Intestinal stem cells remain viable after prolonged tissue storage
暂无分享,去创建一个
M. Helmrath | S. Henning | Nambirajan Sundaram | N. Shroyer | D. Faulk | Megan K. Fuller | K. McNaughton | Brian J. Smith | Maxime M. Mahe | R. J. Furstenberg | Kara M. Stout | R. Furstenberg
[1] C. M. Dekaney,et al. Small intestinal stem cells , 2013, Current opinion in gastroenterology.
[2] A. Clarke,et al. Evidence for a Crucial Role of Paneth Cells in Mediating the Intestinal Response to Injury , 2013, Stem cells.
[3] P. Lund. Fixing the breaks in intestinal stem cells after radiation: a matter of DNA damage and death or DNA repair and regeneration. , 2012, Gastroenterology.
[4] M. Helmrath,et al. Intestinal crypts reproducibly expand in culture. , 2012, The Journal of surgical research.
[5] Alexander van Oudenaarden,et al. Identifying the stem cell of the intestinal crypt: strategies and pitfalls. , 2012, Cell stem cell.
[6] Matthias Stelzner,et al. A nomenclature for intestinal in vitro cultures. , 2012, American journal of physiology. Gastrointestinal and liver physiology.
[7] T. Grikscheit,et al. Tissue-engineering of the gastrointestinal tract , 2012, Current opinion in pediatrics.
[8] Adrienne E. Krebs,et al. Activation of two distinct Sox9-EGFP-expressing intestinal stem cell populations during crypt regeneration after irradiation. , 2012, American journal of physiology. Gastrointestinal and liver physiology.
[9] D. Rubin,et al. Stem Cells: One step closer to gut repair , 2012, Nature.
[10] A. Nagler,et al. Apoptotic cells in allogeneic hematopoietic stem cell transplantations: “turning trash into gold” , 2012, Leukemia & lymphoma.
[11] S. Ichinose,et al. Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5+ stem cell , 2012, Nature Medicine.
[12] Hans Clevers,et al. Lrig1 controls intestinal stem cell homeostasis by negative regulation of ErbB signalling , 2012, Nature Cell Biology.
[13] O. Klein,et al. A reserve stem cell population in small intestine renders Lgr5-positive cells dispensable , 2012, Nature.
[14] D. Breault,et al. Tales from the crypt: the expanding role of slow cycling intestinal stem cells. , 2012, Cell stem cell.
[15] S. Raghavan,et al. Intestinal tissue engineering: current concepts and future vision of regenerative medicine in the gut , 2012, Neurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society.
[16] M. Capecchi,et al. The intestinal stem cell markers Bmi1 and Lgr5 identify two functionally distinct populations , 2011, Proceedings of the National Academy of Sciences.
[17] J. Epstein,et al. Interconversion Between Intestinal Stem Cell Populations in Distinct Niches , 2011, Science.
[18] Matthias Stelzner,et al. Intestinal Subepithelial Myofibroblasts Support in vitro and in vivo Growth of Human Small Intestinal Epithelium , 2011, PloS one.
[19] M. Helmrath,et al. Expansion of Intestinal Epithelial Stem Cells during Murine Development , 2011, PloS one.
[20] Hans Clevers,et al. Long-term expansion of epithelial organoids from human colon, adenoma, adenocarcinoma, and Barrett's epithelium. , 2011, Gastroenterology.
[21] Ajay S. Gulati,et al. Sorting mouse jejunal epithelial cells with CD24 yields a population with characteristics of intestinal stem cells. , 2011, American journal of physiology. Gastrointestinal and liver physiology.
[22] Camilla A. Richmond,et al. Mouse telomerase reverse transcriptase (mTert) expression marks slowly cycling intestinal stem cells , 2010, Proceedings of the National Academy of Sciences.
[23] M. Grompe,et al. Therapeutic liver reconstitution with murine cells isolated long after death. , 2010, Gastroenterology.
