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250 related items for PubMed ID: 24488807
21. Single Cell RNA Sequencing Identifies Subsets of Hepatic Stellate Cells and Myofibroblasts in Liver Fibrosis. Krenkel O, Hundertmark J, Ritz TP, Weiskirchen R, Tacke F. Cells; 2019 May 24; 8(5):. PubMed ID: 31137713 [Abstract] [Full Text] [Related]
22. Hepatic stellate cells orchestrate clearance of necrotic cells in a hypoxia-inducible factor-1α-dependent manner by modulating macrophage phenotype in mice. Mochizuki A, Pace A, Rockwell CE, Roth KJ, Chow A, O'Brien KM, Albee R, Kelly K, Towery K, Luyendyk JP, Copple BL. J Immunol; 2014 Apr 15; 192(8):3847-3857. PubMed ID: 24639359 [Abstract] [Full Text] [Related]
23. The Role of Mesothelial Cells in Liver Development, Injury, and Regeneration. Lua I, Asahina K. Gut Liver; 2016 Mar 15; 10(2):166-76. PubMed ID: 26934883 [Abstract] [Full Text] [Related]
24. P300 Acetyltransferase Mediates Stiffness-Induced Activation of Hepatic Stellate Cells Into Tumor-Promoting Myofibroblasts. Dou C, Liu Z, Tu K, Zhang H, Chen C, Yaqoob U, Wang Y, Wen J, van Deursen J, Sicard D, Tschumperlin D, Zou H, Huang WC, Urrutia R, Shah VH, Kang N. Gastroenterology; 2018 Jun 15; 154(8):2209-2221.e14. PubMed ID: 29454793 [Abstract] [Full Text] [Related]
25. Fibromodulin, an oxidative stress-sensitive proteoglycan, regulates the fibrogenic response to liver injury in mice. Mormone E, Lu Y, Ge X, Fiel MI, Nieto N. Gastroenterology; 2012 Mar 15; 142(3):612-621.e5. PubMed ID: 22138190 [Abstract] [Full Text] [Related]
26. Liver progenitor cells yield functional hepatocytes in response to chronic liver injury in mice. Español-Suñer R, Carpentier R, Van Hul N, Legry V, Achouri Y, Cordi S, Jacquemin P, Lemaigre F, Leclercq IA. Gastroenterology; 2012 Dec 15; 143(6):1564-1575.e7. PubMed ID: 22922013 [Abstract] [Full Text] [Related]
27. Fate tracking reveals differences between Reelin+ hepatic stellate cells (HSCs) and Desmin+ HSCs in activation, migration and proliferation. Chen N, Liu S, Qin D, Guan D, Chen Y, Hou C, Zheng S, Wang L, Chen X, Chen W, Zhang L. Cell Prolif; 2023 Dec 15; 56(12):e13500. PubMed ID: 37246473 [Abstract] [Full Text] [Related]
28. Liver fibrogenic cells. Forbes SJ, Parola M. Best Pract Res Clin Gastroenterol; 2011 Apr 15; 25(2):207-17. PubMed ID: 21497739 [Abstract] [Full Text] [Related]
29. EphB2 receptor tyrosine kinase promotes hepatic fibrogenesis in mice via activation of hepatic stellate cells. Mimche PN, Lee CM, Mimche SM, Thapa M, Grakoui A, Henkemeyer M, Lamb TJ. Sci Rep; 2018 Feb 07; 8(1):2532. PubMed ID: 29416088 [Abstract] [Full Text] [Related]
30. Ablation of Foxl1-Cre-labeled hepatic progenitor cells and their descendants impairs recovery of mice from liver injury. Shin S, Upadhyay N, Greenbaum LE, Kaestner KH. Gastroenterology; 2015 Jan 07; 148(1):192-202.e3. PubMed ID: 25286440 [Abstract] [Full Text] [Related]
31. Myofibroblastic Conversion and Regeneration of Mesothelial Cells in Peritoneal and Liver Fibrosis. Lua I, Li Y, Pappoe LS, Asahina K. Am J Pathol; 2015 Dec 07; 185(12):3258-73. PubMed ID: 26598235 [Abstract] [Full Text] [Related]
32. Clonal tracing of Sox9+ liver progenitors in mouse oval cell injury. Tarlow BD, Finegold MJ, Grompe M. Hepatology; 2014 Jul 07; 60(1):278-89. PubMed ID: 24700457 [Abstract] [Full Text] [Related]
33. An inducible model for genetic manipulation and fate-tracing of PDGFRβ-expressing fibrogenic cells in the liver. Hamberger F, Mederacke YS, Mederacke I. Sci Rep; 2023 May 05; 13(1):7322. PubMed ID: 37147343 [Abstract] [Full Text] [Related]
34. Fate tracing of hepatocytes in mouse liver. Gu X, Huang D, Ci L, Shi J, Zhang M, Yang H, Wang Z, Sheng Z, Sun R, Fei J. Sci Rep; 2017 Nov 23; 7(1):16108. PubMed ID: 29170436 [Abstract] [Full Text] [Related]
35. Fate tracing reveals hepatic stellate cells as dominant contributors to liver fibrosis independent of its aetiology. Mederacke I, Hsu CC, Troeger JS, Huebener P, Mu X, Dapito DH, Pradere JP, Schwabe RF. Nat Commun; 2013 Nov 23; 4():2823. PubMed ID: 24264436 [Abstract] [Full Text] [Related]
36. Hedgehog controls hepatic stellate cell fate by regulating metabolism. Chen Y, Choi SS, Michelotti GA, Chan IS, Swiderska-Syn M, Karaca GF, Xie G, Moylan CA, Garibaldi F, Premont R, Suliman HB, Piantadosi CA, Diehl AM. Gastroenterology; 2012 Nov 23; 143(5):1319-1329.e11. PubMed ID: 22885334 [Abstract] [Full Text] [Related]
37. Effect of human amniotic epithelial cells on pro-fibrogenic resident hepatic cells in a rat model of liver fibrosis. Cargnoni A, Farigu S, Cotti Piccinelli E, Bonassi Signoroni P, Romele P, Vanosi G, Toschi I, Cesari V, Barros Sant'Anna L, Magatti M, Silini AR, Parolini O. J Cell Mol Med; 2018 Feb 23; 22(2):1202-1213. PubMed ID: 29105277 [Abstract] [Full Text] [Related]
38. Epigenetic modifications in hepatic stellate cells contribute to liver fibrosis. Zhao Q, Qin CY, Zhao ZH, Fan YC, Wang K. Tohoku J Exp Med; 2013 Jan 23; 229(1):35-43. PubMed ID: 23238615 [Abstract] [Full Text] [Related]
39. Mesp1 coordinately regulates cardiovascular fate restriction and epithelial-mesenchymal transition in differentiating ESCs. Lindsley RC, Gill JG, Murphy TL, Langer EM, Cai M, Mashayekhi M, Wang W, Niwa N, Nerbonne JM, Kyba M, Murphy KM. Cell Stem Cell; 2008 Jul 03; 3(1):55-68. PubMed ID: 18593559 [Abstract] [Full Text] [Related]
40. Study on the relationship between hepatic fibrosis and epithelial-mesenchymal transition in intrahepatic cells. Chen Y, Fan Y, Guo DY, Xu B, Shi XY, Li JT, Duan LF. Biomed Pharmacother; 2020 Sep 03; 129():110413. PubMed ID: 32570119 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]