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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Influence of the season on vitamin D levels and regulatory T cells in patients with polymorphic light eruption
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Influence of the season on vitamin D levels and regulatory T cells in patients with polymorphic light eruption

机译:Influence of the season on vitamin D levels and regulatory T cells in patients with polymorphic light eruption

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摘要

The exact mechanisms of photohardening in polymorphic light eruption (PLE) are still unknown, but medical photohardening was shown to increase regulatory T cell (Treg) numbers in the blood of PLE patients, similar to natural hardening. Furthermore, oral vitamin D supplementation increased peripheral Tregs in healthy individuals. We herein report on a post hoc analysis of 26 screened PLE patients of a clinical trial (ClinicalTrials.gov No. NCT01595893), in which the influence of the progressing season was investigated on baseline CD4+CD25+FoxP3+CD127- Treg numbers by flow cytometry and Treg suppressive function by co-culture assays with T effector cells as a secondary endpoint, together with 25-hydroxy vitamin D (25(OH) D) serum levels at the study's screening visit, taking place in the period from January to June. The mean 25(OH) D serum level of all patients was 33.2 ng ml(-1). Ten of those patients (38.5) were identified with low 25(OH) D levels (<30 ng ml(-1)). Significantly higher baseline 25(OH) D serum levels (plus 34.4; P = 0.0182) as well as higher relative Treg percentages in CD4+ population (plus 62.8; P = 0.0157) and in total lymphocyte population (plus 59.6; P = 0.0372) and higher absolute Treg numbers (plus 100.2; P = 0.0042) were observed in the late spring/early summer period (April to June) compared to the winter period (January to February). No significant relationship was observed when Treg numbers and function were correlated with 25(OH) D levels. These data indicate that in PLE patients Treg numbers and their suppressive function are independent of vitamin D serum levels and suggest that UV light and/or other seasonal factors may affect these cells via the non-vitamin D related pathway(s).

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