Blood Transfusion Center of Slovenia, Slajmerjeva 6, Ljubljana, Slovenia.
Immunology. 2010 Apr;129(4):525-35. doi: 10.1111/j.1365-2567.2009.03205.x. Epub 2009 Nov 25.
Resveratrol is a polyphenol that acts on multiple molecular targets important for cell differentiation and activation. Dendritic cells (DCs) are a functionally diverse cell type and represent the most potent antigen-presenting cells of the immune system. In this study, we investigated resveratrol-induced effects on DCs during their differentiation and maturation. Our results show that resveratrol induces DC-associated tolerance, particularly when applied during DC differentiation. Costimulatory molecules CD40, CD80 and CD86 were down-regulated, as was the expression of major histocompatibility complex (MHC) class II molecules. Surface expression of inhibitory immunoglobulin-like transcript 3 (ILT3) and ILT4 molecules was induced, while human leucocyte antigen (HLA)-G expression was not affected. Resveratrol-treated DCs lost the ability to produce interleukin (IL)-12p70 after activation, but had an increased ability to produce IL-10. Such DCs were poor stimulators of allogeneic T cells and had lowered ability to induce CD4(+) T-cell migration. Furthermore, treated cells were able to generate allogeneic IL-10-secreting T cells, but were not competent in inducing FoxP3 expression These tolerogenic effects are probably associated with the effect of resveratrol on multiple molecular targets through which it interferes with DC differentiation and nuclear factor (NF)-kappaB translocation. Our data provide new insights into the molecular and functional mechanisms of the tolerogenic effects that resveratrol exerts on DCs.
白藜芦醇是一种多酚,作用于多个对细胞分化和激活很重要的分子靶点。树突状细胞(DC)是一种功能多样的细胞类型,是免疫系统中最有效的抗原呈递细胞。在这项研究中,我们研究了白藜芦醇在 DC 分化和成熟过程中对 DC 的诱导作用。我们的结果表明,白藜芦醇诱导与 DC 相关的耐受,尤其是在 DC 分化期间应用时。共刺激分子 CD40、CD80 和 CD86 下调,主要组织相容性复合体(MHC)Ⅱ类分子的表达也下调。抑制性免疫球蛋白样转录物 3(ILT3)和 ILT4 分子的表面表达被诱导,而人类白细胞抗原(HLA)-G 的表达不受影响。经白藜芦醇处理的 DC 在激活后失去产生白细胞介素(IL)-12p70 的能力,但增加了产生 IL-10 的能力。这种 DC 对同种异体 T 细胞的刺激能力较差,诱导 CD4+T 细胞迁移的能力降低。此外,经处理的细胞能够产生同种异体分泌 IL-10 的 T 细胞,但不能诱导 FoxP3 表达。这些耐受效应可能与白藜芦醇通过干扰 DC 分化和核因子(NF)-κB 易位作用于多个分子靶点有关。我们的数据为白藜芦醇对 DC 产生的耐受效应的分子和功能机制提供了新的见解。