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Msphere|October 20, 2025
Cultured bacteria isolated from primary sclerosing cholangitis patient bile induce inflammation and cell deathChelsea E Powell, Megan D McCurry, Silvia Fernanda Quevedo, et al.Nature Microbiology|August 18, 2022
A biosynthetic pathway for the selective sulfonation of steroidal metabolites by human gut bacteriaLina Yao, Gabriel D D'Agostino, Jinseok Park, et al.Nature Chemical Biology|February 12, 2020
Development of a covalent inhibitor of gut bacterial bile salt hydrolasesArijit A Adhikari, Tom C M Seegar, Scott B Ficarro, et al.Gut Microbes|January 2, 2026
Bile salt hydrolase activity as a rational target for MASLD therapyElizabeth V Jones, Yongtao Wang, Wenchao Wei, et al.Cell Host & Microbe|August 20, 2021
A bacterial bile acid metabolite modulates T<sub>reg</sub> activity through the nuclear hormone receptor NR4A1Wei Li, Saiyu Hang, Yuan Fang, et al.Cell Host & Microbe|January 12, 2021
A microbial metabolite remodels the gut-liver axis following bariatric surgerySnehal N Chaudhari, James N Luo, David A Harris, et al.Cell|May 25, 2024
Gut bacteria convert glucocorticoids into progestins in the presence of hydrogen gasMegan D McCurry, Gabriel D D'Agostino, Jasmine T Walsh, et al.Nature|December 17, 2013
Diet rapidly and reproducibly alters the human gut microbiomeLawrence A David, Corinne F Maurice, Rachel N Carmody, et al.Nature|November 29, 2019
Bile acid metabolites control T<sub>H</sub>17 and T<sub>reg</sub> cell differentiationSaiyu Hang, Donggi Paik, Lina Yao, et al.Nature|February 26, 2020
Author Correction: Bile acid metabolites control T<sub>H</sub>17 and T<sub>reg</sub> cell differentiationSaiyu Hang, Donggi Paik, Lina Yao, et al.Pageof 4