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Angel, P., Rahmsdorf, H. J., P\232ting, A., Lucke-Huhle, C. and Herrlich, P (1985). 12-0-Tetradecanoylphorbol-13-acetate (TPA)-induced gene sequences in human primary diploid fibroblasts and their expression in SV40-transformed fibroblasts. J. Cell. Biochem 29, 351-360.[Medline]

Angel, P., Imagawa, M., Chiu, R., Stein, B., Imbra, R. J., Rahmsdorf, H. J., Jonat, C., Herrlich, P. and Karin, M (1987). Phorbol ester-inducible genes contain a common cis element recognized by a TPA-modulated trans-acting factor. Cell 49, 729-739.[Medline]

Bayreuther, K., Francz, P. I. and Rodemann, H. P (1992). Fibroblasts in normal and pathological terminal differentiation, aging, apoptosis and transformation. Arch. Geront. Geriatr. Suppl 3, 47-74.

Brenneisen, P., Oh, J., Wlaschek, M., Wenk, J., Briviba, K., Hommel, C., Herrmann, G., Sies, H. and Scharffetter-Kochanek, K (1996). UVB-wavelength dependence for the regulation of two major matrix-metalloproteinases and their inhibitor TIMP-1 in dermal human fibroblasts. Photochem. Photobiol 64, 649-657.[Medline]

Brenneisen, P., Briviba, K., Wlaschek, M., Wenk, J. and Scharffetter-Kochanek, K (1997). Hydrogen peroxide (H2O2) increases the steady-state mRNA levels of collagenase/MMP-1 in human dermal fibroblasts. Free Radic. Biol. Med 22, 515-524.[Medline]

Campisi, J (1996). Replicative senescence: An old lives tale?. Cell 84, 497-500.[Medline]

Carlson, S. G., Fawcett, T. W., Bartlett, J. D., Bernier, M. and Holbrook, N. J (1993). Regulation of the C/EBP-related gene gadd153 by glucose deprivation. Mol. Cell. Biol 13, 4736-4744.[Abstract/Free Full Text]

Ceballos, J., Nicole, A., Braind, P., Grimbler, G., Delacoute, A., Flament, S., Blouin, J. L., Thevenin, M., Klamoun, P. and Sinet, P. M (1991). Expression of human Cu-Zn superoxide dismutase gene in transgenic mice; model for gene dosage effect in Down syndrome. Free Radic. Res. Commun 12, 581-589.

Chen, Q., Fischer, A., Reagan, J. D., Yan, L.-J. and Ames, B. N (1995). Oxidative DNA damage and senescence of human diploid fibroblast cells. Proc. Nat. Acad. Sci. USA 92, 4337-4341.[Abstract/Free Full Text]

Cristofalo, V. J. and Pignolo, R. J (1993). Replicative senescence of human fibroblast-like cells in culture. Physiol. Rev 73, 617-638.[Abstract/Free Full Text]

Cristofalo, V. J. and Pignolo, R. J (1996). Molecular markers of senescence in fibroblast-like cultures. Exp. Gerontol 31, 111-123.[Medline]

de Haan, J. B., Christiano, F., Iannello, R. C., Bladier, C., Kelner, M. J. and Kola, I (1996). Elevation in the ratio of Cu/Zn \320 superoxide dismutase to glutathione peroxidase activity induces features of cellular senescence and this effect is mediated by hydrogen peroxide. Hum. Mol. Genet 5, 283-292.[Abstract/Free Full Text]

Dimri, G. P., Lee, X., Basile, G., Acosta, M., Scott, G., Roskelley, C., Medrano, E. E., Linskens, M., Rubelj, I., Pereira-Smith, O., Peacocke, M. and Campisi, J (1995). A biomarker that identifies senescent human cells in culture and in aging skin in vivo. Proc. Nat. Acad. Sci. USA 92, 9363-9367.[Abstract/Free Full Text]

Fleischmajer, R., Perlish, J. S., Krieg, T. and Timpl, R (1981). Variability in collagen and fibronectin synthesis by scleroderma fibroblasts in primary culture. J. Invest. Dermatol 76, 400-403.[Medline]

Goldstein, S (1990). The human fibroblast comes of age. Science 249, 1129-1133.[Abstract/Free Full Text]

Green, L. M., Reade, J. L. and Ware, C. F (1984). Rapid colorimetric assay for cell viability: application to the quantitation of cytotoxic and growth inhibitory kines. J. Immunol. Meth 70, 257-268.[Medline]

Griffith, O. W (1982). Mechanism of action, metabolism and toxicity of buthionine sulfoximine and its higher analogs, potent inhibitors of glutathione synthesis. J. Biol. Chem 257, 2704-3712.

Harman, D (1956). Aging: a theory based on free radical and radiation chemistry. J. Gerontol 11, 298-300.[Medline]

Harman, D (1992). Free radical theory of aging. Mutat. Res 275, 257-266.[Medline]

Hayflick, L (1964). The limited in vitro lifetime of human diploid cell strains. Exp. Cell. Res 37, 614-636.

