999 resultados para LANGERHANS CELLS
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Until now it was thought that the retrovirus mouse mammary tumor virus preferentially infects B cells, which thereafter proliferate and differentiate due to superantigen-mediated T cell help. We describe in this study that dendritic cells are infectable at levels comparable to B cells in the first days after virus injection. Moreover, IgM knockout mice have chronically deleted superantigen-reactive T cells after MMTV injection, indicating that superantigen presentation by dendritic cells is sufficient for T cell deletion. In both subsets initially only few cells were infected, but there was an exponential increase in numbers of infected B cells due to superantigen-mediated T cell help, explaining that at the peak of the response infection is almost exclusively found in B cells. The level of infection in vivo was below 1 in 1000 dendritic cells or B cells. Infection levels in freshly isolated dendritic cells from spleen, Langerhans cells from skin, or bone marrow-derived dendritic cells were compared in an in vitro infection assay. Immature dendritic cells such as Langerhans cells or bone marrow-derived dendritic cells were infected 10- to 30-fold more efficiently than mature splenic dendritic cells. Bone marrow-derived dendritic cells carrying an endogenous mouse mammary tumor virus superantigen were highly efficient at inducing a superantigen response in vivo. These results highlight the importance of professional APC and efficient T cell priming for the establishment of a persistent infection by mouse mammary tumor virus.
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Langerhans cell histiocytosis (LCH) is a rare disease caused by the clonal accumulation of dendritic Langerhans cells, which is often accompanied by osteolytic lesions. It has been reported that osteoclast-like cells play a major role in the pathogenic bone destruction seen in patients with LCH and these cells are postulated to originate from the fusion of DCs. However, due to the lack of reliable animal models the pathogenesis of LCH is still poorly understood. In this study, we have established a mouse model of histiocytosis- recapitulating human disease for osteolytic lesions seen in LCH patients. At 12 weeks after birth, severe bone lesions were observed in our multisystem histiocytosis (Mushi) model, when CD8α conventional dendritic cells (DCs) are transformed (MuTuDC) and accumulate. Most importantly, our study demonstrates that bone loss in LCH can be accounted for the transdifferentiation of MuTuDCs into functional osteoclasts both in vivo and in vitro. Moreover, we have shown that injected MuTuDCs reverse the osteopetrotic phenotype of oc/oc mice in vivo. In conclusion, our results support a crucial role of DCs in bone lesions in histiocytosis patients. Furthermore, our new model of LCH based on adoptive transfer of MuTuDC lines, leading to bone lesions within 1-2 weeks, will be an important tool for investigating the pathophysiology of this disease and ultimately for evaluating the potential of anti-resorptive drugs for the treatment of bone lesions.
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The presence of resident Langerhans cells (LCs) in the epidermis makes the skin an attractive target for DNA vaccination. However, reliable animal models for cutaneous vaccination studies are limited. We demonstrate an ex vivo human skin model for cutaneous DNA vaccination which can potentially bridge the gap between pre-clinical in vivo animal models and clinical studies. Cutaneous transgene expression was utilised to demonstrate epidermal tissue viability in culture. LC response to the culture environment was monitored by immunohistochemistry. Full-thickness and split-thickness skin remained genetically viable in culture for at least 72 h in both phosphate-buffered saline (PBS) and full organ culture medium (OCM). The epidermis of explants cultured in OCM remained morphologically intact throughout the culture duration. LCs in full-thickness skin exhibited a delayed response (reduction in cell number and increase in cell size) to the culture conditions compared with split-thickness skin, whose response was immediate. In conclusion, excised human skin can be cultured for a minimum of 72 h for analysis of gene expression and immune cell activation. However, the use of split-thickness skin for vaccine formulation studies may not be appropriate because of the nature of the activation. Full-thickness skin explants are a more suitable model to assess cutaneous vaccination ex vivo.
