Human limbal niche cells are a powerful regenerative source for the prevention of limbal stem cell deficiency in a rabbit model
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Shuangling Chen | Guigang Li | Sean Tighe | Yingting Zhu | Y. Zhang | Juan Wang | Xin-Yu Li | S. Cai | Ming Sun | H. Xie | Shen Li
[1] Farzin Sahebjam,et al. Short-term effects of extremely low-frequency pulsed electromagnetic field and pulsed low-level laser therapy on rabbit model of corneal alkali burn. , 2016, Experimental eye research.
[2] S. Tseng,et al. HC‐HA/PTX3 Purified From Amniotic Membrane Promotes BMP Signaling in Limbal Niche Cells to Maintain Quiescence of Limbal Epithelial Progenitor/Stem Cells , 2015, Stem cells.
[3] S. Singh,et al. Amniotic membrane transplantation with and without limbal stem cell transplantation in chemical eye injury. , 2015, Nepalese journal of ophthalmology : a biannual peer-reviewed academic journal of the Nepal Ophthalmic Society : NEPJOPH.
[4] D. Dobrowolski,et al. Cultivated Oral Mucosa Epithelium in Ocular Surface Reconstruction in Aniridia Patients , 2015, BioMed research international.
[5] S. Tseng,et al. Mesenchymal stem cells derived from human limbal niche cells. , 2012, Investigative ophthalmology & visual science.
[6] S. Tseng,et al. Angiogenesis potential of human limbal stromal niche cells. , 2012, Investigative ophthalmology & visual science.
[7] D. Liang,et al. Role of Mesenchymal Stem Cells on Cornea Wound Healing Induced by Acute Alkali Burn , 2012, PloS one.
[8] S. Tseng,et al. Isolation and expansion of human limbal stromal niche cells. , 2012, Investigative ophthalmology & visual science.
[9] D. Boehringer,et al. Corneal surface reconstruction using adult mesenchymal stem cells in experimental limbal stem cell deficiency in rabbits , 2011, Acta ophthalmologica.
[10] S. Tseng,et al. Limbal Epithelial Stem/Progenitor Cells Attract Stromal Niche Cells by SDF‐1/CXCR4 Signaling to Prevent Differentiation , 2011, Stem cells.
[11] L. Liao,et al. Mesenchymal-stem-cell-based experimental and clinical trials: current status and open questions , 2011, Expert opinion on biological therapy.
[12] Y. Hayashida,et al. A new isolation method of human limbal progenitor cells by maintaining close association with their niche cells. , 2011, Tissue engineering. Part C, Methods.
[13] Marcela Munzarová,et al. Treatment of Ocular Surface Injuries by Limbal and Mesenchymal Stem Cells Growing on Nanofiber Scaffolds , 2010, Cell transplantation.
[14] H. Motaln,et al. Human mesenchymal stem cells and their use in cell‐based therapies , 2010, Cancer.
[15] A. Shortt,et al. Characterization of the Limbal Epithelial Stem Cell Niche: Novel Imaging Techniques Permit In Vivo Observation and Targeted Biopsy of Limbal Epithelial Stem Cells , 2007, Stem cells.
[16] Linheng Li,et al. Stem cells and their niche: an inseparable relationship , 2007, Development.
[17] Rennian Wang,et al. Expression of c-Kit receptor tyrosine kinase and effect on beta-cell development in the human fetal pancreas. , 2007, American journal of physiology. Endocrinology and metabolism.
[18] Lindolfo da Silva Meirelles,et al. Mesenchymal stem cells reside in virtually all post-natal organs and tissues , 2006, Journal of Cell Science.
[19] K. Yao,et al. Mesenchymal stem cell transplantation in a rabbit corneal alkali burn model: engraftment and involvement in wound healing , 2006, Eye.
[20] Zhifeng Xiao,et al. Reconstruction of Chemically Burned Rat Corneal Surface by Bone Marrow–Derived Human Mesenchymal Stem Cells , 2006, Stem cells.
[21] E. Fuchs,et al. Socializing with the Neighbors Stem Cells and Their Niche , 2004, Cell.
[22] S. Tseng,et al. Corneal epithelial stem cells at the limbus: looking at some old problems from a new angle. , 2004, Experimental eye research.
[23] Shigeru Kobayashi,et al. c-kit-Dependent development of interstitial cells and electrical activity in the murine gastrointestinal tract , 1995, Cell and Tissue Research.
[24] D. Linnekin,et al. Early signaling pathways activated by c-Kit in hematopoietic cells. , 1999, The international journal of biochemistry & cell biology.
[25] L. Ashman,et al. The biology of stem cell factor and its receptor C-kit. , 1999, The international journal of biochemistry & cell biology.
[26] M. Pittenger,et al. Multilineage potential of adult human mesenchymal stem cells. , 1999, Science.
[27] H. Dua,et al. Allo-limbal transplantation in patients with limbal stem cell deficiency , 1999, The British journal of ophthalmology.
[28] M. Welsh,et al. Effects of Certain Growth Factors on In Vitro Maturation of Rat Fetal Islet‐like Structures , 1996, Pancreas.
[29] H. Dua. Stem cells of the ocular surface: scientific principles and clinical applications. , 1995, The British journal of ophthalmology.
[30] S. Tseng,et al. Cytologlogic Evidence of Corneal Diseases with Limbal Stem Cell Deficiency , 1995 .
[31] S. Tseng,et al. Cytologic evidence of corneal diseases with limbal stem cell deficiency. , 1995, Ophthalmology.
[32] W. Gerald,et al. Expression of c-kit and kit ligand proteins in normal human tissues. , 1994, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[33] A Singh,et al. Corneal epithelial wound healing. , 1994, The British journal of ophthalmology.
[34] L. Claesson‐Welsh,et al. Expression of protein tyrosine kinases in islet cells: possible role of the Flk-1 receptor for beta-cell maturation from duct cells. , 1994, Growth factors.
[35] R. Pfister. Corneal stem cell disease: concepts, categorization, and treatment by auto- and homotransplantation of limbal stem cells. , 1994, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[36] V. Broudy,et al. Human umbilical vein endothelial cells display high-affinity c-kit receptors and produce a soluble form of the c-kit receptor. , 1994, Blood.
[37] M. Heinrich,et al. Constitutive expression of steel factor gene by human stromal cells. , 1993, Blood.
[38] J. Forrester,et al. The corneoscleral limbus in human corneal epithelial wound healing. , 1990, American journal of ophthalmology.
[39] O. Witte. Steel locus defines new multipotent growth factor , 1990, Cell.
[40] M. Minden,et al. The expression of the proto-oncogene C-kit in the blast cells of acute myeloblastic leukemia. , 1989, Leukemia.
[41] A. Bernstein,et al. Expression of c-kit gene products in known cellular targets of W mutations in normal and W mutant mice--evidence for an impaired c-kit kinase in mutant mice. , 1989, Genes & development.
[42] S. Tseng. Concept and application of limbal stem cells , 1989, Eye.
[43] I. Gipson. The epithelial basement membrane zone of the limbus , 1989, Eye.
[44] S. Majumder,et al. c-kit protein, a transmembrane kinase: identification in tissues and characterization , 1988, Molecular and cellular biology.
[45] L. Ashman,et al. Specificity of a mouse monoclonal antibody raised against acute myeloid leukaemia cells for mast cells in human mucosal and connective tissues , 1987, Immunology and cell biology.
[46] A. Schermer,et al. Differentiation-related expression of a major 64K corneal keratin in vivo and in culture suggests limbal location of corneal epithelial stem cells , 1986, The Journal of cell biology.