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Micromechanical Analysis of the Hyaluronan-Rich Matrix Surrounding the Oocyte Reveals a Uniquely Soft and Elastic Composition

机译:围绕卵母细胞的富含透明质酸的基质的微机械分析揭示了独特的柔软和弹性成分

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摘要

The cumulus cell-oocyte complex (COC) matrix is an extended coat that forms around the oocyte a few hours before ovulation and plays vital roles in oocyte biology. Here, we analyzed the micromechanical response of mouse COC matrix by colloidal-probe atomic force microscopy. We found that the COC matrix is elastic insofar as it does not flow and its original shape is restored after force release. At the same time, the COC matrix is extremely soft. Specifically, the most compliant parts of in vivo and in vitro expanded COC matrices yielded Young’s modulus values of 0.5 ± 0.1 Pa and 1.6 ± 0.3 Pa, respectively, suggesting both high porosity and a large mesh size (≥100 nm). In addition, the elastic modulus increased progressively with indentation. Furthermore, using optical microscopy to correlate these mechanical properties with ultrastructure, we discovered that the COC is surrounded by a thick matrix shell that is essentially devoid of cumulus cells and is enhanced upon COC expansion in vivo. We propose that the pronounced nonlinear elastic behavior of the COC matrix is a consequence of structural heterogeneity and serves important functions in biological processes such as oocyte transport in the oviduct and sperm penetration.
机译:卵丘-卵母细胞复合物(COC)基质是在卵子排卵前几个小时在卵母细胞周围形成的延伸的被膜,在卵母细胞生物学中起着至关重要的作用。在这里,我们通过胶体探针原子力显微镜分析了小鼠COC基质的微机械响应。我们发现,COC基质具有弹性,因为它不流动并且在释放力后恢复了其原始形状。同时,COC矩阵非常柔软。具体而言,体内和体外扩展的COC基质中最顺应的零件分别产生的杨氏模量值分别为0.5±0.1 Pa和1.6±0.3 Pa,表明孔隙率高且筛孔尺寸大(≥100 nm)。另外,弹性模量随着压痕而逐渐增加。此外,使用光学显微镜将这些机械性能与超微结构相关联,我们发现COC被厚的基质壳包围,该壳基本没有积云细胞,并且在体内的COC扩展时会增强。我们提出,COC基质明显的非线性弹性行为是结构异质性的结果,并在生物学过程中发挥重要作用,例如输卵管中的卵母细胞转运和精子穿透。

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