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For: Monte MJ, Marin JJ, Antelo A, Vazquez-Tato J. Bile acids: Chemistry, physiology, and pathophysiology. World J Gastroenterol 2009; 15(7): 804-816 [PMID: 19230041 DOI: 10.3748/wjg.15.804]
URL: https://www.wjgnet.com/1007-9327/full/v15/i7/804.htm
Number Citing Articles
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Eskandar Moghimipour, Abdulghani Ameri, Somayeh Handali. Absorption-Enhancing Effects of Bile Salts. Molecules 2015; 20(8) doi: 10.3390/molecules200814451
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Carlos J. Garcia, Vit Kosek, David Beltrán, Francisco A. Tomás-Barberán, Jana Hajslova. Production of New Microbially Conjugated Bile Acids by Human Gut Microbiota. Biomolecules 2022; 12(5) doi: 10.3390/biom12050687
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Vasiliy Ivanovich Reshetnyak. Concept of the pathogenesis and treatment of cholelithiasis. World Journal of Hepatology 2012; 4(2): 18-34 doi: 10.4254/wjh.v4.i2.18
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Mathieu Vinken, Michaël Maes, André G. Oliveira, Bruno Cogliati, Pedro E. Marques, Gustavo B. Menezes, Maria Lúcia Zaidan Dagli, Tamara Vanhaecke, Vera Rogiers. Primary hepatocytes and their cultures in liver apoptosis research. Archives of Toxicology 2014; 88(2) doi: 10.1007/s00204-013-1123-4
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Masoumeh Naserkheil, Zeinab Manzari, Chang Gwon Dang, Seung Soo Lee, Mi Na Park. Exploring and Identifying Candidate Genes and Genomic Regions Related to Economically Important Traits in Hanwoo Cattle. Current Issues in Molecular Biology 2022; 44(12) doi: 10.3390/cimb44120414
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Mohamed Magdy Senna, Nesma A. Shiha, Hala F. Zaki, Laila A. A. Ramadan, Aya M. Mustafa. Metabolic and neuroimmune control of rheumatoid arthritis: therapeutic implications of FXR and α7-nAChR axes. Inflammopharmacology 2026; 34(6) doi: 10.1007/s10787-026-02237-y
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J. Keller. Encyclopedia of Biological Chemistry III. 2013;  doi: 10.1016/B978-0-12-819460-7.00569-7
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Alvaro G. Temprano, Marta R. Romero, Ahmed Ghallab, Lucia Llera, Rocio I.R. Macias, Hans M. van Eijk, Maria Rullán, Jesús Urman, Ümran Ay, Martin Lenicek, Jan G. Hengstler, Ulf P. Neumann, Carmen Berasain, Matias A. Avila, Steven W.M. Olde Damink, Maria J. Monte, Jose J.G. Marin, Frank G. Schaap. Gut-to-bile transfer of microbially amidated minor bile acids in patients with hepatopancreatobiliary disorders. Hepatology 2026; 83(5) doi: 10.1097/HEP.0000000000001441
9
Yuhang Liu, Yong Wang, Haodong Teng, Wenyang Nie, Xinyu Qiao, Yingying Shen, Zhen Wang, Xiaodong Yao. From gut microbiota metabolism to microvascular injury: Exploring the role and mechanisms of gut microbiota in obesity-induced coronary microcirculation dysfunction. Virulence 2026; 17(1) doi: 10.1080/21505594.2026.2670787
10
Kelu Lei, Minghao Yuan, Tao Zhou, Qiang Ye, Bin Zeng, Qiang Zhou, Ailing Wei, Li Guo. Research progress in the application of bile acid-drug conjugates: A “trojan horse” strategy. Steroids 2021; 173 doi: 10.1016/j.steroids.2021.108879
11
Yongfeng Song, Melanie Tran, Li Wang, Dong-Ju Shin, Jianguo Wu. MiR-200c-3p targets SESN1 and represses the IL-6/AKT loop to prevent cholangiocyte activation and cholestatic liver fibrosis. Laboratory Investigation 2022; 102(5) doi: 10.1038/s41374-021-00710-6