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Introduction Antigen-presenting cells, like dendritic cells (DCs) and macrophages, play a significant role in the induction of an immune response and an imbalance in the proportion of macrophages, immature and mature DCs within the tumor could affect significantly the immune response to cancer. DCs and macrophages can differentiate from monocytes, depending on the milieu, where cytokines, like interleukin (IL)-4 and granulocyte-macrophage colony-stimulating factor (GM-CSF) induce DC differentiation and tumor necrosis factor (TNF)-alpha induce DC maturation. Thus, the aim of this work was to analyze by immunohistochemistry the presence of DCs (S100+ or CD1a+), macrophages (CD68+), IL-4 and TNF-alpha within the microenvironment of primary lung carcinomas. Results Higher frequencies of both immature DCs and macrophages were detected in the tumor-affected lung, when compared to the non-affected lung. Also, TNF-alpha-positive cells were more frequent, while IL-4-positive cells were less frequent in neoplastic tissues. This decreased frequency of mature DCs within the tumor was further confirmed by the lower frequency of CD14-CD80+ cells in cell suspensions obtained from the same lung tissues analyzed by flow cytometry. Conclusion These data are discussed and interpreted as the result of an environment that does not oppose monocyte differentiation into DCs, but that could impair DC maturation, thus affecting the induction of effective immune responses against the tumor.
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The Human Papillomavirus (HPV) has been strongly implicated on development of some cases of oral squamous cell carcinoma (OSCC). However, the immunological system somehow reacts against the presence of this virus. Among the cells involved on such mechanism of defense detaches the Langerhans cells (LC), which are responsible for processing and presenting antigens. The purpose of this study was to evaluate the immunohistochemical reactivity for Langerhans cells between HPV positive and HPV negative OSCC, as well as, the relation of the immunoreactivity for this cells and the histological grading of malignancy proposed by Bryne (1998) and modified by Miranda (2002). Additionally, HPV infection was evaluated in relation to sex, age, lesion localization and histological grading of malignancy. In the total, 27 cases of OSSC were evaluated, 09 of them HPV positive and 18 HPV negative. Anti S-100 antibody was utilized for the immunohistochemical labelling, followed by the counting of LCs in 5 highpower fields (400x). No statistically significant difference was verified between the variables sex, age, lesion localization, histological grading of malignancy and HPV presence in OSSC. There was neither association between the immunohistochemical labeling for LCs (S-100+) and HPV infection nor correlation between the quantity of LCs labeled and the histological grading of malignancy of OSSC. The results suggest that despite the absence of statistically significant difference, the presence of HPV in such cases of OSCC can alter the immunological system, particularly the Langerhans cells
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As células de Langerhans (CLs) estão localizadas na epiderme e desempenham um papel chave na indução da resposta imune e da tolerância imunológica. Os macrófagos são células fagocíticas que atuam como primeira linha de defesa do organismo, e que estão envolvidos na formação de granulomas em pacientes com hanseníase. A imunopatogenia da resposta celular nos estados reacionais ainda é pouco estudada, porém, diversas evidências sugerem que as drogas prednisona, talidomida, ciclosporina e amitriptilina, utilizadas no controle das reações hansênicas, exercem seus efeitos pela modulação das funções de diferentes células imunocompetentes. O objetivo do presente estudo foi analisar a ação in vitro das drogas prednisona, talidomida, ciclosporina e amitriptilina sobre a produção de citocinas por CLs e macrófagos de camundongos BALB/c. As CLs foram isoladas, purificadas e cultivadas a partir da epiderme pela técnica de “panning” e os macrófagos foram isolados da cavidade peritoneal de camundongos BALB/c. Após 36 h de tratamento com as drogas, os níveis de TNF-, IL-12 e IL-10 foram medidos por ELISA. Prednisona, talidomida, ciclosporina e amitriptilina inibiram os níveis de TNF- produzidos pelas CLs, em ambas as concentrações, no entanto, não foi detectada alteração significativa na produção de IL-12. A produção de TNF- e de IL-12 por macrófagos peritoneais também foi diminuída após o tratamento, porém os níveis de IL-10 não foram modificados por nenhuma das drogas testadas. Nossos resultados mostram que estas drogas podem modular a resposta imune através da regulação das citocinas pró-inflamatórias TNF- e IL-12 por CLs purificadas da epiderme e por macrófagos peritoneais, indicando que as citocinas constituem importante alvo de drogas usadas no tratamento dos estados reacionais.
