For: | Banales JM, Prieto J, Medina JF. Cholangiocyte anion exchange and biliary bicarbonate excretion. World J Gastroenterol 2006; 12(22): 3496-3511 [PMID: PMC4087566 DOI: 10.3748/wjg.v12.i22.3496] |
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URL: | https://www.wjgnet.com/1007-9327/full/v12/i22/3496.htm |
Number | Citing Articles |
1 |
Rebecca Jeyaraj, Kirsten McKay Bounford, Nicola Ruth, Carla Lloyd, Fiona MacDonald, Christian J. Hendriksz, Ulrich Baumann, Paul Gissen, Deirdre Kelly. The Genetics of Inherited Cholestatic Disorders in Neonates and Infants: Evolving Challenges. Genes 2021; 12(11): 1837 doi: 10.3390/genes12111837
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2 |
Luiz Fernando Norcia, Erika Mayumi Watanabe, Pedro Tadao Hamamoto Filho, Claudia Nishida Hasimoto, Leonardo Pelafsky, Walmar Kerche de Oliveira, Ligia Yukie Sassaki. Polycystic Liver Disease: Pathophysiology, Diagnosis and Treatment. Hepatic Medicine: Evidence and Research 2022; : 135 doi: 10.2147/HMER.S377530
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3 |
Jesús M. Banales, Tatyana V. Masyuk, Pamela S. Bogert, Bing Q. Huang, Sergio A. Gradilone, Seung-Ok Lee, Angela J. Stroope, Anatoliy I. Masyuk, Juan F. Medina, Nicholas F. LaRusso. Hepatic Cystogenesis Is Associated with Abnormal Expression and Location of Ion Transporters and Water Channels in an Animal Model of Autosomal Recessive Polycystic Kidney Disease. The American Journal of Pathology 2008; 173(6): 1637 doi: 10.2353/ajpath.2008.080125
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4 |
Michael H. Trauner. Molecular Pathology of Liver Diseases. Molecular Pathology Library 2011; 5: 475 doi: 10.1007/978-1-4419-7107-4_32
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5 |
Maria Eugenia Sabbatini, Fred Gorelick, Shannon Glaser. Adenylyl cyclases in the digestive system. Cellular Signalling 2014; 26(6): 1173 doi: 10.1016/j.cellsig.2014.01.033
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6 |
Axel R. Concepcion, Stefan Feske. Regulation of epithelial ion transport in exocrine glands by store-operated Ca2+ entry. Cell Calcium 2017; 63: 53 doi: 10.1016/j.ceca.2016.12.004
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7 |
Jose J.G. Marin, Luis Bujanda, Jesus M. Banales. MicroRNAs and cholestatic liver diseases. Current Opinion in Gastroenterology 2014; 30(3): 303 doi: 10.1097/MOG.0000000000000051
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8 |
Alexander G. Miethke, Wujuan Zhang, Julia Simmons, Amy E. Taylor, Tiffany Shi, Shiva Kumar Shanmukhappa, Rebekah Karns, Shana White, Anil G. Jegga, Celine S. Lages, Stephenson Nkinin, Bradley T. Keller, Kenneth D.R. Setchell. Pharmacological inhibition of apical sodium‐dependent bile acid transporter changes bile composition and blocks progression of sclerosing cholangitis in multidrug resistance 2 knockout mice. Hepatology 2016; 63(2): 512 doi: 10.1002/hep.27973
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9 |
Ivana Novak, Jeppe Praetorius. Basic Epithelial Ion Transport Principles and Function. Physiology in Health and Disease 2020; : 461 doi: 10.1007/978-3-030-52780-8_12
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10 |
Vasiliy I Reshetnyak, Igor V Maev. Bile acid therapy for primary biliary cholangitis: Pathogenetic validation. World Journal of Experimental Medicine 2025; 15(1): 101771 doi: 10.5493/wjem.v15.i1.101771
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11 |
Dingyang Li, Xiaoju Shi, Lijing Zhao, Zuowen Liang, Shuli Xie, Guangyi Wang. Overexpression of Aquaporin 1 on cysts of patients with polycystic liver disease. Revista Española de Enfermedades Digestivas 2015; 108 doi: 10.17235/reed.2015.3960/2015
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12 |