12
Manuela. R. Martinefski, Silvia Scioscia, Mario D. Contin, Paula Samassa, Silvia E. Lucangioli, Valeria P. Tripodi. A simple microHPLC-UV method for the simultaneous determination of retinol and α-tocopherol in human plasma. Application to intrahepatic cholestasis of pregnancy. Anal. Methods 2014; 6(10) doi: 10.1039/C4AY00058G
13
Lena Dicks, Katharina Schuh-von Graevenitz, Cornelia Prehn, Hassan Sadri, Morteza H. Ghaffari, Susanne Häussler. Bile acid profiles and messenger RNA expression of bile acid-related genes in the liver of dairy cows with high versus normal body condition. Journal of Dairy Science 2024; 107(10) doi: 10.3168/jds.2024-24844
14
N Egan, Ä Bartels, AS Khashan, DI Broadhurst, C Joyce, J O’Mullane, K O’Donoghue. Reference standard for serum bile acids in pregnancy. BJOG: An International Journal of Obstetrics & Gynaecology 2012; 119(4) doi: 10.1111/j.1471-0528.2011.03245.x
15
Thomas H. Herdt. Cunningham's Textbook of Veterinary Physiology. 2020;  doi: 10.1016/B978-0-323-55227-1.00029-6
16
Yuan Yuan, Hisao Naito, Tamie Nakajima. Cholesterol - Good, Bad and the Heart. 2018;  doi: 10.5772/intechopen.76199
17
Lingling Mao, Shuhong Fang, Meirong Zhao, Weiping Liu, Hangbiao Jin. Effects of Bisphenol A and Bisphenol S Exposure at Low Doses on the Metabolome of Adolescent Male Sprague–Dawley Rats. Chemical Research in Toxicology 2021; 34(6) doi: 10.1021/acs.chemrestox.1c00018
18
Stephanie Phan, Stefan Salentinig, Elliot Gilbert, Tamim A. Darwish, Adrian Hawley, Reece Nixon-Luke, Gary Bryant, Ben J. Boyd. Disposition and crystallization of saturated fatty acid in mixed micelles of relevance to lipid digestion. Journal of Colloid and Interface Science 2015; 449 doi: 10.1016/j.jcis.2014.11.026
19
Marta R. Romero, Maria J. Monte, Jose J.G. Marin. Pathophysiological and pharmacological implications of elucidating the molecular bases of the interaction between HBV and the bile acid transporter NTCP. Annals of Hepatology 2015; 14(1) doi: 10.1016/S1665-2681(19)30814-2
20
Claudia D. Fuchs, Michael Trauner. Role of bile acids and their receptors in gastrointestinal and hepatic pathophysiology. Nature Reviews Gastroenterology & Hepatology 2022; 19(7) doi: 10.1038/s41575-021-00566-7
21
Antonín Pařízek, Martin Hill, Michaela Dušková, Libor Vítek, Marta Velíková, Radmila Kancheva, Patrik Šimják, Michal Koucký, Zuzana Kokrdová, Karolína Adamcová, Andrej Černý, Zdeněk Hájek, Luboslav Stárka, Pavel Strnad. A Comprehensive Evaluation of Steroid Metabolism in Women with Intrahepatic Cholestasis of Pregnancy. PLOS ONE 2016; 11(8) doi: 10.1371/journal.pone.0159203
22
Chiung-Mei Chen, Mei-Ling Cheng, Tsai-Wei Liu, Chun-Wei Chang, Long-Sun Ro, Yen-Shi Lo, Hung-Chou Kuo, Ming-Feng Liao, Hong-Shiu Chang, Yih-Ru Wu, Chun-Che Chu, Kuo-Hsuan Chang. Alteration of bile acid profile in patients with neuromyelitis optica spectrum disorders and multiple sclerosis. Multiple Sclerosis and Related Disorders 2025; 103 doi: 10.1016/j.msard.2025.106703
23
H. Panwar, N. Rokana, S. V. Aparna, J. Kaur, A. Singh, J. Singh, K.S. Singh, V. Chaudhary, A.K. Puniya. Gastrointestinal stress as innate defence against microbial attack. Journal of Applied Microbiology 2021; 130(4) doi: 10.1111/jam.14836
24
Wei Jia, Guoxiang Xie, Weiping Jia. Bile acid–microbiota crosstalk in gastrointestinal inflammation and carcinogenesis. Nature Reviews Gastroenterology & Hepatology 2018; 15(2) doi: 10.1038/nrgastro.2017.119
