For: | Xu MQ, Cao HL, Wang WQ, Wang S, Cao XC, Yan F, Wang BM. Fecal microbiota transplantation broadening its application beyond intestinal disorders. World J Gastroenterol 2015; 21(1): 102-111 [PMID: 25574083 DOI: 10.3748/wjg.v21.i1.102] |
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URL: | https://www.wjgnet.com/1007-9327/full/v21/i1/102.htm |
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Huajie Zhao, Min Li, Liang Liu, Duan Li, Linjing Zhao, Zhen Wu, Mingxu Zhou, Le Jia, Fan Yang. Cordyceps militaris polysaccharide alleviates diabetic symptoms by regulating gut microbiota against TLR4/NF-κB pathway. International Journal of Biological Macromolecules 2023; 230: 123241 doi: 10.1016/j.ijbiomac.2023.123241
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Ursula M. McCormack, Tânia Curião, Toby Wilkinson, Barbara U. Metzler-Zebeli, Henry Reyer, Tomas Ryan, Julia A. Calderon-Diaz, Fiona Crispie, Paul D. Cotter, Christopher J. Creevey, Gillian E. Gardiner, Peadar G. Lawlor, Rachel I. Adams. Fecal Microbiota Transplantation in Gestating Sows and Neonatal Offspring Alters Lifetime Intestinal Microbiota and Growth in Offspring. mSystems 2018; 3(3) doi: 10.1128/mSystems.00134-17
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Elyan K. Shor, Shawn P. Brown, David A. Freeman. Bacteria and Bellicosity: Photoperiodic Shifts in Gut Microbiota Drive Seasonal Aggressive Behavior in Male Siberian Hamsters. Journal of Biological Rhythms 2022; 37(3): 296 doi: 10.1177/07487304221092105
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Jessica Emily Green, Jessica A. Davis, Michael Berk, Christopher Hair, Amy Loughman, David Castle, Eugene Athan, Andrew A. Nierenberg, John F. Cryan, Felice Jacka, Wolfgang Marx. Efficacy and safety of fecal microbiota transplantation for the treatment of diseases other than Clostridium difficile infection: a systematic review and meta-analysis. Gut Microbes 2020; 12(1): 1854640 doi: 10.1080/19490976.2020.1854640
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Ewa Tywanek, Agata Michalak, Joanna Świrska, Agnieszka Zwolak. Autoimmunity, New Potential Biomarkers and the Thyroid Gland—The Perspective of Hashimoto’s Thyroiditis and Its Treatment. International Journal of Molecular Sciences 2024; 25(9): 4703 doi: 10.3390/ijms25094703
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Baskar Balakrishnan, Veena Taneja. Microbial modulation of the gut microbiome for treating autoimmune diseases. Expert Review of Gastroenterology & Hepatology 2018; 12(10): 985 doi: 10.1080/17474124.2018.1517044
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A.C. Wing, M. Kremenchutzky. Multiple sclerosis and faecal microbiome transplantation: are you going to eat that?. Beneficial Microbes 2019; 10(1): 27 doi: 10.3920/BM2018.0029
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Mohammad Esmaeil Amini, Navid Shomali, Arash Bakhshi, Somaye Rezaei, Maryam Hemmatzadeh, Ramin Hosseinzadeh, Solat Eslami, Farhad Babaie, Saeed Aslani, Shahram Torkamandi, Hamed Mohammadi. Gut microbiome and multiple sclerosis: New insights and perspective. International Immunopharmacology 2020; 88: 107024 doi: 10.1016/j.intimp.2020.107024
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Lisa Rizzetto, Francesca Fava, Kieran M. Tuohy, Carlo Selmi. Connecting the immune system, systemic chronic inflammation and the gut microbiome: The role of sex. Journal of Autoimmunity 2018; 92: 12 doi: 10.1016/j.jaut.2018.05.008
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Kanglan Li, Shouchao Wei, Li Hu, Xiaojian Yin, Yingren Mai, Chunmei Jiang, Xiaoping Peng, Xingxing Cao, Zhongkai Huang, Haihong Zhou, Guoda Ma, Zhou Liu, Huiliang Li, Bin Zhao. Protection of Fecal Microbiota Transplantation in a Mouse Model of Multiple Sclerosis. Mediators of Inflammation 2020; 2020: 1 doi: 10.1155/2020/2058272
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David J. Wallace, Naomi L. Sayre, T. Tyler Patterson, Susannah E. Nicholson, Donald Hilton, Ramesh Grandhi. Spinal cord injury and the human microbiome: beyond the brain–gut axis. Neurosurgical Focus 2019; 46(3): E11 doi: 10.3171/2018.12.FOCUS18206
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Eleonore Fröhlich, Richard Wahl. Microbiota and Thyroid Interaction in Health and Disease. Trends in Endocrinology & Metabolism 2019; 30(8): 479 doi: 10.1016/j.tem.2019.05.008
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Esther Forkosh, Yaron Ilan. The heart-gut axis: new target for atherosclerosis and congestive heart failure therapy. Open Heart 2019; 6(1): e000993 doi: 10.1136/openhrt-2018-000993
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Jan S. Suchodolski, Albert E. Jergens. Virulence Mechanisms of Bacterial Pathogens. 2016; : 823 doi: 10.1128/9781555819286.ch29
