Suppressed alloantigen presentation, increased TNF-alpha, IL-1, IL-1Ra, IL-10, and modulation of TNF-R in UV-irradiated human skin.
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S L Walker | S. Walker | M. Greaves | R M Barr | W Tsang | G I Harrison | P Ettehadi | M W Greaves | A R Young | S. L. Walker | R. Barr | W. Tsang | G. Harrison | P. Ettehadi | A. Young | Susan L. Walker | Robert M. Barr | Wailin Tsang | Malcolm W. Greaves | Antony R. Young | G. I. Harrison
[1] R. Eady,et al. A new method for recovery of exudates from normal and inflamed human skin * , 1977, Clinical and experimental dermatology.
[2] G. Toews,et al. Epidermal Langerhans cell density determines whether contact hypersensitivity or unresponsiveness follows skin painting with DNFB. , 1980, Journal of immunology.
[3] K. Cooper,et al. Effects of ultraviolet radiation on human epidermal cell alloantigen presentation: initial depression of Langerhans cell-dependent function is followed by the appearance of T6- Dr+ cells that enhance epidermal alloantigen presentation. , 1985, Journal of immunology.
[4] O. Baadsgaard,et al. Human epidermal cells from ultraviolet light-exposed skin preferentially activate autoreactive CD4+2H4+ suppressor-inducer lymphocytes and CD8+ suppressor/cytotoxic lymphocytes. , 1988, Journal of immunology.
[5] G. Murphy,et al. Local increase in interleukin-1-like activity following UVB irradiation of human skin in vivo. , 1989, Photo-dermatology.
[6] P. Cruz,et al. Disparate effects of in vitro low-dose UVB irradiation on intravenous immunization with purified epidermal cell subpopulations for the induction of contact hypersensitivity. , 1989, The Journal of investigative dermatology.
[7] R. Thompson,et al. Biological properties of recombinant human monocyte-derived interleukin 1 receptor antagonist. , 1990, The Journal of clinical investigation.
[8] T. Luger,et al. Human keratinocytes are a source for tumor necrosis factor alpha: evidence for synthesis and release upon stimulation with endotoxin or ultraviolet light , 1990, The Journal of experimental medicine.
[9] J. Simon,et al. Ultraviolet B radiation converts Langerhans cells from immunogenic to tolerogenic antigen-presenting cells. Induction of specific clonal anergy in CD4+ T helper 1 cells. , 1991, Journal of immunology.
[10] Y. Vodovotz,et al. Macrophage deactivation by interleukin 10 , 1991, The Journal of experimental medicine.
[11] D. Dripps,et al. Interleukin-1 (IL-1) receptor antagonist binds to the 80-kDa IL-1 receptor but does not initiate IL-1 signal transduction. , 1991, The Journal of biological chemistry.
[12] F. Gudat,et al. Tumour necrosis factor receptor distribution in human lymphoid tissue. , 1991, Immunology.
[13] D. Wallach,et al. Stabilization of the bioactivity of tumor necrosis factor by its soluble receptors , 1992, The Journal of experimental medicine.
[14] S. Ullrich,et al. Systemic suppression of delayed-type hypersensitivity by supernatants from UV-irradiated keratinocytes. An essential role for keratinocyte-derived IL-10. , 1992, Journal of immunology.
[15] A. Enk,et al. Inhibition of Langerhans cell antigen-presenting function by IL-10. A role for IL-10 in induction of tolerance. , 1993, Journal of immunology.
[16] T. Luger,et al. The 55-kD tumor necrosis factor receptor on human keratinocytes is regulated by tumor necrosis factor-alpha and by ultraviolet B radiation. , 1993, The Journal of clinical investigation.
[17] A. Enk,et al. An essential role for Langerhans cell-derived IL-1 beta in the initiation of primary immune responses in skin. , 1993, Journal of immunology.
[18] W. Arend,et al. Tumor necrosis factor-α induces interleukin-1α and interleukin-1 receptor antagonist production by cultured human keratinocytes , 1993 .
[19] J. Taylor,et al. Immune surveillance and sunlight-induced skin cancer. , 1994, Immunology today.
[20] G. Trinchieri,et al. IL-12 is expressed and released by human keratinocytes and epidermoid carcinoma cell lines. , 1994, Journal of immunology.
[21] K. Cooper,et al. CD11b+ macrophages that infiltrate human epidermis after in vivo ultraviolet exposure potently produce IL-10 and represent the major secretory source of epidermal IL-10 protein. , 1994, Journal of immunology.
