Hepatic stem cells.
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[1] M. Hendrix,et al. Experimental co-expression of vimentin and keratin intermediate filaments in human breast cancer cells results in phenotypic interconversion and increased invasive behavior. , 1997, The American journal of pathology.
[2] V. Desmet,et al. ‘Undifferentiated progenitor cells’ in focal nodular hyperplasia of the liver , 1996, Histopathology.
[3] Roger Williams,et al. Immunolocalization of regenerating cells after submassive liver necrosis using PCNA staining , 1992, The Journal of pathology.
[4] K. Yoshizato,et al. Long-term cultivation of adult rat hepatocytes that undergo multiple cell divisions and express normal parenchymal phenotypes. , 1996, The American journal of pathology.
[5] R. Edwards,et al. Oval cell differentiation into hepatocytes in the acetylaminofluorene‐treated regenerating rat liver , 1995, Hepatology.
[6] Li Yang,et al. Characterization of a mature bile duct antigen expressed on a subpopulation of biliary ductular cells but absent from oval cells , 1993, Hepatology.
[7] W. Richards,et al. Oval cell proliferation associated with the murine insertional mutation TgN737Rpw. , 1996, The American journal of pathology.
[8] M. Golding,et al. Pluripotential liver stem cells: facultative stem cells located in the biliary tree , 1996, Cell proliferation.
[9] S. Sell,et al. Immunolocalization of putative human liver progenitor cells in livers from patients with end-stage primary biliary cirrhosis and sclerosing cholangitis using the monoclonal antibody OV-6. , 1998, The American journal of pathology.
[10] S. Thorgeirsson,et al. Wholesale hepatocytic differentiation in the rat from ductular oval cells, the progeny of biliary stem cells. , 1997, Journal of hepatology.
[11] C. Potten,et al. The intestinal epithelial stem cell: the mucosal governor , 1997, International journal of experimental pathology.
[12] C. Bréchot,et al. In vivo cell lineage analysis during chemical hepatocarcinogenesis using retroviral-mediated gene transfer. , 1996, Laboratory investigation; a journal of technical methods and pathology.
[13] J. Lemire,et al. Cell lineages and oval cell progenitors in rat liver development. , 1991, Cancer research.
[14] V. Mumaw,et al. Ductular hepatocytes. Evidence for a bile ductular cell origin in furan-treated rats. , 1994, The American journal of pathology.
[15] V. Desmet,et al. Parathyroid hormone‐related peptide expression in primary and metastatic liver tumours , 1993, Histopathology.
[16] V. Desmet,et al. Reactive human bile ductules express parathyroid hormone‐related peptide , 1993, Histopathology.
[17] L. Yang,et al. Antigenic phenotypes common to rat oval cells, primary hepatocellular carcinomas and developing bile ducts. , 1997, Carcinogenesis.
[18] G. Zajicek. Do livers "stream"? , 1995, The American journal of pathology.
[19] Y. Xiong,et al. Targeted in vivo expression of the cyclin-dependent kinase inhibitor p21 halts hepatocyte cell-cycle progression, postnatal liver development and regeneration. , 1996, Genes & development.
[20] M. Grompe,et al. Serial transplantation reveals the stem-cell-like regenerative potential of adult mouse hepatocytes. , 1997, The American journal of pathology.
[21] E. Opie. THE PATHOGENESIS OF TUMORS OF THE LIVER PRODUCED BY BUTTER YELLOW , 1944, The Journal of experimental medicine.
[22] S. Thorgeirsson,et al. Expression of α‐fetoprotein and stem cell factor/c‐kit system in bile duct ligated young rats , 1997 .
[23] P. Ruck,et al. Small epithelial cells and the histogenesis of hepatoblastoma. Electron microscopic, immunoelectron microscopic, and immunohistochemical findings. , 1996, The American journal of pathology.
[24] E. Farber. Similarities in the sequence of early histological changes induced in the liver of the rat by ethionine, 2-acetylamino-fluorene, and 3'-methyl-4-dimethylaminoazobenzene. , 1956, Cancer research.
[25] V. Desmet,et al. Ultrastructural characteristics of novel epithelial cell types identified in human pathologic liver specimens with chronic ductular reaction. , 1992, The American journal of pathology.
[26] F. Oesch,et al. Oval cell lines OC/CDE 6 and OC/CDE 22 give rise to cholangio-cellular and undifferentiated carcinomas after transformation. , 1994, Laboratory investigation; a journal of technical methods and pathology.
[27] S. Thorgeirsson,et al. Occurrence of oval‐type cells in hepatitis B virus—associated human hepatocarcinogenesis , 1992, Hepatology.
[28] R. Edwards,et al. Liver damage in the rat induces hepatocyte stem cells from biliary epithelial cells. , 1996, Gastroenterology.
[29] J. Gerdes,et al. Ki‐67 expression during rat liver regeneration after partial hepatectomy , 1997, Hepatology.
[30] R. Poulsom,et al. Expression of hepatocyte growth factor mRNA during oval cell activation in the rat liver , 1993, The Journal of pathology.
[31] S. Thorgeirsson,et al. In vivo differentiation of rat liver oval cells into hepatocytes. , 1989, Cancer research.