Dilmurodjon Eshmuminov, Martin J. Schuler, Dustin Becker, Lucia Bautista Borrego, Matteo Mueller, Catherine Hagedorn, Stephanie Häusler, Julia Steiger, Mark W. Tibbitt, Philipp Dutkowski, Philipp Rudolf von Rohr, Bruno Stieger, Max Hefti, Pierre-Alain Clavien. Bile formation in long-term ex situ perfused livers. Surgery 2021; 169(4): 894 doi: 10.1016/j.surg.2020.11.042
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13 |
Marcelo G Roma, Fernando A Crocenzi, Aldo D Mottino. Dynamic localization of hepatocellular transporters in health and disease. World Journal of Gastroenterology 2008; 14(44): 6786-6801 doi: 10.3748/wjg.14.6786
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14 |
Iker Uriarte, Jesús M. Banales, Elena Sáez, Fabián Arenas, Ronald P. J. Oude Elferink, Jesús Prieto, Juan F. Medina. Bicarbonate Secretion of Mouse Cholangiocytes Involves Na+-Hco3 − Cotransport in Addition to Na+-Independent Cl−/Hco3 − Exchange. Hepatology 2010; 51(3): 891 doi: 10.1002/hep.23403
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15 |
Jorke Willemse, Gilles van Tienderen, Eline van Hengel, Ivo Schurink, Diana van der Ven, Yik Kan, Petra de Ruiter, Oskar Rosmark, Gunilla Westergren-Thorsson G, Kerstin Schneeberger, Bram van der Eerden, Henk Roest, Bart Spee, Luc van der Laan, Jeroen de Jonge, Monique Verstegen. Hydrogels derived from decellularized liver tissue support the growth and differentiation of cholangiocyte organoids. Biomaterials 2022; 284: 121473 doi: 10.1016/j.biomaterials.2022.121473
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16 |
Pamela Tietz Bogert, Nicholas F LaRusso. Cholangiocyte biology. Current Opinion in Gastroenterology 2007; 23(3): 299 doi: 10.1097/MOG.0b013e3280b079fb
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17 |
Neel Deferm, Tom De Vocht, Bing Qi, Pieter Van Brantegem, Eva Gijbels, Mathieu Vinken, Peter de Witte, Thomas Bouillon, Pieter Annaert. Current insights in the complexities underlying drug-induced cholestasis. Critical Reviews in Toxicology 2019; 49(6): 520 doi: 10.1080/10408444.2019.1635081
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18 |
Jesús M. Banales, Tatyana V. Masyuk, Sergio A. Gradilone, Anatoliy I. Masyuk, Juan F. Medina, Nicholas F. LaRusso. The cAMP effectors Epac and protein kinase a (PKA) are involved in the hepatic cystogenesis of an animal model of autosomal recessive polycystic kidney disease (ARPKD)†. Hepatology 2009; 49(1): 160 doi: 10.1002/hep.22636
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19 |
Erping Xu, Baoying Wang, Shuaifei Lu, Changjing Zhang, Leilei Zhu, Xueying Liu, Ming Bai, Yucheng Li. Tandem mass tag-based quantitative proteomic analysis of the liver reveals potential protein targets of Xiaochaihutang in CUMS model of depression. Journal of Chromatography B 2021; 1181: 122898 doi: 10.1016/j.jchromb.2021.122898
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20 |
Anatoliy I. Masyuk, Tatyana V. Masyuk, Nicholas F. LaRusso. Physiology of the Gastrointestinal Tract. 2012; : 1531 doi: 10.1016/B978-0-12-382026-6.00056-7
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21 |
Franziska Durchschein, Elisabeth Krones, Marion J. Pollheimer, Gernot Zollner, Martin Wagner, Jean‐Pierre Raufman, Peter Fickert. Genetic loss of the muscarinic M3 receptor markedly alters bile formation and cholestatic liver injury in mice. Hepatology Research 2018; 48(3) doi: 10.1111/hepr.12928
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22 |
Michael Fuchs, Arun J. Sanyal. Sepsis and Cholestasis. Clinics in Liver Disease 2008; 12(1): 151 doi: 10.1016/j.cld.2007.11.002
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23 |
Thierry Claudel, Michael Trauner. Signaling Pathways in Liver Diseases. 2010; : 317 doi: 10.1007/978-3-642-00150-5_21
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24 |
