13005
|
107 |
Alina Doctor, Markus Laube, Sebastian Meister, Oliver C. Kiss, Klaus Kopka, Sandra Hauser, Jens Pietzsch. Combined PET Radiotracer Approach Reveals Insights into Stromal Cell-Induced Metabolic Changes in Pancreatic Cancer In Vitro and In Vivo. Cancers 2024; 16(19): 3393 doi: 10.3390/cancers16193393
|
108 |
Shadab Abadpour, Chencheng Wang, Essi M. Niemi, Hanne Scholz. Tissue Engineering Strategies for Improving Beta Cell Transplantation Outcome. Current Transplantation Reports 2021; 8(3): 205 doi: 10.1007/s40472-021-00333-2
|
109 |
Emilie Darrigues, Zeid A. Nima, Dmitry A. Nedosekin, Fumiya Watanabe, Karrer M. Alghazali, Vladimir P. Zharov, Alexandru S. Biris. Tracking Gold Nanorods’ Interaction with Large 3D Pancreatic-Stromal Tumor Spheroids by Multimodal Imaging: Fluorescence, Photoacoustic, and Photothermal Microscopies. Scientific Reports 2020; 10(1) doi: 10.1038/s41598-020-59226-6
|
110 |
Elaine Tan, Bassel El-Rayes. Pancreatic Cancer and Immunotherapy: Resistance Mechanisms and Proposed Solutions. Journal of Gastrointestinal Cancer 2019; 50(1): 1 doi: 10.1007/s12029-018-0179-z
|
111 |
Zhaoming Yang, Zhiqin Xie, Jian Wan, Bo Yi, Tao Xu, Xiaorong Shu, Zhijian Zhao, Caixi Tang. Current Trends and Research Hotspots in Pancreatic Stellate Cells: A Bibliometric Study. Frontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.896679
|
112 |
Shuaishuai Xu, Huaxiang Xu, Wenquan Wang, Shuo Li, Hao Li, Tianjiao Li, Wuhu Zhang, Xianjun Yu, Liang Liu. The role of collagen in cancer: from bench to bedside. Journal of Translational Medicine 2019; 17(1) doi: 10.1186/s12967-019-2058-1
|
113 |
Maryam Alavi, Ana Mejia-Bautista, Meiyi Tang, Jela Bandovic, Avi Z. Rosenberg, Agnieszka B. Bialkowska. Krüppel-like Factor 5 Plays an Important Role in the Pathogenesis of Chronic Pancreatitis. Cancers 2023; 15(22): 5427 doi: 10.3390/cancers15225427
|
114 |
Yi Wang, Hai-Tao Li, Gang Liu, Chuan-Shen Jiang, Yan-Hong Ni, Jing-Hui Zeng, Xia Lin, Qing-Yun Wang, Da-Zhou Li, Wen Wang, Xiang-Peng Zeng. COMP promotes pancreatic fibrosis by activating pancreatic stellate cells through CD36-ERK/AKT signaling pathways. Cellular Signalling 2024; 118: 111135 doi: 10.1016/j.cellsig.2024.111135
|
115 |
Sokichi Matsumoto, Kohei Nakata, Akiko Sagara, Weiyu Guan, Naoki Ikenaga, Kenoki Ohuchida, Masafumi Nakamura. Efficient pre‑treatment for pancreatic cancer using chloroquine‑loaded nanoparticles targeting pancreatic stellate cells. Oncology Letters 2021; 22(2) doi: 10.3892/ol.2021.12894
|
116 |
Mareike Waldenmaier, Tanja Seibold, Thomas Seufferlein, Tim Eiseler. Pancreatic Cancer Small Extracellular Vesicles (Exosomes): A Tale of Short- and Long-Distance Communication. Cancers 2021; 13(19): 4844 doi: 10.3390/cancers13194844
|
117 |
Man Chang, Wenjuan Chen, Ruting Xia, Yangyue Peng, Pandi Niu, Hui Fan. Pancreatic Stellate Cells and the Targeted Therapeutic Strategies in Chronic Pancreatitis. Molecules 2023; 28(14): 5586 doi: 10.3390/molecules28145586
|
118 |
Matthew Hadden, Anubhav Mittal, Jaswinder Samra, Hala Zreiqat, Sumit Sahni, Yogambha Ramaswamy. Mechanically stressed cancer microenvironment: Role in pancreatic cancer progression. Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 2020; 1874(2): 188418 doi: 10.1016/j.bbcan.2020.188418
|
119 |
Yunting Zhou, Bo Sun, Wei Li, Junming Zhou, Feng Gao, Xiaohang Wang, Min Cai, Zilin Sun. Pancreatic Stellate Cells: A Rising Translational Physiology Star as a Potential Stem Cell Type for Beta Cell Neogenesis. Frontiers in Physiology 2019; 10 doi: 10.3389/fphys.2019.00218
|
120 |
Emma Geister, Dalton Ard, Heer Patel, Alyssa Findley, Godfrey DeSouza, Lyndsay Martin, Henry Knox, Natasha Gavara, Aurelia Lugea, Maria Eugenia Sabbatini. The Role of Twist1 in Chronic Pancreatitis–Associated Pancreatic Stellate Cells. The American Journal of Pathology 2024; 194(10): 1879 doi: 10.1016/j.ajpath.2024.06.003
|
121 |
Lei Chen, Xiaoyong Pan, Yu-Hang Zhang, Tao Huang, Yu-Dong Cai. Analysis of Gene Expression Differences between Different Pancreatic Cells. ACS Omega 2019; 4(4): 6421 doi: 10.1021/acsomega.8b02171
|
122 |
