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Effect of seminal plasma on dendritic cell differentiation in vitro depends on the serum source in the culture medium

机译:精血浆对体外树突细胞分化的影响取决于培养基中的血清源

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Dendritic cells (DCs) are key in shaping immune responses and are recruited to the human cervix after coitus by seminal plasma (SP). SP has been shown to skew the differentiation of monocyte-derived DCs towards an anti-inflammatory profile when cultured in medium containing fetal calf serum (FCS). Here, we confirmed that SP skewed DCs cultured in fetal bovine serum (FBS) towards a tolerogenic profile. To create a setting more similar to the in vivo situations in humans, we tested the immune regulatory effect of SP on DCs in cell cultures containing human serum (HS). SP-DCs cultured in HS did show increased CD14 and decreased CD1a, indicating an inhibited maturation phenotype. Gene expression of TGF-beta and IL-10 and IL-10 protein expression were elevated in LPS-activated SP-DCs, whereas IL-12p70 protein levels were decreased compared to LPS-activated control DCs. In contrast to FBS culture conditions, in the presence of HS co-cultures of SP-DCs with allogeneic peripheral blood mononuclear cells (PBMCs) did not result in decreased T cell proliferation and inflammatory cytokine production. Thus, under HS culture conditions SP can skew the differentiation of monocyte-derived DCs phenotypically towards alternatively activated DCs, but this immune regulatory phenotype is functionally less pronounced compared to SP-treated DCs cultured in FBS containing medium. These findings highlight the importance of the source of the serum that is used in SP treated cell cultures in vitro.
机译:树突状细胞(DCS)是一种形成免疫应答的关键,并且通过精血浆(SP)核心后募集到人宫颈。当含有胎牛血清(FCS)的培养基中培养时,SP已经显示出倾斜单核细胞衍生的DC朝向抗炎曲线的分化。在这里,我们证实SP偏斜DC在胎儿牛血清(FBS)中培养型耐受性剖面。为了创造与人类体内体内情况更类似的设置,我们测试了SP在含有人血清(HS)细胞培养物中DC的免疫调节效果。在HS中培养的SP-DC表现出CD14增加和CD1a降低,表明抑制成熟表型。在LPS - 活化的SP-DC中升高了TGF-β和IL-10和IL-10蛋白表达的基因表达,而IL-12P70蛋白水平与LPS活化的对照DC相比降低。与FBS培养条件相比,在HS的存在下具有同种异体外周血单核细胞(PBMC)的SP-DC的共培养物没有导致T细胞增殖降低和炎性细胞因子产生。因此,在HS培养条件下,SP可以倾斜单核细胞衍生的DCs的分化术语术语术语术语型逐渐变化,但与在含有培养基中培养的SP处理的DCS相比,这种免疫调节表型在功能不那么明显。这些发现突出了在体外中用于SP处理细胞培养物的血清来源的重要性。

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