Yaron Bram, Duc-Huy T. Nguyen, Vikas Gupta, Jiwoon Park, Chanel Richardson, Vasuretha Chandar, Robert E. Schwartz. Cell and Tissue Therapy for the Treatment of Chronic Liver Disease. Annual Review of Biomedical Engineering 2021; 23(1): 517 doi: 10.1146/annurev-bioeng-112619-044026
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25 |
M. I. Aleksandrova, N. S. Kushnareva, O. V. Smirnova. Manifestation of Cystic Fibrosis Transmembrane Regulator (CFTR) in Hepatic Ductal Structures and Renal Tubules of Female Rats with Experimental Cholestasis of Pregnancy. Bulletin of Experimental Biology and Medicine 2014; 156(5): 654 doi: 10.1007/s10517-014-2418-z
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26 |
Anatoliy I. Masyuk, Tatyana V. Masyuk, Nicholas F. LaRusso. Physiology of the Gastrointestinal Tract. 2018; : 1003 doi: 10.1016/B978-0-12-809954-4.00044-X
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27 |
Teresa Brevini, Olivia C. Tysoe, Fotios Sampaziotis. Tissue engineering of the biliary tract and modelling of cholestatic disorders. Journal of Hepatology 2020; 73(4): 918 doi: 10.1016/j.jhep.2020.05.049
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28 |
Jorke Willemse, Luc J. W. van der Laan, Jeroen de Jonge, Monique M. A. Verstegen. Design by Nature: Emerging Applications of Native Liver Extracellular Matrix for Cholangiocyte Organoid-Based Regenerative Medicine. Bioengineering 2022; 9(3): 110 doi: 10.3390/bioengineering9030110
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29 |
Osamu Kido, Koji Fukushima, Yoshiyuki Ueno, Jun Inoue, Douglas M Jefferson, Tooru Shimosegawa. Compensatory role of inducible annexin A2 for impaired biliary epithelial anion-exchange activity of inflammatory cholangiopathy. Laboratory Investigation 2009; 89(12): 1374 doi: 10.1038/labinvest.2009.105
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30 |
Vasiliy Ivanovich Reshetnyak, Igor Veniaminovich Maev. Mechanism of formation and significance of antimitochondrial autoantibodies in the pathogenesis of primary biliary cholangitis. Exploration of Immunology 2024; : 624 doi: 10.37349/ei.2024.00163
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31 |
Julie Beaume, Antoine Braconnier, Thibault Dolley-Hitze, Jean-Philippe Bertocchio. Bicarbonate : de la physiologie aux applications thérapeutiques pour tout clinicien. Néphrologie & Thérapeutique 2018; 14(1): 13 doi: 10.1016/j.nephro.2017.02.014
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32 |
Martijn R. Molenaar, Louis C. Penning, J. Bernd Helms. Playing Jekyll and Hyde—The Dual Role of Lipids in Fatty Liver Disease. Cells 2020; 9(10): 2244 doi: 10.3390/cells9102244
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33 |
Vasiliy Ivanovich Reshetnyak, Igor Veniaminovich Maev. New insights into the pathogenesis of primary biliary cholangitis asymptomatic stage. World Journal of Gastroenterology 2023; 29(37): 5292-5304 doi: 10.3748/wjg.v29.i37.5292
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34 |
Anne M. Larson, Matthew Hauswald. Diseases of the Liver in Children. 2014; : 23 doi: 10.1007/978-1-4614-9005-0_2
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35 |
Ji-Won Park, Jung-Hee Kim, Sung-Eun Kim, Jang Han Jung, Myoung-Kuk Jang, Sang-Hoon Park, Myung-Seok Lee, Hyoung-Su Kim, Ki Tae Suk, Dong Joon Kim. Primary Biliary Cholangitis and Primary Sclerosing Cholangitis: Current Knowledge of Pathogenesis and Therapeutics. Biomedicines 2022; 10(6): 1288 doi: 10.3390/biomedicines10061288
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Monjur Ahmed. Functional, Diagnostic and Therapeutic Aspects of Bile. Clinical and Experimental Gastroenterology 2022; : 105 doi: 10.2147/CEG.S360563
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Mario Strazzabosco, Romina Fiorotto, Saida Melero, Shannon Glaser, Heather Francis, Carlo Spirli, Gianfranco Alpini. Diferentially expressed adenylyl cyclase isoforms mediate secretory functions in cholangiocyte subpopulation #. Hepatology 2009; 50(1): 244 doi: 10.1002/hep.22926