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Células de Langerhans (CL) são células apresentadoras de antígenos, MHC classe II positivas, que constituem 2 a 3% de todas as células da epiderme, e que têm demonstrado serem estimuladoras de uma resposta vigorosa de linfócitos T contra Leishmania major. A leishmanionse cutânea do Novo Mundo é causada por diferentes espécies, apresentando formas clínicas diversas variando de leishmaniose cutânea difusa anérgica. Utilizando a técnica de "panning", CL da epiderme de comundongos BALB/c foram purificadas para em torno de 95% de pureza (pCL) em relação à outras células da epiderme. As CL recentemente isoladas apresentaram dentritos pequenos e delicados e os clássicos grânulos de Birbeck. Tem sido sugerido que os parasitos do subgênero Viannia e Leishmania, que são geneticamente bastante distintos, podem ter respostas espécie-específicas na resposta imune celular. Neste estudo, pCL e L. (V.) brasilienses ou L. (L.) amazonensis foram cultivadas e a morfologia das CL foi analizada após 12 ou 36 h de cultura. Utilizando a coloração de Giemsa e a microscopia eletrônica de varredura, alterações morfológicas diferentes foram detectadas nas CL após 12 h de cultivo nas duas culturas, CL e L. (V.) brasiliensis ou CL e L. (L.) amazonensis. Depois da interação com L. (V.) brasiliensis as CL tornaram-se mais dentríticas, que eram mais curtos quando comparados às CL cultivadas isoladamente. Em contraste, após a interação com L. (L.) amazonensis, as CL tornaram-se arredondadas com algumas células mostrando alguns dendritos. Além disto, verificou-se um contato íntimo entre o flagelo das prostigota com as CL, mas sem observar a fagocitose das leishmanias após 12 ou 36 h de cultivo, o que é diferente dos relatos da literatura com CL e L. major. Estes resultados sugerem que a resposta imune primária das CL contra as diferentes espécies de leishamania podem ser distintas de acordo com a espécie envolvida no processo de interação.
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Leishmania amazonensis é um dos principais agentes etiológicos em um amplo espectro de formas clínicas da Leishmaniose Tegumentar Americana. De modo geral, a resistência frente às leishmanioses decorre do desenvolvimento de uma resposta imune celular eficiente, porém muitos estudos têm demonstrado que citocinas específicas ou combinações de citocinas podem ser fatores de resistência ou suscetibilidade à infecção por L. amazonensis. Estudos recentes sugerem a participação das células de Langerhans (LCs) nas resposta anti-Leishmania, porém os mecanismos envolvidos durante esta interação são ainda pouco estudados. Objetivos: Estudar o papel do TNF-α e anti-CD40 nas interações in vitro entre as LCs e L. amazonensis, observando o perfil de citocinas produzidas e a expressão de moléculas de superfície, bem como verificar a capacidade destas células em ativar a produção de IFN-γ e IL-4 por células do linfonodo. Metodologia: As LCs foram isoladas da epiderme de camundongos BALB/c e incubadas com promastigotas de L. amazonensis, TNF-α e/ou anti- CD40. Após 24h, as LCs foram co-cultivadas com células obtidas de linfonodos por 72h. As citocinas IL-6, IL-12, IFN-γ e IL-4 foram dosadas por ensaio imunoenzimático (ELISA) e as moléculas de superfície foram analisadas por citometria de fluxo. Resultados: Os níveis de IL- 6 e IL-12p70 produzidos pela LCs foram significativamente reduzidos após interação com L. amazonensis, mesmo após o tratamento das LCs com TNF-α ou anti-CD40. Em relação às moléculas de superfície, não houve diferença na expressão de CD207 em nenhum dos grupos, porém a presença de L. amazonensis promoveu uma redução significativa na expressão de CD40 nas LCs tratadas com TNF-α ou anti-CD40, e aumentou a expressão de CD86 em todos os grupos. Na presença de L. amazonensis, as células do linfonodo apresentaram uma produção diminuída de IFN-γ e não houve alteração na produção de IL-4. Quando cocultivadas com LCs estimuladas previamente com L. amazonensis, a produção de IFN-γ também foi reduzida, mesmo na presença dos estímulos TNF-α e/ou anti-CD40. Não foram observadas alterações significativas na produção de IL-4 pelas células do linfonodo cocultivadas nas mesmas condições experimentais. Conclusão: L. (L.) amazonensis exerce um efeito imunomodulador sobre a resposta imune mediada por LCs, inibindo a produção de IL-6 e IL-12p70 e expressão de CD40, além de impedir a ativação da produção de IFN-γ por células do linfonodo co-cultivadas com LCs, mesmo após tratamento com TNF-α e anticorpo anti-CD40.
