组织结构和基质刚性对催产素诱导的钙瞬态和基因表达的调控

IF 2.1 Q3 PHYSIOLOGY
Antonina P. Maxey , Jaya M. Travis , Megan L. McCain
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引用次数: 0

摘要

子宫易患被称为子宫肌瘤的良性肿瘤,这种肿瘤与许多妊娠并发症有关,包括早产。然而,纤维化组织重塑对子宫肌层(子宫平滑肌层)生理学的影响尚不清楚,这在很大程度上是由于缺乏模型系统。在这项研究中,我们通过在含有纤连蛋白的聚丙烯酰胺水凝胶上培养人子宫肌层平滑肌细胞,分别独立调节基质硬度和组织排列,从而改造了健康样和纤维化样子宫肌层。然后,我们评估了对催产素刺激的钙瞬变反应。硬基质上的各向同性肌层组织(代表纤维化肌层)与软基质上的对齐肌层组织相比(代表健康肌层),由于衰变时间更短,钙瞬变更短。与各向同性组织相比,无论基质硬度如何,对齐组织中的钙瞬变具有更长的响应时间和更长的衰减时间。与硬基质相比,无论组织排列如何,软基质上的钙瞬变幅度也更高。我们还进行了RNA测序,以检测健康和纤维化样组织之间的差异表达基因,这表明一种显示能诱导平滑肌松弛的苦味受体TAS2R31在纤维化样组织中下调。最后,我们测量了催产素诱导的钙瞬变对孕酮、咖啡因、凝血酶和硝苯地平预处理的反应,以证明我们的模型系统在药物筛选中的应用。正如预期的那样,黄体酮和咖啡因都会导致钙瞬变时间的缩短,而凝血酶和硝苯地平的影响较小。总之,我们的子宫肌层工程模型使我们能够对子宫肌层力学有新的见解,并可以扩展到识别或筛选新的药物靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of oxytocin-induced calcium transients and gene expression in engineered myometrial tissues by tissue architecture and matrix rigidity

The uterus is susceptible to benign tumors known as fibroids, which have been associated with many pregnancy complications, including preterm labor. However, the impact of fibrotic tissue remodeling on the physiology of the myometrium, the smooth muscle layer of the uterus, is poorly understood, in large part due to a lack of model systems. In this study, we engineered healthy-like and fibrotic-like myometrium by culturing human myometrial smooth muscle cells on polyacrylamide hydrogels micropatterned with fibronectin to independently tune matrix rigidity and tissue alignment, respectively. We then evaluated calcium transients in response to oxytocin stimulation. Isotropic myometrial tissues on stiff substrates (representing fibrotic myometrium) had shorter calcium transients due to shorter decay time compared to aligned myometrial tissues on soft substrates (representing healthy myometrium). Calcium transients in aligned tissues had longer response times and longer decay times than isotropic tissues, irrespective of substrate stiffness. The amplitude of calcium transients was also higher on soft substrates compared to stiff substrates, irrespective of tissue alignment. We also performed RNA sequencing to detect differentially expressed genes between healthy- and fibrotic-like tissues, which revealed that a bitter taste receptor shown to induce smooth muscle relaxation, TAS2R31, was down-regulated in fibrotic-like tissues. Finally, we measured oxytocin-induced calcium transients in response to pre-treatment with progesterone, caffeine, thrombin, and nifedipine to demonstrate applications for our model system in drug screening. Both progesterone and caffeine caused a decrease in calcium transient duration, as expected, while thrombin and nifedipine had less impact. Collectively, our engineered model of the myometrium enables new insights into myometrial mechanobiology and can be extended to identify or screen novel drug targets.

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CiteScore
3.20
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