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38 |
Aitor Esparza-Baquer, Ibone Labiano, Luis Bujanda, María J. Perugorria, Jesús M. Banales. MicroRNAs in cholangiopathies: Potential diagnostic and therapeutic tools. Clinics and Research in Hepatology and Gastroenterology 2016; 40(1): 15 doi: 10.1016/j.clinre.2015.10.001
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39 |
Marion J. Pollheimer, Silvia Racedo, Amanda Mikels-Vigdal, Derek Marshall, Christopher Bowlus, Carolin Lackner, Tobias Madl, Tom H. Karlsen, Johannes R. Hov, Susan K. Lyman, Joanne Adamkewicz, Victoria Smith, Emmanuel Moreau, Gernot Zollner, Tor Jacob Eide, Tatjana Stojakovic, Hubert Scharnagl, Hans-Jürgen Gruber, Rudolf E. Stauber, Michael Trauner, Peter Fickert. Lysyl oxidase-like protein 2 (LOXL2) modulates barrier function in cholangiocytes in cholestasis. Journal of Hepatology 2018; 69(2): 368 doi: 10.1016/j.jhep.2018.04.009
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40 |
Paula Olaizola, Pedro M. Rodrigues, Francisco J. Caballero-Camino, Laura Izquierdo-Sanchez, Patricia Aspichueta, Luis Bujanda, Nicholas F. Larusso, Joost P. H. Drenth, Maria J. Perugorria, Jesus M. Banales. Genetics, pathobiology and therapeutic opportunities of polycystic liver disease. Nature Reviews Gastroenterology & Hepatology 2022; 19(9): 585 doi: 10.1038/s41575-022-00617-7
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41 |
A.E. Abaturov, V.L. Babуch. The role of miRNAs in the development of cholangiopathies. Part 1. CHILD`S HEALTH 2023; 18(4): 323 doi: 10.22141/2224-0551.18.4.2023.1606
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42 |
Fabián Arenas, Isabel Hervías, Elena Sáez, Saida Melero, Jesús Prieto, Albert Parés, Juan F. Medina. Promoter hypermethylation of the AE2/SLC4A2 gene in PBC. JHEP Reports 2019; 1(3): 145 doi: 10.1016/j.jhepr.2019.05.006
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43 |
Gisel S. Miszczuk, Jesus M. Banales, Andrés E. Zucchetti, Gerardo B. Pisani, Andrea C. Boaglio, Elena Saez, Juan F. Medina, Marcelo G. Roma, Fernando A. Crocenzi, Gianfranco D. Alpini. Adaptive downregulation of Cl-/HCO3- exchange activity in rat hepatocytes under experimental obstructive cholestasis. PLOS ONE 2019; 14(2): e0212215 doi: 10.1371/journal.pone.0212215
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44 |
Lauren S. Strathearn, Afanasii I. Stepanov, Joan Font-Burgada. Inflammation in Primary and Metastatic Liver Tumorigenesis–Under the Influence of Alcohol and High-Fat Diets. Nutrients 2020; 12(4): 933 doi: 10.3390/nu12040933
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45 |
Marcelo G. Roma, Ismael R. Barosso, Gisel S. Miszczuk, Fernando A. Crocenzi, Enrique J. Sánchez Pozzi. Dynamic Localization of Hepatocellular Transporters: Role in Biliary Excretion and Impairment in Cholestasis. Current Medicinal Chemistry 2019; 26(7): 1113 doi: 10.2174/0929867325666171205153204
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46 |
Sergio A. Gradilone, Anatoliy I. Masyuk, Patrick L. Splinter, Jesus M. Banales, Bing Q. Huang, Pamela S. Tietz, Tatyana V. Masyuk, Nicholas F. LaRusso. Cholangiocyte cilia express TRPV4 and detect changes in luminal tonicity inducing bicarbonate secretion. Proceedings of the National Academy of Sciences 2007; 104(48): 19138 doi: 10.1073/pnas.0705964104
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47 |
P. Onori, A. Franchitto, R. Mancinelli, G. Carpino, D. Alvaro, H. Francis, G. Alpini, E. Gaudio. Polycystic liver diseases. Digestive and Liver Disease 2010; 42(4): 261 doi: 10.1016/j.dld.2010.01.006
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48 |
