首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Elastic Fiber Assembly in the Adult Mouse Pubic Symphysis During Pregnancy and Postpartum
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Elastic Fiber Assembly in the Adult Mouse Pubic Symphysis During Pregnancy and Postpartum

机译:妊娠和产后成年小鼠耻骨联合中的弹性纤维组装

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Impairment of pelvic organ support has been described in mice with genetic modifications of the proteins involved in elastogenesis, such as lysyl oxidase-like 1 (LOXL1) and fibulin 5. During pregnancy, elastic fiber-enriched pelvic tissues are modified to allow safe delivery. In addition, the mouse pubic symphysis is remodeled in a hormone-controlled process that entails the modification of the fibrocartilage into an interpubic ligament (IpL) and the relaxation of this ligament. After first parturition, recovery occurs to ensure pelvic tissue homeostasis. Because ligaments are the main supports of the pelvic organs, this study aimed to evaluate elastogenesis in the IpL during mouse pregnancy and postpartum. Accordingly, virgin, pregnant, and postpartum C57BL/6 mice were studied using light, confocal, and transmission electron microscopy as well as Western blots and real-time PCR. Female mice exhibited the separation of the pubic bones and the formation, relaxation, and postpartum recovery of the IpL. By the time the IpL was formed, the elastic fibers had increased in profile length and diameter, and they consisted of small conglomerates of amorphous material distributed among the bundles of microfibrils. Our analyses also indicated that elastin/tropoelastin, fibrillin 1, LOXL1/Loxl1, and fibulin 5 were spatially and temporally regulated, suggesting that these molecules may contribute to the synthesis of new elastic fibers during IpL development. Overall, this work revealed that adult elastogenesis may be important to assure the elasticity of the pelvic girdle during preparation for parturition and postpartum recovery. This finding may contribute to our understanding of pathological processes involving elastogenesis in the reproductive tract.
机译:已经描述了小鼠中骨盆器官支持的受损,这些蛋白质具有与弹性发生有关的蛋白质的遗传修饰,例如赖氨酰氧化酶样蛋白1(LOXL1)和血纤蛋白5。在怀孕期间,对富含弹性纤维的骨盆组织进行修饰以确保安全分娩。另外,小鼠的耻骨联合体在激素控制的过程中被重塑,该过程需要将纤维软骨修饰成耻骨间韧带(IpL),并使该韧带松弛。初次分娩后,恢复以确保骨盆组织动态平衡。由于韧带是骨盆器官的主要支持,因此本研究旨在评估小鼠妊娠和产后IpL中的弹性生成。因此,使用光,共聚焦和透射电子显微镜以及蛋白质印迹和实时PCR研究了处女,怀孕和产后C57BL / 6小鼠。雌性小鼠表现出耻骨分离以及IpL的形成,松弛和产后恢复。到形成IpL时,弹性纤维的轮廓长度和直径增加,并且由分布在微纤维束之间的无定形材料的小团块组成。我们的分析还表明,弹性蛋白/弹性蛋白,原纤维蛋白1,LOXL1 / Loxl1和原纤维蛋白5在空间和时间上均受到调节,表明这些分子可能在IpL发育过程中有助于合成新的弹性纤维。总的来说,这项工作表明,成年弹性形成对于确保分娩和产后恢复的准备过程中确保骨盆带的弹性可能很重要。这一发现可能有助于我们对涉及生殖道弹性发生的病理过程的理解。

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