25
Tadeja Režen, Damjana Rozman, Tünde Kovács, Patrik Kovács, Adrienn Sipos, Péter Bai, Edit Mikó. The role of bile acids in carcinogenesis. Cellular and Molecular Life Sciences 2022; 79(5) doi: 10.1007/s00018-022-04278-2
26
Marianne C. van Schie, Sjaam Jainandunsing, Jeanine E. Roeters van Lennep. Monogenetic disorders of the cholesterol metabolism and premature cardiovascular disease. European Journal of Pharmacology 2017; 816 doi: 10.1016/j.ejphar.2017.09.046
27
Priyanka Prakash, Abdallah Sayyed-Ahmad, Yong Zhou, David E. Volk, David G. Gorenstein, Elizabeth Dial, Lenard M. Lichtenberger, Alemayehu A. Gorfe. Aggregation behavior of ibuprofen, cholic acid and dodecylphosphocholine micelles. Biochimica et Biophysica Acta (BBA) - Biomembranes 2012; 1818(12) doi: 10.1016/j.bbamem.2012.07.029
28
Thomas F. Bina, Dillon E. Kunkle, X. Renee Bina, Steven J. Mullett, Stacy G. Wendell, James E. Bina, Manuela Raffatellu. Bile Salts Promote ToxR Regulon Activation during Growth under Virulence-Inducing Conditions. Infection and Immunity 2021; 89(12) doi: 10.1128/IAI.00441-21
29
Verica Aleksić Sabo, Dušan Škorić, Suzana Jovanović-Šanta, Isidora Nikolić, Csanádi János, Petar Knežević. Synergistic activity of bile salts and their derivatives in combination with conventional antimicrobial agents against Acinetobacter baumannii. Journal of Ethnopharmacology 2021; 264 doi: 10.1016/j.jep.2020.113266
30
Xinran Gao, Jingting Jiang. Exploring the regulatory mechanism of intestinal flora based on PD-1 receptor/ligand targeted cancer immunotherapy. Frontiers in Immunology 2024; 15 doi: 10.3389/fimmu.2024.1359029
31
Shauna L. Anderson, David Rovnyak, Timothy G. Strein. Direct Measurement of the Thermodynamics of Chiral Recognition in Bile Salt Micelles. Chirality 2016; 28(4) doi: 10.1002/chir.22580
32
Věra Dosedělová, Petra Itterheimová, Petr Kubáň. Analysis of bile acids in human biological samples by microcolumn separation techniques: A review. ELECTROPHORESIS 2021; 42(1-2) doi: 10.1002/elps.202000139
33
Benedetto Natalini, Roccaldo Sardella, Antimo Gioiello, Federica Ianni, Alessandro Di Michele, Maura Marinozzi. Determination of bile salt critical micellization concentration on the road to drug discovery. Journal of Pharmaceutical and Biomedical Analysis 2014; 87 doi: 10.1016/j.jpba.2013.06.029
34
Yulia Shulpekova, Maria Zharkova, Pyotr Tkachenko, Igor Tikhonov, Alexander Stepanov, Alexandra Synitsyna, Alexander Izotov, Tatyana Butkova, Nadezhda Shulpekova, Natalia Lapina, Vladimir Nechaev, Svetlana Kardasheva, Alexey Okhlobystin, Vladimir Ivashkin. The Role of Bile Acids in the Human Body and in the Development of Diseases. Molecules 2022; 27(11) doi: 10.3390/molecules27113401
35
Jawaher Abdullah Alamoudi, Wenkuan Li, Nagsen Gautam, Marco Olivera, Jane Meza, Sandeep Mukherjee, Yazen Alnouti. Bile acid indices as biomarkers for liver diseases I: Diagnostic markers. World Journal of Hepatology 2021; 13(4): 433-455 doi: 10.4254/wjh.v13.i4.433
36
Zelimkhan Berikkhanov, Zakhar Akulov, Mihail Emcev, Evgeniy Tarabrin, Alexey Shestakov, Aleksey Kotelnikov, Andrey Nikolaev, Vadim Razumovsky, Milena Ivanova, Mehrshad Ebrahimnezhad, Sara Nourmahal, Sergey Muraviev. Bile Biochemistry as a Therapeutic Target in Biliary Surgery: Disease-Specific Evidence and Clinical Limits. Metabolites 2026; 16(10) doi: 10.3390/metabo16100721
37