[32] T. Sugiyama,et al. Isolation of oval cells from Long‐Evans Cinnamon rats and their transformation into hepatocytes in vivo in the rat liver , 1997, Hepatology.
[33] T. Roskams,et al. Parathyroid hormone-related peptide is expressed and rapidly inducible in human liver cell cultures that have a bile duct phenotype. , 1995, Journal of hepatology.
[34] J. W. Wilson,et al. Role of cholangioles in restoration of the liver of the mouse after dietary injury. , 1958, The Journal of pathology and bacteriology.
[35] Nicholas A. Wright,et al. The biology of epithelial cell populations , 1984 .
[36] H. Stein,et al. Transforming growth factors beta 1 and beta 2 are differentially expressed in fibrotic liver disease. , 1991, The American journal of pathology.
[37] S. Thorgeirsson,et al. Expression of hepatocyte growth factor and c-met genes during hepatic differentiation and liver development in the rat. , 1993, The American journal of pathology.
[38] J. Grisham. Migration of hepatocytes along hepatic plates and stem cell-fed hepatocyte lineages. , 1994, The American journal of pathology.
[39] R. Poulsom,et al. Cell behavior in the acetylaminofluorene-treated regenerating rat liver. Light and electron microscopic observations. , 1994, The American journal of pathology.
[40] I. Cha,et al. Hepatocellular Carcinoma in Extrahepatic Bile Ducts , 1991, Acta radiologica.
[41] P. Novikoff,et al. Blast-like cell compartment in carcinogen-induced proliferating bile ductules. , 1996, The American journal of pathology.
[42] W. Richards,et al. The tetratricopeptide repeat containing Tg737 gene is a liver neoplasia tumor suppressor gene , 1997, Oncogene.
[43] L. Elmore,et al. "Intestinal-type" of adenocarcinoma preferentially induced in right/caudate liver lobes of rats treated with furan. , 1993, Cancer research.
[44] G. Michalopoulos,et al. Hepatic oval cells express the hematopoietic stem cell marker thy‐1 in the rat , 1998, Hepatology.
[45] C. Bréchot,et al. Cell lineage study in the liver using retroviral mediated gene transfer. Evidence against the streaming of hepatocytes in normal liver. , 1994, The American journal of pathology.
[46] S. Thorgeirsson,et al. Proliferation, apoptosis, and induction of hepatic transcription factors are characteristics of the early response of biliary epithelial (oval) cells to chemical carcinogens , 1996, Hepatology.
[47] S. Thorgeirsson,et al. Coexpression of stem cell factor and c-kit in embryonic and adult liver. , 1996, Experimental cell research.
[48] S. Thorgeirsson,et al. Hepatic Stem Cell Compartment: Activation and Lineage Commitment , 1993, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[49] S. Vilaró,et al. Epithelial‐mesenchymal transition of cultured rat neonatal hepatocytes is differentially regulated in response to epidermal growth factor and dimethyl sulfoxide , 1997, Hepatology.
[50] S. Thorgeirsson,et al. A precursor-product relationship exists between oval cells and hepatocytes in rat liver. , 1987, Carcinogenesis.
[51] S. Vilaró,et al. Epithelial‐mesenchymal transition in cultured neonatal hepatocytes , 1995, Hepatology.
[52] T. Nakamura,et al. Effects of mitogens and co‐mitogens on the formation of small‐cell colonies in primary cultures of rat hepatocytes , 1993, Journal of cellular physiology.
[53] P. van Eyken,et al. The development of the intrahepatic bile ducts in man: A keratin‐immunohistochemical study , 1988, Hepatology.
[54] M. Alison. Regulation of hepatic growth. , 1986, Physiological reviews.
[55] C. Sarraf,et al. Transforming growth factor‐α immunoreactivity in a variety of epithelial tissues , 1993 .
[56] S. Thorgeirsson,et al. Role of TGF‐Beta in Normal Differentiation and Oncogenesis in Rat Liver , 1989, Molecular carcinogenesis.
[57] S. Thorgeirsson,et al. Origin and fate of oval cells in dipin-induced hepatocarcinogenesis in the mouse. , 1994, The American journal of pathology.
[58] G. Michalopoulos,et al. Bile ductular damage induced by methylene dianiline inhibits oval cell activation. , 1997, The American journal of pathology.
[59] M. Fujimaki,et al. Appearance of a Carcinoid–like Pattern in Rat Hepatic Tumors Induced by 3′–Methyl‐4–dimethyl ‐aminoazobenzene , 1991, Japanese journal of cancer research : Gann.
[60] M. Tatematsu,et al. Intestinal metaplasia as a common option of oval cells in relation to cholangiofibrosis in liver of rats exposed to 2-acetylaminofluorene. , 1985, Laboratory investigation; a journal of technical methods and pathology.
[61] S. Thorgeirsson,et al. Expression of stem cell factor and its receptor, c-kit, during liver regeneration from putative stem cells in adult rat. , 1994, Laboratory investigation; a journal of technical methods and pathology.
[62] N. LaRusso,et al. Morphological, molecular, and functional heterogeneity of cholangiocytes from normal rat liver. , 1996, Gastroenterology.
[63] G. Zajicek,et al. [The streaming liver]. , 1991, Harefuah.