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A lobomicose é uma infecção subcutânea crônica, granulomatosa, causada pela implantação traumática do fungo Lacazia loboi nos tecidos cutâneo e subcutâneo. Ocorre predominantemente na região Amazônica e atinge qualquer grupo populacional. Histologicamente, observa-se reação inflamatória crônica caracterizada por intensa histiocitose e fibroplasia, abundante número de macrófagos, células gigantes multinucleadas do tipo corpo estranho e presença de considerável número de células leveduriformes. Os macrófagos são células fagocíticas que participam do reconhecimento e da resposta a patógenos através da fagocitose, da apresentação de antígenos aos linfócitos T e da produção de citocinas. As células de Langerhans (LC) são um grupo de Células dendríticas (CD) derivadas da medula óssea situadas principalmente em uma camada suprabasal da epiderme. Estudos envolvendo a interação fungo-hospedeiro na doença de Jorge Lobo são escassos. Assim, Este estudo é um passo importante para o melhor entendimento da biologia e patogenia do L. loboi, e para o estudo da imunopatologia da interação patógeno versus hospedeiro desta doença emergente e pouco conhecida. O objetivo do presente trabalho foi analisar a interação in vitro entre macrófagos peritoneais não ativados e/ou LC, isolados de camundongos BALB/c, com L. loboi recém-isolado de pacientes com doença de Jorge Lobo, bem como determinar os índices de infecção, fagocitose e fusão, e medir a produção das citocinas TNF-α, IL-4, IL-6, IL-10 e IL-12. Os resultados demonstraram que L. loboi é fagocitado por macrófagos, mas não por LC. O índice de infecção na interação entre macrófagos e L. loboi foi semelhante à interação entre macrófagos, LC e L. loboi em todos os tempos analisados. A média do número de fungos por macrófago também foi praticamente igual entre as interações e ao longo do tempo, variando de 1,2 a 1,6 fungos/macrófagos. Não houve a formação de células gigantes em macrófagos cultivados ou LC cultivadas isoladamente e em nenhum dos co-cultivos. Não houve diferença significante na produção de IL-4, IL-2 e IL-10 nas interações estudadas. Os níveis de TNF-α diminuem ao longo do tempo na interação entre macrófagos e L. loboi, enquanto a adição de LC induz aumento da produção de TNF-α, principalmente após 48 horas. LC modulam negativamente a produção de IL-6 por macrófagos e L. loboi também inibem essa produção por macrófagos isoladamente ou em co-cultivo com LC. L. loboi estimulam significativamente a produção de IL-12 por macrófagos co-cultivados com LC, mas não em LC ou macrófagos isoladamente.