A. Bertolini, I.P. van de Peppel, R. Havinga, J.W. Jonker, H.J. Verkade. The Apical Sodium-Dependent Bile Acid Transporter in Cholangiocytes Is Not Required for the Generation of Bile Flow in Mice. Gastro Hep Advances 2022; 1(3): 375 doi: 10.1016/j.gastha.2022.02.003
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49 |
Suparerk Laohapitakworn, Jirawan Thongbunchoo, La-iad Nakkrasae, Nateetip Krishnamra, Narattaphol Charoenphandhu. Parathyroid hormone (PTH) rapidly enhances CFTR-mediated HCO3− secretion in intestinal epithelium-like Caco-2 monolayer: a novel ion regulatory action of PTH. American Journal of Physiology-Cell Physiology 2011; 301(1): C137 doi: 10.1152/ajpcell.00001.2011
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50 |
James H. Tabibian, Anatoliy I. Masyuk, Tetyana V. Masyuk, Steven P. O'Hara, Nicholas F. LaRusso. Comprehensive Physiology. 2013; : 541 doi: 10.1002/cphy.c120019
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51 |
Xiping Li, Yue Zu, Guodong Li, Dong Xiang, Chengliang Zhang, Dong Liu. Molecular mechanisms of transporter regulation and their impairment in intrahepatic cholestasis. Acta Materia Medica 2022; 1(3) doi: 10.15212/AMM-2022-0029
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52 |
Martina Lukasova, Katharina Weinberger, Ralf Weiskirchen, Wolfgang Stremmel. Onion-skin type of periductular sclerosis in mice with genetic deletion of biliary kindlin-2 as tight junction stabilizer: a pilot experiment indicating a primary sclerosing cholangitis (PSC) phenotype. Metabolism and Target Organ Damage 2024; doi: 10.20517/mtod.2024.46
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53 |
Jesús Prieto, Jesus M. Banales, Juan F. Medina. Primary biliary cholangitis: pathogenic mechanisms. Current Opinion in Gastroenterology 2021; 37(2): 91 doi: 10.1097/MOG.0000000000000703
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54 |
Alejandro Esteller. Physiology of bile secretion. World Journal of Gastroenterology 2008; 14(37): 5641-5649 doi: 10.3748/wjg.14.5641
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55 |
Thierry Claudel, Michael Trauner. Signaling Pathways in Liver Diseases. 2015; : 385 doi: 10.1002/9781118663387.ch28
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56 |
Wenkang Gao, Zhonglin Li, Huikuan Chu, Hang Yuan, Lilin Hu, Lin Yao, Li Zhang, Weijun Wang, Rong Lin, Ling Yang. Pharmacotherapy for Liver Cirrhosis and Its Complications. 2022; : 81 doi: 10.1007/978-981-19-2615-0_6
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57 |
Marco Arrese, Rocio I.R. Macias, Oscar Briz, Maria J. Perez, Jose J.G. Marin. Molecular pathogenesis of intrahepatic cholestasis of pregnancy. Expert Reviews in Molecular Medicine 2008; 10 doi: 10.1017/S1462399408000628
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58 |
Adrianne F. Pike, Nynke I. Kramer, Bas J. Blaauboer, Willem Seinen, Ruud Brands. An alkaline phosphatase transport mechanism in the pathogenesis of Alzheimer’s disease and neurodegeneration. Chemico-Biological Interactions 2015; 226: 30 doi: 10.1016/j.cbi.2014.12.006
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59 |
Maria J. Perugorria, Tatyana V. Masyuk, Jose J. Marin, Marco Marzioni, Luis Bujanda, Nicholas F. LaRusso, Jesus M. Banales. Polycystic liver diseases: advanced insights into the molecular mechanisms. Nature Reviews Gastroenterology & Hepatology 2014; 11(12): 750 doi: 10.1038/nrgastro.2014.155
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60 |
Soraya Salas-Silva, Arturo Simoni-Nieves, Lisette Chávez-Rodríguez, María Concepción Gutiérrez-Ruiz, Leticia Bucio, Luis E. Gomez Quiroz. Mechanism of cholangiocellular damage and repair during cholestasis. Annals of Hepatology 2021; 26: 100530 doi: 10.1016/j.aohep.2021.100530
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61 |