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Nicolina Scibelli, Pratishtha Singh, Kathleen Raynor. Intestinal Dysbiosis Disguised as a Rectal Fistula Treated With Autologous Fecal Microbiota Transplantation. Cureus 2021; doi: 10.7759/cureus.14115
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Anjeza Xholli, Francesca Cremonini, Isabella Perugi, Ambrogio Pietro Londero, Angelo Cagnacci. Gut Microbiota and Endometriosis: Exploring the Relationship and Therapeutic Implications. Pharmaceuticals 2023; 16(12): 1696 doi: 10.3390/ph16121696
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Peter S. Hsu, Dianne E. Campbell. A bug's view of allergic airways disease. Paediatric Respiratory Reviews 2016; 19: 69 doi: 10.1016/j.prrv.2016.02.002
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Hao Zhang, Li Fu, Xinwen Leiliang, Chunrun Qu, Wantao Wu, Rong Wen, Ning Huang, Qiuguang He, Quan Cheng, Guodong Liu, Yuan Cheng. Beyond the Gut: The intratumoral microbiome's influence on tumorigenesis and treatment response. Cancer Communications 2024; 44(10): 1130 doi: 10.1002/cac2.12597
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Marta Gravito-Soares, Elisa Gravito-Soares, Francisco Portela, Manuela Ferreira, Carlos Sofia. Fecal microbiota transplantation in recurrent Clostridium difficile infection in a patient with concomitant inflammatory bowel disease. Revista Española de Enfermedades Digestivas 2017; 109 doi: 10.17235/reed.2017.4819/2016
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Jessica Flannery, Bridget Callaghan, Thomas Sharpton, Philip Fisher, Jennifer Pfeifer. Is adolescence the missing developmental link in Microbiome–Gut–Brain axis communication?. Developmental Psychobiology 2019; 61(5): 783 doi: 10.1002/dev.21821
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S. S. Spitsina, R. Sh. Tinaeva. Role of microbioma in rheumatoid arthritis and possible methods of its correction. Medical alphabet 2023; (9): 51 doi: 10.33667/2078-5631-2023-9-51-56
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Siyu Dong, Mei Sun, Chuan He, Hong Cheng. Brain-gut-microbiota axis in Parkinson’s disease: A historical review and future perspective. Brain Research Bulletin 2022; 183: 84 doi: 10.1016/j.brainresbull.2022.02.015
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Xuewu Zhang, Silan Gu, Liangshun You, Yu Xu, De Zhou, Yunbo Chen, Ren Yan, Huiyong Jiang, Yating Li, Longxian Lv, Wenbin Qian. Gut Microbiome and Metabolome Were Altered and Strongly Associated With Platelet Count in Adult Patients With Primary Immune Thrombocytopenia. Frontiers in Microbiology 2020; 11 doi: 10.3389/fmicb.2020.01550
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Saumya Jayakumar, Rohit Loomba. Review article: emerging role of the gut microbiome in the progression of nonalcoholic fatty liver disease and potential therapeutic implications. Alimentary Pharmacology & Therapeutics 2019; 50(2): 144 doi: 10.1111/apt.15314
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Shen-Yuan Zheng, Hai-Xia Li, Rui-Chen Xu, Wen-Teng Miao, Ming-Yuan Dai, Song-Tao Ding, Han-Deng Liu. Potential roles of gut microbiota and microbial metabolites in Parkinson’s disease. Ageing Research Reviews 2021; 69: 101347 doi: 10.1016/j.arr.2021.101347
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Zhao-Hua Shen, Chang-Xin Zhu, Yong-Sheng Quan, Zhen-Yu Yang, Shuai Wu, Wei-Wei Luo, Bei Tan, Xiao-Yan Wang. Relationship between intestinal microbiota and ulcerative colitis: Mechanisms and clinical application of probiotics and fecal microbiota transplantation. World Journal of Gastroenterology 2018; 24(1): 5-14 doi: 10.3748/wjg.v24.i1.5
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Seraj Makkawi, Carlos Camara-Lemarroy, Luanne Metz. Fecal microbiota transplantation associated with 10 years of stability in a patient with SPMS. Neurology Neuroimmunology & Neuroinflammation 2018; 5(4) doi: 10.1212/NXI.0000000000000459
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Meghan M. Baske, Kiara C. Timmerman, Lucas G. Garmo, Megan N. Freitas, Katherine A. McCollum, Tom Y. Ren. Fecal microbiota transplant on Escherichia-Shigella gut composition and its potential role in the treatment of generalized anxiety disorder: A systematic review. Journal of Affective Disorders 2024; 354: 309 doi: 10.1016/j.jad.2024.03.088
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Adela Dănău, Laura Dumitrescu, Antonia Lefter, Delia Tulbă, Bogdan Ovidiu Popescu. Small Intestinal Bacterial Overgrowth as Potential Therapeutic Target in Parkinson’s Disease. International Journal of Molecular Sciences 2021; 22(21): 11663 doi: 10.3390/ijms222111663
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