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Production and regulation of interleukin-1 family cytokines at the materno-fetal interface

机译:在Materno-胎界面的白细胞介素-1家族细胞因子的生产和调节

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Highlights ? LPS modulates multiple IL-1 family cytokines from placenta, choriodecidua and amnion. ? IL-1β/IL-18 production is caspase-dependent; IL-1α production is calpain-dependent. ? Amnion has broadest responsiveness to IL-1 family members. ? Complex IL-1 family network at materno-fetal interface. Abstract IL-1 family members regulate innate immune responses, are produced by gestation-associated tissues, and have a role in healthy and adverse pregnancy outcomes. To better understand their role at the materno-fetal interface we used a human tissue explant model to map lipopolysaccharide (LPS)-stimulated production of IL-1α, IL-1β, IL-18, IL-33, IL-1Ra, IL-18BPa, ST2 and IL-1RAcP by placenta, choriodecidua and amnion. Caspase-dependent processing of IL-1α, IL-1β, IL-18, and IL-33 and the ability of IL-1α, IL-1β, IL-18, and IL-33 to regulate the production of IL-1RA, IL-18BPa, ST2 and IL-1RAcP was also determined. LPS acted as a potent inducer of IL-1 family member expression especially in the placenta and choriodecidua with the response by the amnion restricted to IL-1β. Caspases-1, 4 and 8 contributed to LPS-stimulated production of IL-1β and IL-18, whereas calpain was required for IL-1α production. Exogenous administration of IL-1α, IL-1β, IL-18, and IL-33 lead to differential expression of IL-1Ra, IL-18BPa, ST2 and IL-1RAcP across all tissues examined. Most notable were the counter-regulatory effect of LPS on IL-1β and IL-1Ra in the amnion and the broad responsiveness of the amnion to IL-1 family cytokines for increased production of immunomodulatory peptides and soluble receptors. The placenta and membranes vary not only in their output of various IL-1 family members but also in their counter-regulatory mechanisms through endogenous inhibitory peptides, processing enzymes and soluble decoy receptors. This interactive network of inflammatory mediators likely contributes to innate defence mechanisms at the materno-fetal interface to limit, in particular, the detrimental effects of microbial invasion.
机译:强调 ? LPS从胎盘,Choriodecidua和Amnion调节多个IL-1家族细胞因子。还IL-1β/ IL-18生产是依赖的Caspase; IL-1α生产依赖于Calpain。还Amnion对IL-1家庭成员具有最广泛的响应能力。还在主营胎界面的复杂的IL-1家庭网络。摘要IL-1家族成员规范先天免疫应答,通过妊娠相关组织产生,并具有健康和不良妊娠结果的作用。为了更好地了解他们在Materno-胎儿界面的作用,我们使用人体组织脱肤模型来映射IL-1α,IL-1β,IL-18,IL-33,IL-1RA,IL-的脂多糖模型18BPA,ST2和IL-1RACP通过胎盘,曲碘葡萄糖和amnion。依赖于IL-1α,IL-1β,IL-18和IL-33的Caspase依赖性加工以及IL-1α,IL-1β,IL-18和IL-33的能力调节IL-1RA的产生,还确定IL-18BPA,ST2和IL-1RACP。 LPS作为IL-1家族成员表达的有效诱导剂,尤其是在胎盘和Choriodecidua中,受到IL-1β的反应的反应。 Caspases-1,4和8导致LPS刺激的IL-1β和IL-18产生,而Calpain是IL-1α的生产所必需的。外源给予IL-1α,IL-1β,IL-18和IL-33导致IL-1RA,IL-18BPA,ST2和IL-1RACP的差异表达在检查的所有组织中。最值得注意的是LPS对IL-1β和IL-1RA在amnion中的反调节效应以及氨基中的氨基因IL-1家族细胞因子的广泛反应性,用于增加免疫调节肽和可溶性受体的产生。胎盘和膜不仅在其各种IL-1家族成员的产出中不等,而且还可以通过内源性抑制肽,加工酶和可溶性诱饵受体进行对抗调节机制。这种煽动性调解员的互动网络可能有助于在寄生虫界面处有助于限制微生物侵袭的不利影响。

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