Yao Shi, Yang Gao, Michael Van Parys, Dennis Miller, Dennis Milanowski, Brian Dean, Xiaorong Liang. Definitive Profiling of Plasma Bile Acids as Potential Biomarkers for Human Liver Diseases Using UPLC–HRMS. Bioanalysis 2018; 10(12) doi: 10.4155/bio-2018-0018
38
Richard J. Weaver, Eric A. Blomme, Amy E. Chadwick, Ian M. Copple, Helga H. J. Gerets, Christopher E. Goldring, Andre Guillouzo, Philip G. Hewitt, Magnus Ingelman-Sundberg, Klaus Gjervig Jensen, Satu Juhila, Ursula Klingmüller, Gilles Labbe, Michael J. Liguori, Cerys A. Lovatt, Paul Morgan, Dean J. Naisbitt, Raymond H. H. Pieters, Jan Snoeys, Bob van de Water, Dominic P. Williams, B. Kevin Park. Managing the challenge of drug-induced liver injury: a roadmap for the development and deployment of preclinical predictive models. Nature Reviews Drug Discovery 2020; 19(2) doi: 10.1038/s41573-019-0048-x
39
Gopal Sanjay, Ishfaq Nazir Mir, Nathan Felix, Amit Ranjan, Chinakannu Sathish Kumar. Dietary Lipid Levels and Bile Acid Supplementation: Effects on Growth, Metabolism and Fatty Acid Composition in Asian Seabass (Lates calcarifer). Proceedings of the Zoological Society 2025; 78(4) doi: 10.1007/s12595-025-00600-5
40
J Trottier, P Caron, R J Straka, O Barbier. Profile of Serum Bile Acids in Noncholestatic Volunteers: Gender-Related Differences in Response to Fenofibrate. Clinical Pharmacology & Therapeutics 2011; 90(2) doi: 10.1038/clpt.2011.124
41
Jitendriya Swain. Molecular level investigation on the interaction of pluronic F127 and human intestinal bile salts using excited state prototropism of 1-naphthol. Journal of Photochemistry and Photobiology B: Biology 2016; 160 doi: 10.1016/j.jphotobiol.2016.03.039
42
María Juárez-Fernández, David Porras, Petar Petrov, Sara Román-Sagüillo, María Victoria García-Mediavilla, Polina Soluyanova, Susana Martínez-Flórez, Javier González-Gallego, Esther Nistal, Ramiro Jover, Sonia Sánchez-Campos. The Synbiotic Combination of Akkermansia muciniphila and Quercetin Ameliorates Early Obesity and NAFLD through Gut Microbiota Reshaping and Bile Acid Metabolism Modulation. Antioxidants 2021; 10(12) doi: 10.3390/antiox10122001
43
Liya Anto, Christopher N. Blesso. Interplay between diet, the gut microbiome, and atherosclerosis: Role of dysbiosis and microbial metabolites on inflammation and disordered lipid metabolism. The Journal of Nutritional Biochemistry 2022; 105 doi: 10.1016/j.jnutbio.2022.108991
44
Jingyan Tian, Silvia Huang, Siming Sun, Lili Ding, Eryun Zhang, Yanjun Liu, Wendong Huang. Bile acid signaling and bariatric surgery. Liver Research 2017; 1(4) doi: 10.1016/j.livres.2017.12.007
45
Sebahattin KARABULUT, Ahmet Şevki TAŞKIRAN. Ursodeoksikolik Asit’in Farelerde Pentilentetrazol ile Oluşturulan Akut Epileptik Nöbetler Üzerine Etkisinin Araştırılması. Türk Doğa ve Fen Dergisi 2020; 9(2) doi: 10.46810/tdfd.761990
46
Sheng-hui Wang, Wei-wei Wang, Hai-jun Zhang, Jing Wang, Yu Chen, Shu-geng Wu, Guang-hai Qi. Conjugated linoleic acid regulates lipid metabolism through the expression of selected hepatic genes in laying hens. Poultry Science 2019; 98(10) doi: 10.3382/ps/pez161
47
Javier Vaquero, Maria J. Monte, Mercedes Dominguez, Jordi Muntané, Jose J.G. Marin. Differential activation of the human farnesoid X receptor depends on the pattern of expressed isoforms and the bile acid pool composition. Biochemical Pharmacology 2013; 86(7) doi: 10.1016/j.bcp.2013.07.022
48
