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小鼠透明带的力学性能表征

Mechanical property characterization of mouse zona pellucida.

作者信息

Sun Yu, Wan Kai-Tak, Roberts Kenneth P, Bischof John C, Nelson Bradley J

机构信息

Swiss Federal Institute of Technology (ETH) Zürich, Ch-8092 Zürich, Switzerland.

出版信息

IEEE Trans Nanobioscience. 2003 Dec;2(4):279-86. doi: 10.1109/tnb.2003.820273.

Abstract

Previous intracytoplasmic sperm injection (ICSI) studies have indicated significant variation in ICSI success rates among different species. In mouse ICSI, the zona pellucida (ZP) undergoes a "hardening" process at fertilization in order to prevent subsequent sperm from penetrating. There have been few studies investigating changes in the mechanical properties of mouse ZP post fertilization. To characterize mouse ZP mechanical properties and quantitate the mechanical property differences of the ZP before and after fertilization, a microelectromechanical systems-based multiaxis cellular force sensor has been developed. A microrobotic cell manipulation system employing the multiaxis cellular force sensor is used to conduct mouse ZP force sensing, establishing a quantitative relationship between applied forces and biomembrane structural deformations on both mouse oocytes and embryos. An analytical biomembrane elastic model is constructed to describe biomembrane mechanical properties. The characterized elastic modulus of embryos is 2.3 times that of oocytes, and the measured forces for puncturing embryo ZP are 1.7 times those for oocyte ZP. The technique and model presented in this paper can be applied to investigations into the mechanical properties of other biomembranes, such as the plasma membrane of oocytes or other cell types.

摘要

以往的胞浆内单精子注射(ICSI)研究表明,不同物种之间的ICSI成功率存在显著差异。在小鼠ICSI中,透明带(ZP)在受精时会经历一个“硬化”过程,以防止后续精子穿透。很少有研究调查小鼠受精后ZP力学性能的变化。为了表征小鼠ZP的力学性能并量化受精前后ZP的力学性能差异,已开发出一种基于微机电系统的多轴细胞力传感器。采用多轴细胞力传感器的微机器人细胞操纵系统用于进行小鼠ZP力传感,建立施加力与小鼠卵母细胞和胚胎上生物膜结构变形之间的定量关系。构建了一个分析性生物膜弹性模型来描述生物膜的力学性能。所表征的胚胎弹性模量是卵母细胞的2.3倍,刺穿胚胎ZP所测得的力是卵母细胞ZP的1.7倍。本文提出的技术和模型可应用于对其他生物膜力学性能的研究,如卵母细胞或其他细胞类型的质膜。

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