α‐MSH activates immediate defense responses to UV‐induced oxidative stress in human melanocytes
暂无分享,去创建一个
[1] Xuefeng Zhang,et al. Iron regulatory proteins increase neuronal vulnerability to hydrogen peroxide. , 2008, Biochemical and biophysical research communications.
[2] L. Marrot,et al. Skin DNA photodamage and its biological consequences. , 2008, Journal of the American Academy of Dermatology.
[3] D. Kusewitt,et al. Topical Treatment with OGG1 Enzyme Affects UVB‐induced Skin Carcinogenesis † , 2008, Photochemistry and photobiology.
[4] M. Berwick,et al. UV or Not UV: Metals Are The Answer , 2008, Cancer Epidemiology Biomarkers & Prevention.
[5] C. Ged,et al. Catalase overexpression reduces UVB-induced apoptosis in a human xeroderma pigmentosum reconstructed epidermis , 2008, Cancer Gene Therapy.
[6] E. Flori,et al. Correlation between melanogenic and catalase activity in in vitro human melanocytes: a synergic strategy against oxidative stress , 2007, Pigment cell & melanoma research.
[7] I. Fridovich,et al. The effects of superoxide dismutase on H2O2 formation. , 2007, Free radical biology & medicine.
[8] Shu-zheng Liu,et al. UVB induced oxidative stress in human keratinocytes and protective effect of antioxidant agents , 2007, Radiation and environmental biophysics.
[9] C. Ged,et al. Protection of normal human reconstructed epidermis from UV by catalase overexpression , 2007, Cancer Gene Therapy.
[10] D. Pinkel,et al. MC1R germline variants confer risk for BRAF-mutant melanoma. , 2006, Science.
[11] E. Flori,et al. UVA-induced modification of catalase charge properties in the epidermis is correlated with the skin phototype. , 2006, The Journal of investigative dermatology.
[12] G. Babcock,et al. alpha-Melanocortin and endothelin-1 activate antiapoptotic pathways and reduce DNA damage in human melanocytes. , 2005, Cancer research.
[13] A. Nappi,et al. Production and utilization of hydrogen peroxide associated with melanogenesis and tyrosinase‐mediated oxidations of DOPA and dopamine , 2005, The FEBS journal.
[14] L. Giovannelli,et al. Increased oxidative DNA damage in mononuclear leukocytes in vitiligo. , 2004, Mutation research.
[15] S. Toyokuni,et al. Role of reactive oxygen species in skin carcinogenesis. , 2004, Antioxidants & redox signaling.
[16] Daniel J. Gould,et al. N-acetyl-L-cysteine prevents DNA damage induced by UVA, UVB and visible radiation in human fibroblasts. , 2003, Journal of photochemistry and photobiology. B, Biology.
[17] P. Arosio,et al. Ferritin, iron homeostasis, and oxidative damage. , 2002, Free radical biology & medicine.
[18] H. Gali-Muhtasib,et al. Protective effect of vitamin E on ultraviolet B light–induced damage in keratinocytes , 2002, Molecular carcinogenesis.
[19] G. Barsh,et al. The melanocortin 1 receptor is the principal mediator of the effects of agouti signaling protein on mammalian melanocytes. , 2001, Journal of cell science.
[20] D. Lean,et al. Ultraviolet-B Radiation Effects on Antioxidant Status and Survival in the Zebrafish, Brachydanio rerio¶ , 2000, Photochemistry and photobiology.
[21] F. Sánchez-Jiménez,et al. Role of reactive oxygen species in apoptosis: implications for cancer therapy. , 2000, The international journal of biochemistry & cell biology.
[22] M. Picardo,et al. Correlation between antioxidants and phototypes in melanocytes cultures. A possible link of physiologic and pathologic relevance. , 1999, The Journal of investigative dermatology.
[23] K. Davies. The Broad Spectrum of Responses to Oxidants in Proliferating Cells: A New Paradigm for Oxidative Stress , 1999, IUBMB Life - A Journal of the International Union of Biochemistry and Molecular Biology.
[24] S. Toyokuni,et al. High incidence of allelic loss on chromosome 5 and inactivation of p15INK4B and p16INK4A tumor suppressor genes in oxystress-induced renal cell carcinoma of rats , 1999, Oncogene.
[25] M. Picardo,et al. Chimeric human epidermal reconstructs to study the role of melanocytes and keratinocytes in pigmentation and photoprotection. , 1998, The Journal of investigative dermatology.
[26] G. Babcock,et al. Activation of the cyclic AMP pathway by alpha-melanotropin mediates the response of human melanocytes to ultraviolet B radiation. , 1998, Cancer research.
[27] K. Scharffetter-Kochanek,et al. UV-induced reactive oxygen species in photocarcinogenesis and photoaging. , 1997, Biological chemistry.
[28] G. Barsh,et al. Agouti signaling protein inhibits melanogenesis and the response of human melanocytes to alpha-melanotropin. , 1997, The Journal of investigative dermatology.
[29] C. McNeil,et al. Activation of tyrosinase reduces the cytotoxic effects of the superoxide anion in B16 mouse melanoma cells. , 1996, Pigment cell research.
[30] M. Kulesz-Martin,et al. DNA damage in UVB-irradiated keratinocytes. , 1995, Carcinogenesis.
[31] R. Tyrrell,et al. UVA radiation-induced oxidative damage to lipids and proteins in vitro and in human skin fibroblasts is dependent on iron and singlet oxygen. , 1995, Free radical biology & medicine.
[32] S. Boyce,et al. Mitogenic and melanogenic stimulation of normal human melanocytes by melanotropic peptides. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[33] J. Mordoh,et al. Role of melanin as a scavenger of active oxygen species. , 1993, Pigment cell research.
[34] L. Loeb,et al. 8-Hydroxyguanine, an abundant form of oxidative DNA damage, causes G----T and A----C substitutions. , 1992, The Journal of biological chemistry.
[35] A. Grollman,et al. Insertion of specific bases during DNA synthesis past the oxidation-damaged base 8-oxodG , 1991, Nature.