Che-Jung Chang, Dana Boyd Barr, P.Barry Ryan, Parinya Panuwet, Melissa M. Smarr, Ken Liu, Kurunthachalam Kannan, Volha Yakimavets, Youran Tan, ViLinh Ly, Carmen J. Marsit, Dean P. Jones, Elizabeth J. Corwin, Anne L. Dunlop, Donghai Liang. Per- and polyfluoroalkyl substance (PFAS) exposure, maternal metabolomic perturbation, and fetal growth in African American women: A meet-in-the-middle approach. Environment International 2022; 158 doi: 10.1016/j.envint.2021.106964
49
Sascha Grobe, Agata Wszołek, Henrike Brundiek, Melinda Fekete, Uwe T. Bornscheuer. Highly selective bile acid hydroxylation by the multifunctional bacterial P450 monooxygenase CYP107D1 (OleP). Biotechnology Letters 2020; 42(5) doi: 10.1007/s10529-020-02813-4
50
Jolanta Bugajska, Joanna Berska, Artur Pasternak, Krystyna Sztefko. Biliary Amino Acids and Telocytes in Gallstone Disease. Metabolites 2023; 13(6) doi: 10.3390/metabo13060753
51
Haixin Yin, Weijie Chen, Liangbo Dong, Shengnan Zhou, Fengying Gong, Xiaodong He. Biliary diversion increases resting energy expenditure leading to decreased blood glucose level in mice with type 2 diabetes. Journal of Diabetes Investigation 2021; 12(6) doi: 10.1111/jdi.13499
52
C. Redondo-Gómez, F. Orozco, P.-L. Michael Noeske, V. Soto-Tellini, Y.R. Corrales-Ureña, J. Vega-Baudrit. Cholic acid covalently bound to multi-walled carbon nanotubes: Improvements on dispersion stability. Materials Chemistry and Physics 2017; 200 doi: 10.1016/j.matchemphys.2017.07.089
53
Lydie Humbert, Dominique Rainteau, Noshine Tuvignon, Claude Wolf, Philippe Seksik, René Laugier, Frédéric Carrière. Postprandial bile acid levels in intestine and plasma reveal altered biliary circulation in chronic pancreatitis patients. Journal of Lipid Research 2018; 59(11) doi: 10.1194/jlr.M084830
54
Věra Dosedělová, Markéta Laštovičková, Juan F. Ayala-Cabrera, Jiří Dolina, Štefan Konečný, Oliver J. Schmitz, Petr Kubáň. Quantification and identification of bile acids in saliva by liquid chromatography-mass spectrometry: Possible non-invasive diagnostics of Barrett's esophagus?. Journal of Chromatography A 2022; 1676 doi: 10.1016/j.chroma.2022.463287
55
Tea Mihelj, Vlasta Tomašić, Jasminka Popović, Željko Skoko. Thermal behavior of novel catanionic cholates. Journal of Thermal Analysis and Calorimetry 2017; 129(2) doi: 10.1007/s10973-017-6193-8
56
Nebojša Pavlović, Svetlana Goločorbin-Kon, Maja Ðanić, Bojan Stanimirov, Hani Al-Salami, Karmen Stankov, Momir Mikov. Bile Acids and Their Derivatives as Potential Modifiers of Drug Release and Pharmacokinetic Profiles. Frontiers in Pharmacology 2018; 9 doi: 10.3389/fphar.2018.01283
57
Cláudia Serafim, Inês Ferreira, Patrícia Rijo, Lídia Pinheiro, Célia Faustino, António Calado, Luis Garcia-Rio. Lipoamino acid-based micelles as promising delivery vehicles for monomeric amphotericin B. International Journal of Pharmaceutics 2016; 497(1-2) doi: 10.1016/j.ijpharm.2015.11.034
58
Wen Li, Yuxing Luo, Shoujia Zhu, Mengyuan Wang, Xuli Zhao, Zhonghua Ning. Integrated metabolome and transcriptome analysis reveals key genes and pathways associated with egg yolk percentage in chicken. Poultry Science 2025; 104(3) doi: 10.1016/j.psj.2025.104815
59
Valentina Bilbao-Malavé, Jorge González-Zamora, Miriam de la Puente, Sergio Recalde, Patricia Fernandez-Robredo, María Hernandez, Alfredo Garcia Layana, Manuel Saenz de Viteri. Mitochondrial Dysfunction and Endoplasmic Reticulum Stress in Age Related Macular Degeneration, Role in Pathophysiology, and Possible New Therapeutic Strategies. Antioxidants 2021; 10(8) doi: 10.3390/antiox10081170