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The expression of Langerhans cell (LC) and dermal dendritic cell (dDC) as well as T CD4+ and CD8+ immune responses was evaluated in the skin of BALB/c mice experimentally infected by L. (L.) amazonensis (La) and L. (V.) braziliensis (Lb). At 4th and 8th weeks post infection (PI), skin biopsies were collected to determine the parasite load and CD207+, CD11c+, CD4+, CD8+, iNOS+ cellular densities. Cytokine (IFN-?, IL-4 and IL-10) profiles were also analysed in draining lymph node. At 4th week, the densities of CD207+ and CD11c+ were higher in the La infection, while in the Lb infection, these markers revealed a significant increase at 8th week. At 4th week, CD4+ and CD8+ were higher in the La infection, but at 8th week, there was a substantial increase in both markers in the Lb infection. iNOS+ was higher in the Lb infection at 4th and 8th weeks. In contrast, the parasite load was higher in the La infection at 4th and 8th weeks. The concentration of IFN-? was higher in the Lb infection, but IL-4 and IL-10 were higher in the La infection at 4th and 8th weeks. These results confirm the role of the Leishmania species in the BALB/c mice disease characterized by differences in the expression of dendritic cells and cellular immune response.
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Langerhans cell histiocytosis (LCH) is a rare disease characterized by proliferation of Langerhans-type cells that express CD1a, Langerin (CD207) and S100 protein. Birbeck granules are a hallmark by ultrastructural examination. LCH presents with a wide clinical spectrum, ranging from solitary lesions of a single site (usually bone or skin) to multiple or disseminated multisystemic lesions, which can lead to severe organ dysfunction. Most cases occur in children. Gastrointestinal tract involvement is rare and has been associated with systemic illness and poor prognosis especially in children under the age of 2 years. Adult gastrointestinal LCH is very rare. We report a case of a previously healthy, nonsmoking 48-year-old male who was referred for routine screening colonoscopy. Two sessile, smooth, firm and yellowish LCH polyps measuring 0.2 cm and 0.3 cm were detected in the sigmoid colon. Fifteen months later a second colonoscopy found two histologically confirmed hyperplastic polyps at the sigmoid colon. No other LCH lesions were seen. A third colonoscopy after 28 months of follow-up found a submucosal 0.5 cm infiltrated and ulcerated LCH polyp in the cecum, close to the ostium of the appendix. The patient had been asymptomatic for all this period. Imaging investigation for systemic or multiorgan disease did not find any sign of extracolonic involvement. On histology all lesions showed typical LCH features and immunohistochemical analysis showed strong and diffuse staining for CD1a and CD207. This case illustrates two distinct clinicopathologic features not previously reported in this particular clinical setting: metachronous colonic involvement and positivity for CD207.
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Atopic dermatitis in humans and dogs is a chronic relapsing allergic skin disease. Dogs show a spontaneous disease similar to the human counterpart and represent a model to improve our understanding of the immunological mechanisms, the pathogenesis of the disease, and new therapy development. The aim of the study was to determine the frequency and phenotype of dendritic cells (DC) in the epidermis and dermis of healthy, canine atopic dermatitis lesional, and non-allergic inflammatory skin to further validate the model and to obtain insights into the contribution of DC to the pathogenesis of skin diseases in dogs. We first characterized canine skin DC using flow-cytometric analysis of isolated skin DC combined with an immunohistochemical approach. A major population of canine skin dendritic cells was identified as CD1c(+)CD11c(+)CD14(-)CD80(+)MHCII(+)MAC387(-) cells, with dermal DC but not Langerhans cells expressing CD11b. In the epidermis of lesional canine atopic dermatitis and non-allergic inflammatory skin, we found significantly more dendritic cells compared with nonlesional and control skin. Only in canine atopic dermatitis skin did we find a subset of dendritic cells positive for IgE, in the epidermis and the dermis. Under all inflammatory conditions, dermal dendritic cells expressed more CD14 and CD206. MAC387(+) putative macrophages were absent in healthy but present in inflamed skin, in particular during non-allergic diseases. This study permits a phenotypic identification and differentiation of canine skin dendritic cells and has identified markers and changes in dendritic cells and macrophage populations related to allergic and non-allergic inflammatory conditions. Our data suggest the participation of dendritic cells in the pathogenesis of canine atopic dermatitis similar to human atopic dermatitis and further validate the only non-murine spontaneous animal model for this disease.
