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[1] Biossy RE. The melanocyte:its structure, finction, and subpopulations in skin, eyes, and hair. Dermatol Clin, 1988,6(2):161-173. [2] Tobin DJ, Bystryn JC. Different populations of melanocytes are present in hair follicles and epidermis. Pigment Cell Res, 1996,9(6):304-310. [3] Arrunategui A, Arroyo C, Garcia L, et al. Melanocyte reservoir in vitiligo. Int J Dermatol, 1994,33(7):484-487. [4] Cui J, Shen L, Wang G. Role of the hair follicles in the repigmentation of vitiligo. J Invest Dermatol, 1991,97(3):410-416. [5] Horikawa T, Norris DA, Tchnson TW, et al. DOPA-negative melanocytes in the outer root sheath of human hair follicles express premelanosomal antigens but not a melanosomal antigen or the melanosome-associated glycoprotein tyrosinase, TRP-1, and TRP-2. J Invest Dermatol, 1996, 106(11):28-35. [6] Jones GE. Human cell culture protocols. 1st ed, New Jersey:Human Press, 1996:13-14. [7] Tobin DJ, Colen SR, Bystryn JC. Isolation and long-term culture of human hair follicle melanocytes. J Invest Dermatol, 1995,104(1):86-89. [8] Krasagakis K, Garbe C, Kruger-Krasagakes S, et al. 12-O-tetradecanoylphorbol-13-acetate not only modulates proliferation rates, but also alters antigen expression and LAK-cell susceptibility of uormal human melanocytes in vitro. J Invest Dermatol, 1993,100(5):653-659. [9] Krasagakis K, Garbe C, Eberle J, et al. Tumor necrosis factors and several interleukins inhibit the growth and modulate the antigen expression of normal human melanocytes in votro. Arch Dermatol Res, 1995,287(3-4):259-265. [10] Jimbow K, Lee SK, King MG, et al. Melanin pigments and melanosomal proteins as differentiation markers unique to normal and neoplastic melanocytes. J Invest Dermatol, 1993,100:S259-S268. [11] Le Poole IC, van den Wijngaard RM, Westerhof W, et al. Presence or absence of melanocytes in vitiligo lesions:an immunohistochemical investigation. J Invest Dermatol, 1993, 100(6):816-822. [12] Adema GJ, Bakker AB. pMell7 is recognized by monoclonal antibodies NK1/beteb HMB-45 and HMB-50 and by anti-melanoma CTL. Br J Cancer, 1996,73(9):1044-1048. [13] Agrawal K, Agrawal A. Vitiligo:surgical repigmentazion of leukotrichia.Dermatol Surg, 1995,21(8):711-715. [14] Arrunategui A, Arroyo C, Garcia L, et al. Melanocyte reservoir in vitiligo. Int J Dermatol, 1994,33(7):484-487. [15] Neitmann M, Alexander M, Brinckmann J, et al. Attachment and chemotaxis of melanocytes after ultraviolet irradiation in vitro. Br J Dermatol,1999,141(5):794-801. [16] Scott GA, Liang H, Cassidy L. Develepmental regulation of focal contact protein expression in human melanocytes. Pigment Cell Res, 1995,8(4):221-228. [17] Scott GA, Cassidy L, Tran H, et al. Melanocytes adhere to and synthesize laminin-5 in vitro. Exp Dermatol, 1999,8(3):212-221. [18] Gerald K. Cell and molecular biology. 1st ed, London:John Wiley & Sons Inc, 1996:337-403. [19] Morelli JG, Yohn JJ, Zekman T, et al. Melanocyte movement in vitro:role of matrix proteins and integrin receptors. J Invest Dermatol, 1993,101(4):605-608. [20] Shinichi S,Takeichi M, Neural crest emigration from the neural tube depends on regulated cadherin expression. Development, 1998, 125(15):2963-2971. [21] Horikawa T, Norris DA, Yohn JJ, et al. Melanocyte mitogen induces both melanocyte chemokinesis and chemotaxis. J Invest Dermatol, 1995, 104(2):256-259. [22] Morelli JG, Kin cannon J, Yohn JJ, et al. Leukotrien C4 and TGF-alpha are stimulators of human melanocyte migration in vitro. J Invest Dermatol,1992,98(3):290-295. |
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