Mapping uterine calcium dynamics during the ovulatory cycle in live mice.

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES PNAS nexus Pub Date : 2024-10-04 eCollection Date: 2024-10-01 DOI:10.1093/pnasnexus/pgae446
David J Combs, Eric M Moult, Sarah K England, Adam E Cohen
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Abstract

Uterine contraction patterns vary during the ovulatory cycle and throughout pregnancy, but prior measurements have produced limited and conflicting information on these patterns. We combined a virally delivered genetically encoded calcium reporter (GCaMP8m) and ultra-widefield imaging in live nonpregnant mice to characterize uterine calcium dynamics at organ scale throughout the estrous cycle. Prior to ovulation (proestrus and estrus), uterine excitations primarily initiated in a region near the oviduct, but after ovulation (metestrus and diestrus), excitations initiated at loci homogeneously distributed throughout the organ. The frequency of excitation events was lowest in proestrus and estrus, higher in metestrus, and highest in diestrus. These results establish a platform for mapping uterine activity and demonstrate that an anatomically localized trigger for uterine excitations depends on the estrous cycle phase.

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绘制活体小鼠排卵周期的子宫钙动力学图。
子宫收缩模式在排卵周期和整个妊娠期间都会发生变化,但之前的测量结果对这些模式的描述有限且相互矛盾。我们在活体非妊娠小鼠体内将病毒递送的基因编码钙报告物(GCaMP8m)与超宽场成像相结合,以描述整个发情周期中器官尺度的子宫钙动力学特征。排卵前(预发情期和发情期),子宫兴奋主要在输卵管附近区域开始,但排卵后(发情期和绝经期),兴奋在整个器官均匀分布的位置开始。兴奋事件的频率在发情前期和发情期最低,在发情后期较高,而在发情后期最高。这些结果为绘制子宫活动图建立了一个平台,并证明子宫兴奋的解剖定位触发器取决于发情周期阶段。
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