Samuel K. Handelman, Yindra M. Puentes, Annapurna Kuppa, Yanhua Chen, Xiaomeng Du, Mary F. Feitosa, Nicholette D. Palmer, Elizabeth K. Speliotes. Population‐based meta‐analysis and gene‐set enrichment identifies FXR/RXR pathway as common to fatty liver disease and serum lipids. Hepatology Communications 2022; 6(11): 3120 doi: 10.1002/hep4.2066
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62 |
Marion J. Pollheimer, Peter Fickert, Bruno Stieger. Chronic cholestatic liver diseases: Clues from histopathology for pathogenesis. Molecular Aspects of Medicine 2014; 37: 35 doi: 10.1016/j.mam.2013.10.001
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63 |
Jia‐Huei Tsai, Jau‐Yu Liau, Chang‐Tsu Yuan, Mei‐Ling Cheng, Ray‐Hwang Yuan, Yung‐Ming Jeng. RNF43 mutation frequently occurs with GNAS mutation and mucin hypersecretion in intraductal papillary neoplasms of the bile duct. Histopathology 2017; 70(5): 756 doi: 10.1111/his.13125
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64 |
Man-Song Li, Ryan G. Holstead, Wuyang Wang, Paul Linsdell. Regulation of CFTR chloride channel macroscopic conductance by extracellular bicarbonate. American Journal of Physiology-Cell Physiology 2011; 300(1): C65 doi: 10.1152/ajpcell.00290.2010
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65 |
Andrea Schnúr, Péter Hegyi, Simon Rousseau, Gergely L. Lukacs, Guido Veit. Epithelial Anion Transport as Modulator of Chemokine Signaling. Mediators of Inflammation 2016; 2016: 1 doi: 10.1155/2016/7596531
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66 |
Guillermo L Lehmann, Maria C Larocca, Leandro R Soria, Raúl A Marinelli. Aquaporins: Their role in cholestatic liver disease. World Journal of Gastroenterology 2008; 14(46): 7059-7067 doi: 10.3748/wjg.14.7059
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67 |
Valeria Godoy, Jesús M. Banales, Juan F. Medina, Marçal Pastor-Anglada. Functional crosstalk between the adenosine transporter CNT3 and purinergic receptors in the biliary epithelia. Journal of Hepatology 2014; 61(6): 1337 doi: 10.1016/j.jhep.2014.06.036
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68 |
J.H. Tabibian, N.F. LaRusso. Reference Module in Biomedical Sciences. 2014; doi: 10.1016/B978-0-12-801238-3.00047-7
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69 |
Grazia Tamma, Silvia Dossena. Functional interplay between CFTR and pendrin: physiological and pathophysiological relevance. Frontiers in Bioscience-Landmark 2022; 27(2) doi: 10.31083/j.fbl2702075
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70 |
Patricia Munoz‐Garrido, Marco Marzioni, Elizabeth Hijona, Luis Bujanda, Jesus M. Banales. MicroRNAs in Medicine. 2013; : 509 doi: 10.1002/9781118300312.ch31
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71 |
Ayako Sato, Sei Kakinuma, Masato Miyoshi, Akihide Kamiya, Tomoyuki Tsunoda, Shun Kaneko, Jun Tsuchiya, Taro Shimizu, Eiko Takeichi, Sayuri Nitta, Fukiko Kawai‐Kitahata, Miyako Murakawa, Yasuhiro Itsui, Mina Nakagawa, Seishin Azuma, Naohiko Koshikawa, Motoharu Seiki, Hiromitsu Nakauchi, Yasuhiro Asahina, Mamoru Watanabe. Vasoactive Intestinal Peptide Derived From Liver Mesenchymal Cells Mediates Tight Junction Assembly in Mouse Intrahepatic Bile Ducts. Hepatology Communications 2020; 4(2): 235 doi: 10.1002/hep4.1459
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72 |
Pedro M. Rodrigues, Maria J. Perugorria, Alvaro Santos-Laso, Luis Bujanda, Ulrich Beuers, Jesus M. Banales. Primary biliary cholangitis: A tale of epigenetically-induced secretory failure?. Journal of Hepatology 2018; 69(6): 1371 doi: 10.1016/j.jhep.2018.08.020
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73 |
Ning Gao, Yuanzhen Liu, Guangjie Liu, Bo Liu, Yupeng Cheng. Sanghuangporus vaninii extract ameliorates hyperlipidemia in rats by mechanisms identified with transcriptome analysis. Food Science & Nutrition 2024; 12(5): 3360 doi: 10.1002/fsn3.4002