Heikkila, R. E., Cabbat, F. S. and Cohen, G (1976). In vivo inhibition of superoxide dismutase in mice by diethyldithiocarbamate. J. Biol. Chem 251, 2182-2185.[Abstract/Free Full Text]

Herrmann, G., Wlaschek, M., Lange, T. S., Prenzel, K., Goerz, G. and Scharffetter-Kochanek, K (1993). UVA irradiation stimulates the synthesis of various matrix-metalloproteinases (MMPs) in cultured human fibroblasts. Exp. Dermatol 2, 92-97.[Medline]

Herrmann, G., Wlaschek, M., Bolsen, K., Prenzel, K., Goerz, G. and Scharffetter-Kochanek, K (1996). Pathogenic implication of matrix-metalloproteinases (MMPs) and their counteracting inhibitor TIMP-1 in the photodamage of human porphyria cutanea tarda (PCT). J. Invest. Dermatol 107, 398-403.[Medline]

Jacobson-Kram, D., Roe, J. L., Williams, J. R., Gange, R. W. and Parrish, J. A (1982). Decreased in-vitro lifespan of fibroblasts derived from skin exposed to photochemotherapy in vivo. Lancet 18, 1399-1400.

Joshi, P. C. and Pathak, M. A (1983). Production of singlet oxygen and superoxide radicals by psoralens and their biological significance. Biochem. Biophys. Res. Commun 29, 638-646.

Keberle, H (1964). The biochemistry of desferrioxamine and its relation to iron metabolism. Ann. NY Acad. Sci 119, 758-768.

Kerscher, M., Volkenandt, M., Meurer, M., Lehmann, P., Plewig, G. and R\232cken, M (1994). Treatment of localized scleroderma with PUVA bath chemotherapy. Lancet 343, 1233-.[Medline]

Kligman, A. M (1969). Early destructive effect of sunlight on human skin. J. Am. Med. Assoc 210, 2377-2380.

Krieg, T., Hein, R., Mauch, C. and Aumailley, M (1988). Molecular and clinical aspects of connective tissue. Eur. J. Clin. Invest 18, 105-123.[Medline]

Lautier, D., Luscher, P. and Tyrell, R. M (1992). Endogenous glutathione levels modulate both constitutive and UVA radiation/hydrogen peroxide inducible expression of the human heme oxygenase gene. Carcinogenesis 13, 227-232.[Abstract/Free Full Text]

Leevers, S. J. and Marshall, C. J (1992). Activation of extracallular signal-regulated kinase, ERK2, by p21ras oncoprotein. EMBO J 11, 569-574.[Medline]

Margoliash, E., Novogrodsky, A. and Schejter, A (1960). Irreversible reaction of 3-amino-1, 2, 4-triazole and related inhibitors with the protein of catalase. Biochem. J 74, 339-348.[Medline]

Michiels, C. and Remacle, J (1988). Use of the inhibition of enzymatic antioxidant systems to evaluate their physiological importance. Eur. J. Biochem 177, 435-441.[Medline]

Millis, A. J. T., Hoyle, M., McCue, H. M. and Martini, H (1992). Differential expression of metalloproteinase and tissue inhibitor of metalloproteinase genes in aged human fibroblasts. Exp. Cell Res 201, 373-379.[Medline]

Moriwaki, S. I., Ray, S., Tarone, R. E., Kraemer K. H. and Grossman, L (1996). The effects of aging on the processing of UV-damaged DNA in human cells: reduced DNA repair capacity and increased DNA mutability. Mutat. Res 364, 117-123.[Medline]

Mutzhas, M. F., H\232lzle, E., Hofmann, C. and Plewig, G (1981). A new apparatus with high radiation energy between 320-460 nm: physical description and dermatological applications. J. Invest. Dermatol 76, 42-47.[Medline]

Noda, A., Ning, Y., Venable, S. F., Pereira-Smith, O. M and Smith, J. R (1994). Cloning of senescent cells derived inhibitors of DNA synthesis using an expression screen. Exp Cell Res 211, 90-98.[Medline]

Oikarinen, A., Karvonen, J., Uitto, J. and Hannuksela, M (1985). Connective tissue alterations in skin exposed to natural and therapeutic UV-radiation. Photodermatology 2, 15-26.

Oikarinen, A (1990). The aging of skin: chronoaging versus photoaging. Photodermatol. Photoimmunol. Photomed 7, 3-4.[Medline]

Olack, G. A., Gattolin, P. and Gasparro, F. P (1993). Improved HPLC analysis of 8-methoxypsoralen monoadducts and crosslinks in polynucleotide, DNA and cellular systems: analysis of split dose protocols. Photochem. Photobiol 57, 941-949.[Medline]

Orr, W. C. and Sohal, R. S (1994). Extension of life-span by overexpression of superoxide dismutase and catalase in Drosophila melanogaster. Science 263, 1128-1130.[Abstract/Free Full Text]

Pathak, M. A (1982). Molecular aspects of drug photosensitivity with special emphasis on psoralen photosensitization reaction. J. Nat. Cancer Inst 69, 163-170.