[24] D. Rubin,et al. Intestinal stem cells and epithelial-mesenchymal interactions in the crypt and stem cell niche. , 2010, Translational research : the journal of laboratory and clinical medicine.
[25] Hans Clevers,et al. Coexistence of Quiescent and Active Adult Stem Cells in Mammals , 2010, Science.
[26] M. Loeffler,et al. The stem cells of small intestinal crypts: where are they? , 2009, Cell proliferation.
[27] J. Vacanti,et al. Tissue-engineered small intestine and stomach form from autologous tissue in a preclinical large animal model. , 2009, The Journal of surgical research.
[28] Ajay S. Gulati,et al. Regeneration of intestinal stem/progenitor cells following doxorubicin treatment of mice. , 2009, American journal of physiology. Gastrointestinal and liver physiology.
[29] M. Helmrath,et al. Intestinal stem cells. , 2009, Journal of pediatric gastroenterology and nutrition.
[30] H. Clevers,et al. Single Lgr5 stem cells build cryptvillus structures in vitro without a mesenchymal niche , 2009, Nature.
[31] D. K. Lorance,et al. Distinct SOX9 levels differentially mark stem/progenitor populations and enteroendocrine cells of the small intestine epithelium. , 2009, American journal of physiology. Gastrointestinal and liver physiology.
[32] D. Breault,et al. Small intestinal stem cell markers , 2008, Journal of anatomy.
[33] Xi C. He,et al. Current view: intestinal stem cells and signaling. , 2008, Gastroenterology.
[34] M. Helmrath,et al. Expansion of intestinal stem cells associated with long-term adaptation following ileocecal resection in mice. , 2007, American journal of physiology. Gastrointestinal and liver physiology.
[35] H. Clevers,et al. Identification of stem cells in small intestine and colon by marker gene Lgr5 , 2007, Nature.
[36] Alexander M Seifalian,et al. Tissue engineering of small intestine--current status. , 2006, Biomacromolecules.
[37] Ashok Srinivasan,et al. Tissue-Engineered Small Intestine Improves Recovery After Massive Small Bowel Resection , 2004, Annals of surgery.
[38] M. Wong. Regulation of intestinal stem cells. , 2004, The journal of investigative dermatology. Symposium proceedings.
[39] H. Itoh,et al. Regeneration of Small Intestinal Mucosa After Acute Ischemia–Reperfusion Injury , 2002, Digestive Diseases and Sciences.
[40] M. Stelzner,et al. Treatment of bile acid malabsorption using ileal stem cell transplantation , 2003 .
[41] N. Wright. Epithelial stem cell repertoire in the gut: clues to the origin of cell lineages, proliferative units and cancer , 2000, International journal of experimental pathology.
[42] R. Ricketts. The time sequence of injury and recovery following transient reversible intestinal ischemia , 1996 .
[43] U. Haglund,et al. Regeneration of small bowel mucosa after intestinal ischemia , 1992, Critical care medicine.
[44] P. Terasaki,et al. Bone marrow from cadaver donors for transplantation. , 1985, Blood.
[45] H. Taylor,et al. Preservation of hematopoietic stem cells in cadaveric marrow. , 1981, American journal of clinical pathology.
[46] Paul Liu,et al. Proliferative function of cadaveric bone marrow cells , 1978, American journal of hematology.
[47] L. Russel,et al. Ultrastructure of leydig cells as revealed by secondary tissue treatment with a ferrocyanide-osmium mixture. , 1977, Tissue & cell.
[48] J. Hendry,et al. Differential regeneration of intestinal proliferative cells and cryptogenic cells after irradiation. , 1975, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[49] C. P. Leblond,et al. Origin, differentiation and renewal of the four main epithelial cell types in the mouse small intestine. V. Unitarian Theory of the origin of the four epithelial cell types. , 1974, The American journal of anatomy.
[50] E. Reynolds. THE USE OF LEAD CITRATE AT HIGH pH AS AN ELECTRON-OPAQUE STAIN IN ELECTRON MICROSCOPY , 1963, The Journal of cell biology.