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Investigative Ophthalmology & Visual Science|March 7, 1998
Phorbol ester preferentially stimulates mouse fornical conjunctival and limbal epithelial cells to proliferate in vivoR M Lavker, Z G Wei, T T SunJournal of Cell Science|September 10, 1998
Strategies of epithelial repair: modulation of stem cell and transit amplifying cell proliferationM S Lehrer, T T Sun, R M LavkerInvestigative Ophthalmology & Visual Science|March 1, 1997
Clonal analysis of the in vivo differentiation potential of keratinocytesZ G Wei, T Lin, T T Sun, et al.Investigative Ophthalmology & Visual Science|January 1, 1995
Label-retaining cells are preferentially located in fornical epithelium: implications on conjunctival epithelial homeostasisZ G Wei, G Cotsarelis, T T Sun, et al.Proceedings of the National Academy of Sciences of the United States of America|January 3, 2001
Urothelial function reconsidered: a role in urinary protein secretionF M Deng, M Ding, R M Lavker, et al.Investigative Ophthalmology & Visual Science|April 1, 1993
In vitro growth and differentiation of rabbit bulbar, fornix, and palpebral conjunctival epithelia. Implications on conjunctival epithelial transdifferentiation and stem cellsZ G Wei, R L Wu, R M Lavker, et al.Cell|April 21, 1989
Existence of slow-cycling limbal epithelial basal cells that can be preferentially stimulated to proliferate: implications on epithelial stem cellsG Cotsarelis, S Z Cheng, G Dong, et al.Cell|August 31, 2000
Involvement of follicular stem cells in forming not only the follicle but also the epidermisG Taylor, M S Lehrer, P J Jensen, et al.Investigative Ophthalmology & Visual Science|May 1, 1991
Relative proliferative rates of limbal and corneal epithelia. Implications of corneal epithelial migration, circadian rhythm, and suprabasally located DNA-synthesizing keratinocytesR M Lavker, G Dong, S Z Cheng, et al.Pageof 24