Mapping stem cell activities in the feather follicle (original) (raw)
References
Morris, R. J. et al. Capturing and profiling adult hair follicle stem cells. Nature Biotechnol.22, 411–417 (2004) ArticleCAS Google Scholar
Oshima, H., Rochat, A., Kedzia, C., Kobayashi, K. & Barrandon, Y. Morphogenesis and renewal of hair follicles from adult multipotent stem cells. Cell104, 233–245 (2001) ArticleCAS Google Scholar
Tumbar, T. et al. Defining the epithelial stem cell niche in skin. Science303, 359–363 (2004) ArticleADSCAS Google Scholar
Lillie, F. R. & Wang, H. Physiology of development of the feather. V. Experimental morphogenesis. Physiol. Zool.14, 103–133 (1941) Article Google Scholar
Lillie, F. R. & Wang, H. Physiology of development of the feather. VII. An experimental study of induction. Physiol. Zool.17, 1–32 (1944) Article Google Scholar
Lucas, A. M. & Stettenheim, P. R. (eds) Avian Anatomy: Integument. Agriculture Handbook 362: Agricultural Research Services (US Dept. Agriculture, Washington DC, 1972)
Wang, H. The morphogenetic function of the epidermal and dermal components of the papilla in feather regeneration. Physiol. Zool.16, 325–350 (1943) Article Google Scholar
Cohen, J. & Espinasse, P. G. On the normal and abnormal development of the feather. J. Embryol. Exp. Morphol.9, 223–251 (1961) CASPubMed Google Scholar
Potten, C. S., Owen, G. & Booth, D. Intestinal stem cells protect their genome by selective segregation of template DNA strands. J. Cell Sci.115, 2381–2388 (2002) CASPubMed Google Scholar
Cotsarelis, G., Sun, T. T. & Lavker, R. M. Label-retaining cells reside in the bulge area of pilosebaceous unit: implications for follicular stem cells, hair cycle, and skin carcinogenesis. Cell61, 1329–1337 (1990) ArticleCAS Google Scholar
Bronner-Fraser, M. Manipulations of neural crest cells or their migratory pathways. Methods Cell Biol.51, 61–79 (1996) ArticleCAS Google Scholar
Dupin, E., Ziller, C. & Le Douarin, N. M. The avian embryo as a model in developmental studies: chimeras and in vitro clonal analysis. Curr. Top. Dev. Biol.36, 1–35 (1998) CASPubMed Google Scholar
Yu, M. et al. Developmental biology of feather follicles. Int. J. Dev. Biol.48, 181–191 (2004) ArticleCAS Google Scholar
Ting-Berreth, S. A. & Chuong, C. M. Sonic hedgehog in feather morphogenesis: Induction of mesenchymal condensation and association with cell death. Dev. Dyn.207, 157–170 (1996) ArticleCAS Google Scholar
Harris, M. P., Fallon, J. F. & Prum, R. O. Shh–Bmp2 signalling module and the evolutionary origin and diversification of feathers. J. Exp. Zool.294, 160–176 (2002) ArticleCAS Google Scholar
Prum, R. O. & Williamson, S. Theory of the growth and evolution of feather shape. J. Exp. Zool.291, 30–57 (2001) ArticleCAS Google Scholar
Fiala, J. C. & Harris, K. M. PC-based alignment and reconstruction of serial sections. Microsc. Anal.52, 5–7 (2002) Google Scholar
Chuong, C. M. & Edelman, G. M. Expression of cell-adhesion molecules in embryonic induction. I. Morphogenesis of nestling feathers. J. Cell Biol.101, 1009–1026 (1985) ArticleCAS Google Scholar
Chuong, C. M. & Edelman, G. M. Expression of cell-adhesion molecules in embryonic induction. II. Morphogenesis of adult feathers. J. Cell Biol.101, 1027–1043 (1985) ArticleCAS Google Scholar
Kopan, R. et al. Genetic mosaic analysis indicates that the bulb region of coat hair follicles contains a resident population of several active multipotent epithelial lineage progenitors. Dev. Biol.242, 44–57 (2002) ArticleCAS Google Scholar
Watt, F. M. & Hogan, B. L. Out of Eden: stem cells and their niches. Science287, 1427–1430 (2000) ArticleADSCAS Google Scholar
Fuchs, E., Tumbar, T. & Guasch, G. Socializing with the neighbors: stem cells and their niche. Cell116, 769–778 (2004) ArticleCAS Google Scholar
Koster, M. I., Huntzinger, K. A. & Roop, D. R. Epidermal differentiation: transgenic/knockout mouse models reveal genes involved in stem cell fate decisions and commitment to differentiation. J. Investig. Dermatol. Symp. Proc.7, 41–45 (2002) ArticleCAS Google Scholar
Prum, R. O. Development and evolutionary origin of feathers. J. Exp. Zool.285, 291–306 (1999) ArticleCAS Google Scholar
Yu, M., Wu, P., Widelitz, R. B. & Chuong, C. M. The morphogenesis of feathers. Nature420, 308–312 (2002) ArticleADSCAS Google Scholar
Chuong, C.-M. et al. Adaptation to the sky: defining the feather with integument fossils from mesozoic China and experimental evidence from molecular laboratories. J. Exp. Zool.298, 42–56 (2003) Article Google Scholar
Jiang, T.-X., Jung, H. S., Widelitz, R. B. & Chuong, C.-M. Self organization of periodic patterns by dissociated feather mesenchymal cells and the regulation of size, number and spacing of primordia. Development126, 4997–5009 (1999) CASPubMed Google Scholar
Chodankar, R. et al. Shift of localized growth zones contributes to skin appendage morphogenesis: role of the Wnt/β-catenin pathway. J. Invest. Dermatol.120, 20–26 (2003) ArticleCAS Google Scholar
Wu, P., Jiang, T.-X., Suksaweang, S., Wideltz, R. B. & Chuong, C. M. Molecular shaping of the beak. Science305, 1465–1466 (2004) ArticleADSCAS Google Scholar