Pathak, M. A. and Joshi, P. C (1983). The nature and molecular basis of cutaneous photosensitivity reactions to psoralens and coal tar. J. Invest. Dermatol 80, 66-.[Medline]

Petersen, M. J., Hansen, C. and Craig, S (1992). Ultraviolet A irradiation stimulates collagenase production in cultured human fibroblasts. J. Invest. Dermatol 99, 440-444.[Medline]

Rattan, S. J (1989). DNA damage and repair during cellular aging. Int. Rev. Cytol 116, 47-88.[Medline]

Remacle, J., Raes, M., Toussaint, O., Renard, P. and Rao, G (1995). Low levels of reactive oxygen species as modulators of cell function. Mutat. Res 316, 103-122.[Medline]

Richter, C (1995). Oxidative damage to mitochondrial DNA and its relationship to aging. Int. J. Biochem. Cell Biol 27, 647-653.[Medline]

Russo, T., Zambrano, N., Esposito, F., Ammendola R., Cimino, F., Fiscella, M., Jackman, J., O'Connor, P. M., Anderson, C. W. and Appella, E (1995). A p53-independent pathway for activation of WAF1/CIP1 expression following oxidative stress. J. Biol. Chem 270, 29386-29391.[Abstract/Free Full Text]

Scharffetter, K., Lankat-Buttgereit, B. and Krieg, T (1988). Localization of collagen mRNA in normal and scleroderma skin. Eur. J. Clin. Invest 18, 9-17.[Medline]

Scharffetter, K., Wlaschek, M., Hogg, A., Bolsen, K., Schothorst, A., Goerz, G., Krieg, T. and Plewig, G (1991). UVA irradiation induces collagenase in human dermal fibroblasts in vitro and in vivo. Arch. Dermatol. Res 283, 506-511.[Medline]

Scharffetter-Kochanek, K., Goldermann, R., Lehmann, P., H\232lzle, E. and Goerz, G (1995). PUVA therapy in disasbling pansclerotic morphoea of children. Br. J. Dermatol 132, 830-831.[Medline]

Schmitt, I. M., Chimenti, S. and Gasparro, F. P (1995). Psoralen-protein photochemistry \320 a forgotten field. J. Photochem. Photobiol. B: Biol 27, 101-107.[Medline]

Schwartz, E., Cruickshank, F. A., Christensen, C. C., Perlish, I. S. and Lebwohl, M (1993). Collagen alterations in chronically sun-damaged human skin. Photochem. Photobiol 58, 841-844.[Medline]

Setlow, R. B (1982). DNA repair, aging, and cancer. Nat. Cancer Inst. Monogr 60, 249-255.

Sirum, K. L. and Brinckerhoff, C. E (1989). Cloning the genes for human stromelysin and stromelysin 2: differential expression in rheumatoid synovial fibroblasts. Biochemistry 28, 8691-8698.[Medline]

Smith, J. R. and Pereira-Smith, O. M (1996). Replicative senescence: implications for in vivo aging and tumor suppression. Science 273, 63-67.[Abstract]

Smith, L. M. and Fornace, Jr, A. J (1996). Memmalian DNA damage-inducible genes associated with growth arrest and apoptosis. Mutat. Res 340, 109-124.[Medline]

Uitto, J (1986). Connective tissue biochemistry of the aging dermis. Age related alterations in collagen and elastin. Dermatol. Clin 4, 433-446.[Medline]

West, M. D., Pereira-Smith, O. M. and Smith, J. R (1989). Replicative senescence of human skin fibroblasts correlates with a loss of regulation and overexpression of collagenase activity. Exp. Cell. Res 184, 138-147.[Medline]

Willard, H. F., Durfy, S. J., Mahtani, M. M., Dorkins, H., Davies, K. E. and Williams, B. R. G (1989). Regional localization of the TIMP gene on the human X chromosome. Extension of a conserved syntey and linkage group on proximal Xp. Hum. Genet 81, 234-238.[Medline]

Wlaschek, M., Bolsen, K., Herrmann, G., Schwarz, A., Wilmroth, F., Heinrich, P. C., Goerz, G. and Scharffetter-Kochanek, K (1993). UVA-induced autocrine stimulation of fibroblast-derived collagenase by IL-6. A possible mechanism in dermal photodamage?. J. Invest. Dermatol 101, 164-168.[Medline]

Wlaschek, M., Heinen, G., Poswig, A., Schwarz, A., Krieg, T. and Scharffetter-Kochanek, K (1994). UVA-induced autocrine stimulation of fibroblast derived collagenase/MMP-1 by interrelated loops of interleukin-1 and interleukin-6. Photochem. Photobiol 59, 550-556.[Medline]

Wlaschek, M., Briviba, K., Stricklin, G. P., Sies, H. and Scharffetter-Kochanek, K (1995). Singlet oxygen may mediate the ultraviolet A-induced synthesis of interstitial collagenase. J. Invest. Dermatol 104, 194-198.[Medline]




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