Jahoda, CAB
Prof
所属大学: Durham University
所属学院: School of Biological and Biomedical Science
个人主页:
https://www.dur.ac.uk/biosciences/about/schoolstaff/academicstaff/?id=25
研究领域
Adult Hair Growth and Skin Wound Healing - Regeneration and the Production of In Vitro Skin Models and Skin Replacement Epithelial-Mesenchymal Interactions in the Development and Growth of Skin and Integumental Appendages Hair Follicle Mesenchymal Progenitor Cells Human Hair Follicle Induction: Application to Transplantation Technology Transdifferentiation of Epithelial Stem Cells
近期论文
Mardaryev, A.N., Liu, B., Rapisarda, V., Poterlowicz, K., Malashchuk, I., Rudolf, J., Sharov, A.A., Jahoda, C.A., Fessing, M.Y., Benitah, S.A., Xu, G.-L. & Botchkarev, V.A. (2016). Cbx4 maintains the epithelial lineage identity and cell proliferation in the developing stratified epithelium. The Journal of Cell Biology 212(1): 77-89. Jahoda, Colin & Gilmore, Adam (2016). What Lies Beneath: Wnt/β-Catenin Signaling and Cell Fate in the Lower Dermis. Journal of Investigative Dermatology 136(6): 1084-1087. Higgins, C.A., Chen, J.C., Cerise, J.E., Jahoda, C.A.B. & Christiano, A.M. (2013). Microenvironmental reprogramming by three-dimensional culture enables dermal papilla cells to induce de novo human hair-follicle growth. Proceedings of the National Academy of Sciences of the USA 110(49): 19679–19688. Higgins, CA, Westgate, GE & Jahoda, CA. (2011). Modulation in proteolytic activity is identified as a hallmark of exogen by transcriptional profiling of hair follicles. Journal of Investigative Dermatology 131: 2349-2357. Petukhova, L., Duvic, M. Hordinsky, M. Norris, D. Price, V. Shimomura, Y. Kim, H. Singh, P. Lee, A. Chen, W.V. Meyer, K.C. Paus, R. Jahoda, C.A., Amos, C.I. Gregersen, P.K. & Christiano, A.M. (2010). Genome-wide association study in alopecia areata implicates both innate and adaptive immunity. Nature 466(7302 ): 113-117. Higgins, Claire A., Westgate, Gillian E. & Jahoda, Colin A. B. (2009). From telogen to exogen: mechanisms underlying formation and subsequent loss of the hair club fiber. Journal of Investigative Dermatology 129: 2100-2108. Richardson, GD, Bazzi, H, Fantauzzo, KA, Waters, JM, Crawford, H, Hynd, P, Christiano, AM & Jahoda, CA (2009). KGF and EGF signalling block hair follicle induction and promote interfollicular epidermal fate in developing mouse skin. Development 136(13): 2153-2164. Wojciechowicz, K, Markiewicz, E & Jahoda CA (2008). C/EBPalpha identifies differentiating preadipocytes around hair follicles in foetal and neonatal rat and mouse skin. Experimental Dermatology 17(8): 675-680. Reynolds A.J. & Jahoda C.A.B. (2004). Cultured human and rat tooth papilla cells induce hair follicle regeneration and fiber growth. Differentiation 72(9-10): 566-575. Jahoda, CAB, Kljuic, A, O'Shaughnessy, R, Crossley, N, Whitehouse, CJ, Robinson, M, Reynolds, AJ, Demarchez, M, Porter, RM, Shapiro, L & Christiano, AM (2004). The lanceolate hair rat phenotype results from a missense mutation in a calcium coordinating site of the desmoglein 4 gene. Genomics 83(5): 747-756. Fliniaux I., Viallet J.P. Dhouailly D. & Jahoda C.A.B. (2004). Transformation of amnion epithelium into skin. Differentiation 72: 558-565. Kljuic, A, Bazzi, H, Sundberg, JP, Martinez-Mir, A, O'Shaughnessy, R, Mahoney, MG, Levy, M, Montagutelli, X, Ahmad, W, Aita, VM, Gordon, D, Uitto, J, Whiting, D, Ott, J, Fischer, S, Gilliam, TC, Jahoda, CAB, Morris, RJ, Panteleyev, AA, Nguyen, VT & Christiano, AM (2003). Desmoglein 4 in hair follicle differentiation and epidermal adhesion: Evidence from inherited hypotrichosis and acquired pemphigus vulgaris. Cell 113(2): 249-260. Jahoda, CAB, Whitehouse, CJ, Reynolds, AJ & Hole, N (2003). Hair follicle dermal cells differentiate into adipogenic and osteogenic lineages. Experimental Dermatology 12(6): 849-859. Gharzi, A., Reynolds A.J. & Jahoda, C.A.B. (2003). Plasticity of hair follicle dermal cells in wound healing and induction. Exp. Dermatol (12): 126-136. Whitehouse, C.J., Huckle, J.W. & Reynolds, A.J.and Jahoda C.A.B. (2002). Genes that are differentially expressed in rat vibrissa follicle germinative epithelium in vivo show altered expression patterns after extended organ culture. Exp. Dermatol (11): 542-555. Lako, M., Armstrong, L., Cairns, P.M., Harris, S., Hole, N. & Jahoda C.A.B. (2002). Hair follicle dermal cells repopulate the mouse haematopoietic system. Journal of Cell Science 115(20): 3967-3974. Busby, W., Cameron, N.R. & Jahoda, C.A.B. (2002). Tissue engineering matrixes by emulsion templating. Polymer international 51(10): 871-881. Jahoda, CAB & Reynolds, AJ (2001). Hair follicle dermal sheath cells: unsung participants in wound healing. Lancet 358(9291): 1445-1448. Robinson, M., Reynolds, A.J. , Gharzi, A. & Jahoda, C.A.B. (2001). In vivo induction of hair growth by dermal cells isolated from hair follicles after extended organ culture. Journal of Investigative Dermatology 117(3): 596-604. Jahoda, C.A.B., Oliver, R.F., Reynolds, A.J., Forrester, J.C., Gillespie, J.W., Cserhalmi-Friedman, P.B., Christiano, A.M. & Horne, K.A. (2001). Trans-species hair growth induction by human hair follicle dermal papillae. Exp. Dermatol 10(4): 229-237. Ferraris, C., Chevalier, G., Favier, B., Jahoda, C.A.B. & Dhouailly, D. (2000). Adult corneal epithelium basal cells possess the capacity to activate epidermal, pilosebaceous, and sweat gland genetic programs in response to embryonic dermal stimuli. Development (127): 5487-5495. Reynolds, A.J., Lawrence, C., Cserhalmi-Friedman, P.B., Christiano, A.M. & Jahoda C.A.B. (1999). Trans-gender induction of hair follicles. Nature (402): 33-34. Reynolds, A.J. & Jahoda, C.A.B. (1996). Hair matrix germinative epidermal cells confer follicle-inducing capabilities on dermal sheath and high passage papilla cells. Development (122): 3085-3094. Jahoda, C.A.B., Horne, K.A., Mauger, A., Bard, S. & Sengel, P. (1992). Cellular and extracellular involvement in the regeneration of the rat vibrissa follicle. Development (114): 887-897. Reynolds, A.J. & Jahoda, C.A.B. (1992). Cultured dermal papilla cells induce follicle formation and hair growth by transdifferentiation of an adult epidermis. Development (115): 587-593.