60
Rui Xue, Lianyong Su, Shengyi Lai, Yanyan Wang, Derrick Zhao, Jiangao Fan, Weidong Chen, Phillip B. Hylemon, Huiping Zhou. Bile Acid Receptors and the Gut–Liver Axis in Nonalcoholic Fatty Liver Disease. Cells 2021; 10(11) doi: 10.3390/cells10112806
61
Jonathan Barr, Mercedes Vázquez-Chantada, Cristina Alonso, Miriam Pérez-Cormenzana, Rebeca Mayo, Asier Galán, Juan Caballería, Antonio Martín-Duce, Albert Tran, Conrad Wagner, Zigmund Luka, Shelly C. Lu, Azucena Castro, Yannick Le Marchand-Brustel, M. Luz Martínez-Chantar, Nicolas Veyrie, Karine Clément, Joan Tordjman, Philippe Gual, José M. Mato. Liquid Chromatography−Mass Spectrometry-Based Parallel Metabolic Profiling of Human and Mouse Model Serum Reveals Putative Biomarkers Associated with the Progression of Nonalcoholic Fatty Liver Disease. Journal of Proteome Research 2010; 9(9) doi: 10.1021/pr1002593
62
Qingyan Yin, Xingwei Jiang, Huifeng Liu, Peiyue Wang, Xiaodong Su, Jun Zhang, Xinjian Lei, Junhu Yao. Enhancing milk quality and modulating plasma lipid metabolism of lactating dairy goats: The impact of bile acid supplementation. Animal Nutrition 2025; 22 doi: 10.1016/j.aninu.2024.12.008
63
Alice Win, Amanda Delgado, Ravirajsinh N. Jadeja, Pamela M. Martin, Manuela Bartoli, Menaka C. Thounaojam. Pharmacological and Metabolic Significance of Bile Acids in Retinal Diseases. Biomolecules 2021; 11(2) doi: 10.3390/biom11020292
64
Phung Ngan Le, Chan Khon Huynh, Ngoc Quyen Tran. Advances in thermosensitive polymer-grafted platforms for biomedical applications. Materials Science and Engineering: C 2018; 92 doi: 10.1016/j.msec.2018.02.006
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Jenna M. Lane, Tara P. Brosschot, Dominique M. Gatti, Courtney M. Gauthier, Katherine M. Lawrence, Victoria Pluzhnikova, Lisa A. Reynolds. Chronic small intestinal helminth infection perturbs bile acid homeostasis and disrupts bile acid signaling in the murine small intestine. Frontiers in Parasitology 2023; 2 doi: 10.3389/fpara.2023.1214136
67
Fanzhi Kong, Xiaoyu Niu, Mingde Liu, Qiuhong Wang. Bile acids LCA and CDCA inhibited porcine deltacoronavirus replication in vitro. Veterinary Microbiology 2021; 257 doi: 10.1016/j.vetmic.2021.109097
68
Armin Mooranian, Melissa Jones, Corina Mihaela Ionescu, Daniel Walker, Susbin Raj Wagle, Bozica Kovacevic, Jacqueline Chester, Thomas Foster, Edan Johnston, Momir Mikov, Hani Al-Salami. Advancements in Assessments of Bio-Tissue Engineering and Viable Cell Delivery Matrices Using Bile Acid-Based Pharmacological Biotechnologies. Nanomaterials 2021; 11(7) doi: 10.3390/nano11071861
69
Wei Yang, Si-Cong Si, Wei-Hua Wang, Jing Li, Yi-Xin Ma, Huan Zhao, Jia Liu. Gut dysbiosis in primary sarcopenia: potential mechanisms and implications for novel microbiome-based therapeutic strategies. Frontiers in Microbiology 2025; 16 doi: 10.3389/fmicb.2025.1526764
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Vedagopuram Sreekanth, Nihal Medatwal, Sanjay Pal, Sandeep Kumar, Sagar Sengupta, Avinash Bajaj. Molecular Self-Assembly of Bile Acid-Phospholipids Controls the Delivery of Doxorubicin and Mice Survivability. Molecular Pharmaceutics 2017; 14(8) doi: 10.1021/acs.molpharmaceut.7b00105
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Zhiwei Chen, Lili Yang, Yang Liu, Ping Huang, Haiyan Song, Peiyong Zheng. The potential function and clinical application of FGF21 in metabolic diseases. Frontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.1089214