Hua Yin, Zhaowenbin Zhang, Deyu Zhang, Lisi Peng, Chuanchao Xia, Xiaoli Yang, Xinyue Wang, Zhaoshen Li, Jiang Chang, Haojie Huang. A new method for treating chronic pancreatitis and preventing fibrosis using bioactive calcium silicate ion solution. Journal of Materials Chemistry B 2023; 11(38): 9163 doi: 10.1039/D3TB01287E
|
123 |
Paola Parente, Pietro Parcesepe, Claudia Covelli, Nunzio Olivieri, Andrea Remo, Massimo Pancione, Tiziana Pia Latiano, Paolo Graziano, Evaristo Maiello, Guido Giordano. Crosstalk between the Tumor Microenvironment and Immune System in Pancreatic Ductal Adenocarcinoma: Potential Targets for New Therapeutic Approaches. Gastroenterology Research and Practice 2018; 2018: 1 doi: 10.1155/2018/7530619
|
124 |
Hao Lin, Zheng Ye, Rong Xu, Xing-Er Li, Bo Sun. The transcription factor JUN is a major regulator of quiescent pancreatic stellate cell maintenance. Gene 2023; 851: 147000 doi: 10.1016/j.gene.2022.147000
|
125 |
Ziqiang Liu, Jiacheng Lai, Heng Jiang, Chengyuan Ma, Haiyan Huang. Collagen XI alpha 1 chain, a potential therapeutic target for cancer. The FASEB Journal 2021; 35(6) doi: 10.1096/fj.202100054RR
|
126 |
Madanraj Appiya Santharam, Vignesh Dhandapani. Exploring Pancreatic Metabolism and Malignancy. 2019; : 133 doi: 10.1007/978-981-32-9393-9_8
|
127 |
Adam Kichler, Sunguk Jang. Chronic Pancreatitis: Epidemiology, Diagnosis, and Management Updates. Drugs 2020; 80(12): 1155 doi: 10.1007/s40265-020-01360-6
|
128 |
Meifang Zheng, Hongyan Li, Yanhang Gao, David R. Brigstock, Runping Gao. Vitamin D3 analogue calcipotriol inhibits the profibrotic effects of transforming growth factor- β1 on pancreatic stellate cells. European Journal of Pharmacology 2023; 957: 176000 doi: 10.1016/j.ejphar.2023.176000
|
129 |
Shi-Hai Xia. Prospect and clinical value of oxymatrine in prevention and treatment of pancreatic fibrosis. World Chinese Journal of Digestology 2020; 28(17): 819 doi: 10.11569/wcjd.v28.i17.819
|
130 |
Desheng Wu, Jin Guo, Benquan Qi, Heng Xiao. TGF-β1 induced proliferation, migration, and ECM accumulation through the SNHG11/miR-34b/LIF pathway in human pancreatic stellate cells. Endocrine Journal 2021; 68(11): 1347 doi: 10.1507/endocrj.EJ21-0176
|
131 |
Allison N Lau, Zhaoqi Li, Laura V Danai, Anna M Westermark, Alicia M Darnell, Raphael Ferreira, Vasilena Gocheva, Sharanya Sivanand, Evan C Lien, Kiera M Sapp, Jared R Mayers, Giulia Biffi, Christopher R Chin, Shawn M Davidson, David A Tuveson, Tyler Jacks, Nicholas J Matheson, Omer Yilmaz, Matthew G Vander Heiden. Dissecting cell-type-specific metabolism in pancreatic ductal adenocarcinoma. eLife 2020; 9 doi: 10.7554/eLife.56782
|
132 |
L. A. Mozhejko. Role of stellate cells in the morphogenesis of chronic pancreatitis. Proceedings of the National Academy of Sciences of Belarus, Medical series 2019; 15(4): 455 doi: 10.29235/1814-6023-2018-15-4-455-464
|
133 |
Yang Wu, Chun Zhang, Kuirong Jiang, Jens Werner, Alexandr V. Bazhin, Jan G. D’Haese. The Role of Stellate Cells in Pancreatic Ductal Adenocarcinoma: Targeting Perspectives. Frontiers in Oncology 2021; 10 doi: 10.3389/fonc.2020.621937
|
134 |
Li Sun, Meifang Zheng, Yanhang Gao, David R. Brigstock, Runping Gao. Retinoic acid signaling pathway in pancreatic stellate cells: Insight into the anti-fibrotic effect and mechanism. European Journal of Pharmacology 2024; 967: 176374 doi: 10.1016/j.ejphar.2024.176374
|
135 |
Romana Urbas, Eckhard Klieser, Daniel Neureiter, Erich Brenner. Textbook of Pancreatic Cancer. 2021; : 145 doi: 10.1007/978-3-030-53786-9_11
|
136 |
Weikun Qian, Jie Li, Ke Chen, Zhengdong Jiang, Liang Cheng, Cancan Zhou, Bin Yan, Junyu Cao, Qingyong Ma, Wanxing Duan. Metformin suppresses tumor angiogenesis and enhances the chemosensitivity of gemcitabine in a genetically engineered mouse model of pancreatic cancer. Life Sciences 2018; 208: 253 doi: 10.1016/j.lfs.2018.07.046
|
137 |
Yating Zhao, Yongpu Feng, Fengyuan Sun, Lei Li, Jiayu Chen, Yingxiao Song, Wenbo Zhu, Xiulin Hu, Zhaoshen Li, Fanyang Kong, Yiqi Du, Xiangyu Kong. Optimized rAAV8 targeting acinar KLF4 ameliorates fibrosis in chronic pancreatitis via exosomes-enriched let-7s suppressing pancreatic stellate cells activation. Molecular Therapy 2024; 32(8): 2624 doi: 10.1016/j.ymthe.2024.06.030
|