首页> 外文期刊>Frontiers in Physiology >Male Seminal Relaxin Contributes to Induction of the Post-mating Cytokine Response in the Female Mouse Uterus
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Male Seminal Relaxin Contributes to Induction of the Post-mating Cytokine Response in the Female Mouse Uterus

机译:男性精液松弛素有助于诱导雌性小鼠子宫中的交配后细胞因子反应。

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The hormone relaxin is important in female reproduction for embryo implantation, cardiovascular function, and during labor and lactation. Relaxin is also synthesized in males by organs of the male tract. We hypothesized that relaxin might be one component of seminal plasma responsible for eliciting the female cytokine response induced in the uterus at mating. When recombinant relaxin was injected into the uterus of wild-type ( Rln ~(+/+)) mice at estrus, it evoked the production of Cxcl1 mRNA and its secreted protein product CXCL1 in four of eight animals. Mating experiments were then conducted using mice with a null mutation in the relaxin gene ( Rln ~(?/?) mice). qRT-PCR analysis of mRNA expression in wild-type females showed diminished uterine expression of several cytokine and chemokine genes in the absence of male relaxin. Similar differences were also noted comparing Rln ~(?/?) and Rln ~(+/+) females mated to wild-type males. Quantification of uterine luminal fluid cytokine content confirmed that male relaxin provokes the production of CXCL10 and CSF3 in Rln ~(+/+) females. Differences were also seen comparing Rln ~(?/?) and Rln ~(+/+) females mated with Rln ~(?/?) males for CXCL1, CSF3, and CCL5, implying that endogenous relaxin in females might prime the uterus to respond appropriately to seminal fluid at coitus. Finally, pan-leukocyte CD45 mRNA was increased in wild-type matings compared to other combinations, implying that male and female relaxin may trigger leukocyte expansion in the uterus. We conclude that male and/or female relaxin may be important in activating the uterine cytokine/chemokine network required to initiate maternal immune adaptation to pregnancy.
机译:松弛素激素在女性生殖,胚胎植入,心血管功能以及分娩和哺乳期间很重要。松弛素也在雄性中由雄性器官合成。我们假设松弛素可能是精浆中的一种成分,其在交配时引起子宫中诱导的女性细胞因子反应。当将重组松弛素在发情期注射到野生型(Rln〜(+ / +))小鼠子宫​​中时,它引起了八只动物中的四只产生Cxcl1 mRNA及其分泌的蛋白质产物CXCL1。然后使用在松弛素基因中具有无效突变的小鼠(Rln〜(β/β)小鼠)进行交配实验。对野生型雌性中的mRNA表达进行qRT-PCR分析表明,在缺乏雄性松弛素的情况下,几种细胞因子和趋化因子基因的子宫表达降低。比较Rln〜(?/?)和Rln〜(+ / +)雌性与野生型雄性交配时,也发现了类似的差异。子宫腔液细胞因子含量的定量证实,雄性松弛素在Rln〜(+ / +)雌性中引起CXCL10和CSF3的产生。比较C1CL1,CSF3和CCL5的Rln〜(?/?)和Rln〜(+ / +)雌性与Rln〜(?/?)雄性的比较也存在差异,这表明雌性中的内源性松弛素可能会引发子宫对性交中的精液作出适当反应。最后,与其他组合相比,在野生型交配中泛白细胞CD45 mRNA的表达增加,这意味着雄性和雌性松弛素可能会触发子宫内白细胞的扩增。我们得出的结论是,男性和/或女性松弛素在激活启动孕妇对妊娠的免疫适应所需的子宫细胞因子/趋化因子网络中可能很重要。

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