[22] J. Streilein,et al. Characterization of the immunogenetic basis of ultraviolet-B light effects on contact hypersensitivity induction. , 1994, Immunology.
[23] J. Streilein,et al. Evidence that ultraviolet B radiation induces tolerance and impairs induction of contact hypersensitivity by different mechanisms. , 1994, Immunology.
[24] A. Enk,et al. Induction of hapten-specific tolerance by interleukin 10 in vivo , 1994, The Journal of experimental medicine.
[25] D. Sredni,et al. Induction of IL-10 gene expression in human keratinocytes by UVB exposure in vivo and in vitro. , 1995, Journal of immunology.
[26] K. Cooper,et al. In human dermis, ultraviolet radiation induces expansion of a CD36+ CD11b+ CD1- macrophage subset by infiltration and proliferation; CD1+ Langerhans-like dendritic antigen-presenting cells are concomitantly depleted. , 1995, The Journal of investigative dermatology.
[27] S. Ullrich,et al. Modulation of immunity by ultraviolet radiation: key effects on antigen presentation. , 1995, The Journal of investigative dermatology.
[28] J. Krutmann,et al. Interleukin-10 production by cultured human keratinocytes: regulation by ultraviolet B and ultraviolet A1 radiation. , 1995, The Journal of investigative dermatology.
[29] D. Macdonald,et al. Tumour necrosis factor alpha is pro‐inflammatory in normal human skin and modulates cutaneous adhesion molecule expression , 1995, The British journal of dermatology.
[30] L. Walsh. Ultraviolet B irradiation of skin induces mast cell degranulation and release of tumour necrosis factor‐α , 1995, Immunology and cell biology.
[31] L. Owen-Schaub,et al. Effect of IL-12 on immune suppression and suppressor cell induction by ultraviolet radiation. , 1995, Journal of immunology.
[32] J. Steer,et al. IL-4, IL-10 and IFN-gamma have distinct, but interacting, effects on differentiation-induced changes in TNF-alpha and TNF receptor release by cultured human monocytes. , 1996, Cytokine.
[33] C. Potten,et al. The in situ repair kinetics of epidermal thymine dimers and 6-4 photoproducts in human skin types I and II. , 1996, The Journal of investigative dermatology.
[34] J. Hunter,et al. Lack of induction of IL-10 expression in human keratinocytes. , 1996, The Journal of investigative dermatology.
[35] K. Rajewsky,et al. Impaired immunosuppressive response to ultraviolet radiation in interleukin-10-deficient mice. , 1996, The Journal of investigative dermatology.
[36] T. Hirao,et al. Elevation of interleukin 1 receptor antagonist in the stratum corneum of sun-exposed and ultraviolet B-irradiated human skin. , 1996, The Journal of investigative dermatology.
[37] T. Mak,et al. Tumour necrosis factor receptor II (p75) signalling is required for the migration of Langerhans' cells , 1996, Immunology.
[38] N. Duraiswamy,et al. Temporal correlation between UV radiation locally-inducible tolerance and the sequential appearance of dermal, then epidermal, class II MHC+CD11b+ monocytic/macrophagic cells. , 1996, The Journal of investigative dermatology.
[39] A. Blauvelt,et al. UVB Induces IL‐12 Transcription in Human Keratinocytes in vivo and in vitro , 1996, Photochemistry and photobiology.
[40] B. Beutler,et al. The tumor necrosis factor ligand and receptor families. , 1996, The New England journal of medicine.
[41] R. de Waal Malefyt,et al. In contrast to their murine counterparts, normal human keratinocytes and human epidermoid cell lines A431 and HaCaT fail to express IL‐10 mRNA and protein , 1997, Clinical and experimental immunology.
[42] G. Trinchieri. Function and clinical use of interleukin‐12 , 1997, Current opinion in hematology.
[43] I. Kimber,et al. Interleukin 1β and the stimulation of Langerhans cell migration: comparisons with tumour necrosis factor α , 1997, Archives of Dermatological Research.
[44] L. Rhodes,et al. TNF-alpha and IL-8 are upregulated in the epidermis of normal human skin after UVB exposure: correlation with neutrophil accumulation and E-selectin expression. , 1997, The Journal of investigative dermatology.
[45] C. Potten,et al. The similarity of action spectra for thymine dimers in human epidermis and erythema suggests that DNA is the chromophore for erythema. , 1998, The Journal of investigative dermatology.
[46] B. Gilchrest,et al. Post-Transcriptional Regulation of UV Induced TNF-α Expression , 1998 .