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Folliculo-stellate cells are a nonendocrine, sustentacular-like complementary population of the anterior pituitary. They currently are considered as functionally and phenotypically heterogeneous, with one subpopulation of folliculo-stellate cells possibly representing resident adenohypophyseal macrophages. We took advantage of a limited T-cell mediated inflammatory reaction selectively involving tumor tissue in three cases of pituitary adenoma (2 prolactin cell adenomas, and 1 null cell adenoma) to test the hypothesis whether some folliculo-stellate cells within inflammatory foci would also assume monocytic/dendritic properties. Immunohistochemical double labeling for S-100 protein and the class II major histocompatibility antigen HLA-DR indeed showed several arborized cells to coexpress both epitopes. These were distributed both amidst adenomatous acini and along intratumoral vessels, and were morphologically undistinguishable from conventional folliculo-stellate cells. On the other hand, markers of follicular dendritic cells (CD21) and Langerhans' cells (CD1a) tested negative. Furthermore, no S-100/HLA-DR coexpressing folliculo-stellate cells were seen in either peritumoral parenchyma of the cases in point nor in control pituitary adenomas lacking inflammatory reaction. These findings suggest that a subset of folliculo-stellate cells may be induced by an appropriate local inflammatory microenvironment to assume a dendritic cell-like immunophenotype recognizable by their coexpression of S-100 protein and HLA-DR. By analogy with HLA-DR expressing cells in well-established extrapituitary inflammatory constellations, we speculate that folliculo-stellate cells with such immunophenotype may actually perform professional antigen presentation. A distinctly uncommon finding in pituitary adenomas, lymphocytic infiltrates may therefore be read as a manifestation of tumoral immunosurveillance.
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Epstein-Barr virus (EBV) is a ubiquitous human herpesvirus associated with many malignant and nonmalignant human diseases. Life-long latent EBV persistence occurs in blood-borne B lymphocytes, while EBV intermittently productively replicates in mucosal epithelia. Although several models have previously been proposed, the mechanism of EBV transition between these two reservoirs of infection has not been determined. In this study, we present the first evidence demonstrating that EBV latently infects a unique subset of blood-borne mononuclear cells that are direct precursors to Langerhans cells and that EBV both latently and productively infects oral epithelium-resident cells that are likely Langerhans cells. These data form the basis of a proposed new model of EBV transition from blood to oral epithelium in which EBV-infected Langerhans cell precursors serve to transport EBV to the oral epithelium as they migrate and differentiate into oral Langerhans cells. This new model contributes fresh insight into the natural history of EBV infection and the pathogenesis of EBV-associated epithelial disease.
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Exposure to UVB radiation induces local and systemic immune suppression, evidenced by inhibition of the contact hypersensitivity response (CHS). Epidermal dendritic cells, the primary antigen presenting cells responsible for the induction of CHS, are profoundly altered in phenotype and function by UVB exposure and possess UV-specific DNA damage upon migrating to skin-draining lymph nodes. Expression of the proapoptotic protein FasL has been demonstrated in both skin and lymph node cells following UVB exposure. Additionally, functional FasL expression has recently been demonstrated to be required in the phenomenon of UV-induced immune suppression. To test the hypothesis that FasL expression by DNA-damaged Langerhans cells migrating to the skin-draining lymph nodes is a crucial event in the generation of this phenomenon, mice were given a single 5KJ/m2 UV-B exposure and sensitized to 0.5% FITC through the exposed area. Dendritic cells (DC) harvested from skin-draining lymph nodes (DLN) 18 hours following sensitization by magnetic CD11c-conjugated microbeads expressed high levels of Iab, CD80 and CD86, DEC-205 and bore the FITC hapten, suggesting epidermal origin. Radioimmunoassay of UV-specific DNA damage showed that DC contained the vast majority of cyclobutane pyrimidine dimers (CPDs) found in the DLN after UVB and exhibited increased FasL mRNA expression, a result which correlated with greatly increased FasL-mediated cytotoxicity. The ability of DCs to transfer sensitization to naïve hosts was lost following UVB exposure, a phenomenon which required DC FasL expression, and was completely reversed by cutaneous DNA repair. Collectively, these results demonstrate the central importance of DNA damage-induced FasL expression on migrating dendritic cells in mediating UV-induced suppression of contact hypersensitivity. ^