Enhanced liver progenitor cell survival and differentiation in vivo by spheroid implantation in a vascularized tissue engineering chamber.
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W. Morrison | A. Penington | J. Palmer | G. Mitchell | K. Yap | G. Yeoh | Z. Lokmic | A. Dingle | R. Dhillon | Kiryu K. Yap
[1] J. Bowsher,et al. Successful transplantation of human hepatic stem cells with restricted localization to liver using hyaluronan grafts † , 2013, Hepatology.
[2] G. Yeoh,et al. Liver progenitor cell interactions with the extracellular matrix , 2012, Journal of tissue engineering and regenerative medicine.
[3] G. Dusting,et al. The in vitro preconditioning of myoblasts to enhance subsequent survival in an in vivo tissue engineering chamber model. , 2012, Biomaterials.
[4] Catarina Brito,et al. Human liver cell spheroids in extended perfusion bioreactor culture for repeated‐dose drug testing , 2012, Hepatology.
[5] C. Steer,et al. Mature hepatocytes exhibit unexpected plasticity by direct dedifferentiation into liver progenitor cells in culture , 2012, Hepatology.
[6] L. Mishra,et al. Stem cells in liver diseases and cancer: Recent advances on the path to new therapies , 2012, Hepatology.
[7] M. Tsai,et al. Enhancement of cell retention and functional benefits in myocardial infarction using human amniotic-fluid stem-cell bodies enriched with endogenous ECM. , 2011, Biomaterials.
[8] T. Vanhaecke,et al. Characterization of spontaneous cell death in monolayer cultures of primary hepatocytes , 2011, Archives of Toxicology.
[9] Seung-Woo Cho,et al. Angiogenesis in ischemic tissue produced by spheroid grafting of human adipose-derived stromal cells. , 2011, Biomaterials.
[10] W. Ong,et al. Expansion and hepatocytic differentiation of liver progenitor cells in vivo using a vascularized tissue engineering chamber in mice. , 2011, Tissue engineering. Part C, Methods.
[11] J. Deng,et al. Continuous cell supply from a Sox9-expressing progenitor zone in adult liver, exocrine pancreas and intestine , 2011, Nature Genetics.
[12] H. Thomas,et al. Remodelling of extracellular matrix is a requirement for the hepatic progenitor cell response , 2010, Gut.
[13] A. Dhawan,et al. Human hepatocyte transplantation: current experience and future challenges , 2010, Nature Reviews Gastroenterology &Hepatology.
[14] F. Lemaigre,et al. Organogenesis and development of the liver. , 2010, Developmental cell.
[15] E. Kondo,et al. Intramuscular transplantation of engineered hepatic tissue constructs corrects acute and chronic liver failure in mice. , 2010, Journal of hepatology.
[16] J. Gerlach,et al. Isolation and characterization of adult human liver progenitors from ischemic liver tissue derived from therapeutic hepatectomies. , 2009, Tissue engineering. Part A.
[17] S. Nyberg,et al. Rat hepatocyte spheroids formed by rocked technique maintain differentiated hepatocyte gene expression and function , 2009, Hepatology.
[18] B. Han,et al. Cellular Loss After Allogenic Hepatocyte Transplantation , 2009, Transplantation.
[19] Hwan-You Chang,et al. Recent advances in three‐dimensional multicellular spheroid culture for biomedical research , 2008, Biotechnology journal.
[20] G. Yeoh,et al. Liver stem cells: A scientific and clinical perspective , 2008, Journal of gastroenterology and hepatology.
[21] Geraldine M Mitchell,et al. Engineering the microcirculation. , 2008, Tissue engineering. Part B, Reviews.
[22] W. Morrison,et al. Angiogenic growth factor synergism in a murine tissue engineering model of angiogenesis and adipogenesis. , 2007, The American journal of pathology.
[23] F. Pampaloni,et al. The third dimension bridges the gap between cell culture and live tissue , 2007, Nature Reviews Molecular Cell Biology.
[24] J. Olynyk,et al. Isolation, culture and immortalisation of hepatic oval cells from adult mice fed a choline-deficient, ethionine-supplemented diet. , 2007, The international journal of biochemistry & cell biology.
[25] M. Dake,et al. Liver tissue engineering at extrahepatic sites in mice as a potential new therapy for genetic liver diseases , 2005, Hepatology.
[26] A. Bell,et al. β-Catenin regulation during matrigel-induced rat hepatocyte differentiation , 2005, Cell and Tissue Research.
[27] G. Michalopoulos,et al. Beta-catenin is temporally regulated during normal liver development. , 2004, Gastroenterology.
[28] G. Stevens,et al. New Murine Model of Spontaneous Autologous Tissue Engineering, Combining an Arteriovenous Pedicle with Matrix Materials , 2004, Plastic and reconstructive surgery.
[29] R. McCuskey,et al. Kupffer cells participate in early clearance of syngeneic hepatocytes transplanted in the rat liver. , 2002, Gastroenterology.
[30] Naohiro Terada,et al. Embryoid‐body cells derived from a mouse embryonic stem cell line show differentiation into functional hepatocytes , 2002, Hepatology.
[31] J. Hedreen,et al. Unbiased stereology? , 1999, Trends in Neurosciences.
[32] N. Tanaka,et al. Xenotransplantation of spheroidal aggregate-cultured hepatocytes. , 1997, Transplantation proceedings.
[33] Rakesh K. Jain,et al. Interstitial pH and pO2 gradients in solid tumors in vivo: High-resolution measurements reveal a lack of correlation , 1997, Nature Medicine.