74
Francisco Meijide, María Vázquez-Tato, Julio Seijas, Santiago de Frutos, Juan Trillo Novo, Victor Soto, José Vázquez Tato. Crystal Structure of a Cationic Bile Salt Derivative ([3β,5β,7α,12α]-3-(2-naphthyloylamino)-7,12-dihydroxycholan-24-triethylammonium iodide). Crystals 2019; 9(3) doi: 10.3390/cryst9030135
75
Aida Jover, Francisco Fraga, Francisco Meijide, José Vázquez Tato, Jacopo Cautela, Alessandra Del Giudice, Maria Chiara di Gregorio. Revealing the complex self-assembly behaviour of sodium deoxycholate in aqueous solution. Journal of Colloid and Interface Science 2021; 604 doi: 10.1016/j.jcis.2021.06.140
76
Ji Young Chang, Hye-Kyung Jung, Chang Mo Moon, Seong-Eun Kim, Ki-Nam Shim, Sung-Ae Jung, Seog Ki Min. Development of functional gastrointestinal disorder symptoms following laparoscopic cholecystectomy: a prospective cohort study. Frontiers in Medicine 2023; 10 doi: 10.3389/fmed.2023.1248465
77
Mercedes Alvarez Alcalde, Aida Jover, Francisco Meijide, Luciano Galantini, Nicolae Viorel Pavel, Alvaro Antelo, José Vázquez Tato. Aggregation Behavior of Tetracarboxylic Surfactants Derived from Cholic and Deoxycholic Acids and Ethylenediaminetetraacetic Acid. Langmuir 2009; 25(16) doi: 10.1021/la9007813
78
Tiantian Lin, Sean O'Keefe, Susan Duncan, Cristina Fernández-Fraguas. Retention of primary bile salts by dry beans (Phaseolus vulgaris L.) during in vitro digestion: Role of bean components and effect of food processing. Food Research International 2020; 137 doi: 10.1016/j.foodres.2020.109337
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Nishanthi Ezhumalai, Nagappan Rajendiran. Synthesis of differently charged Amphiphiles stabilized gold nanoparticles and their colorimetric detection of amino acids. Inorganic Chemistry Communications 2025; 182 doi: 10.1016/j.inoche.2025.115373
81
Brandy N. Roberts, Damayanti Chakravarty, J.C. Gardner, Steven C. Ricke, Janet R. Donaldson. Listeria monocytogenes Response to Anaerobic Environments. Pathogens 2020; 9(3) doi: 10.3390/pathogens9030210
82
Damayanti Chakravarty, Gyan Sahukhal, Mark Arick, Morgan L. Davis, Janet R. Donaldson. Transcriptomic Analysis of Listeria monocytogenes in Response to Bile Under Aerobic and Anaerobic Conditions. Frontiers in Microbiology 2021; 12 doi: 10.3389/fmicb.2021.754748
83
Barbara Seroka, Zenon Łotowski, Agnieszka Hryniewicka, Lucie Rárová, Rafal R. Sicinski, Aneta M. Tomkiel, Jacek W. Morzycki. Synthesis of New Cisplatin Derivatives from Bile Acids. Molecules 2020; 25(3) doi: 10.3390/molecules25030655
84
Zhong‐Jiao Lu, Ling Wang, Xiao‐Yi Sun, Jun‐Ying Li, Lan Cheng, Nan‐Nan Li, Rong Peng. The association between HSD3B7 gene variant and Parkinson's disease in ethnic Chinese. Brain and Behavior 2018; 8(4) doi: 10.1002/brb3.913
85
Lindong Mao, Biling Gao, Hao Chang, Heqing Shen. Interaction and Metabolic Pathways: Elucidating the Role of Gut Microbiota in Gestational Diabetes Mellitus Pathogenesis. Metabolites 2024; 14(1) doi: 10.3390/metabo14010043
86
Yong-li Hua, Ya-qian Jia, Xiao-song Zhang, Zi-wen Yuan, Peng Ji, Jun-jie Hu, Yan-ming Wei. Baitouweng Tang ameliorates DSS-induced ulcerative colitis through the regulation of the gut microbiota and bile acids via pathways involving FXR and TGR5. Biomedicine & Pharmacotherapy 2021; 137 doi: 10.1016/j.biopha.2021.111320
87
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