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74 |
Ju‐Hee Oh, Se‐Eun Park, Chang‐Koo Shim, Young‐Joo Lee. Biliary clearance of bromosulfophthalein in anesthetized and freely moving conscious rat. Biopharmaceutics & Drug Disposition 2009; 30(2): 94 doi: 10.1002/bdd.646
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75 |
Steven P. O’Hara, Sergio A. Gradilone, Tetyana V. Masyuk, James H. Tabibian, Nicholas F. LaRusso. MicroRNAs in Cholangiopathies. Current Pathobiology Reports 2014; 2(3): 133 doi: 10.1007/s40139-014-0048-9
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76 |
Anatoliy I. Masyuk, Tatyana V. Masyuk, Nicholas F. Larusso. The Liver. 2009; : 359 doi: 10.1002/9780470747919.ch25
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77 |
Jesus M. Banales, Robert C. Huebert, Tom Karlsen, Mario Strazzabosco, Nicholas F. LaRusso, Gregory J. Gores. Cholangiocyte pathobiology. Nature Reviews Gastroenterology & Hepatology 2019; 16(5): 269 doi: 10.1038/s41575-019-0125-y
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78 |
Takashi Hamada, Anna Nakamura, Akihiko Soyama, Yusuke Sakai, Takayuki Miyoshi, Shun Yamaguchi, Masaaki Hidaka, Takanobu Hara, Tota Kugiyama, Mitsuhisa Takatsuki, Akihide Kamiya, Koichi Nakayama, Susumu Eguchi. Bile duct reconstruction using scaffold-free tubular constructs created by Bio-3D printer. Regenerative Therapy 2021; 16: 81 doi: 10.1016/j.reth.2021.02.001
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79 |
M. Leonor Fernández-Murga, Petar D. Petrov, Isabel Conde, Jose V. Castell, M. José Goméz-Lechón, Ramiro Jover. Advances in drug-induced cholestasis: Clinical perspectives, potential mechanisms and in vitro systems. Food and Chemical Toxicology 2018; 120: 196 doi: 10.1016/j.fct.2018.07.017
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80 |
M. C. Carey, M. R. Leonard. Future Perspectives in Gastroenterology. 2008; : 77 doi: 10.1007/978-1-4020-8833-9_8
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81 |
Thierry Claudel, Gernot Zollner, Martin Wagner, Michael Trauner. Role of nuclear receptors for bile acid metabolism, bile secretion, cholestasis, and gallstone disease. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2011; 1812(8): 867 doi: 10.1016/j.bbadis.2010.12.021
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82 |
Miriam Úriz, Elena Sáez, Jesús Prieto, Juan F. Medina, Jesús M. Banales, Thierry Tordjmann. Ursodeoxycholic Acid Is Conjugated with Taurine to Promote Secretin-Stimulated Biliary Hydrocholeresis in the Normal Rat. PLoS ONE 2011; 6(12): e28717 doi: 10.1371/journal.pone.0028717
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83 |
Walailak Jantarajit, Kornkamon Lertsuwan, Jarinthorn Teerapornpuntakit, Nateetip Krishnamra, Narattaphol Charoenphandhu. CFTR-mediated anion secretion across intestinal epithelium-like Caco-2 monolayer under PTH stimulation is dependent on intermediate conductance K+ channels. American Journal of Physiology-Cell Physiology 2017; 313(1): C118 doi: 10.1152/ajpcell.00010.2017
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84 |
Jia-Huei Tsai, Ray-Hwang Yuan, Yu-Ling Chen, Jau-Yu Liau, Yung-Ming Jeng. GNAS Is Frequently Mutated in a Specific Subgroup of Intraductal Papillary Neoplasms of the Bile Duct. American Journal of Surgical Pathology 2013; 37(12): 1862 doi: 10.1097/PAS.0b013e3182986bb5
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85 |
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86 |
Adrianne F. Pike, Nynke I. Kramer, Bas J. Blaauboer, Willem Seinen, Ruud Brands. A novel hypothesis for an alkaline phosphatase ‘rescue’ mechanism in the hepatic acute phase immune response. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2013; 1832(12): 2044 doi: 10.1016/j.bbadis.2013.07.016
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