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Mechanical characterization of aortic valve interstitial cells and their nuclei using atomic force microscopy.

机译:使用原子力显微镜对主动脉瓣间质细胞及其细胞核进行机械表征。

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摘要

The cellular mechanical environment, including the elasticity of the extracellular matrix, profoundly affects cellular mechanical and biological responses. This responsiveness depends on and may influence the inherent mechanical properties of the cell and the nucleus. In this thesis, the local and global elastic moduli of valve interstitial cells (VICs) cultured on substrates of varying stiffness were characterized using atomic force microscopy (AFM). A novel AFM technique used to directly determine nuclear elastic moduli in situ was also tested and preliminary results for VIC nuclear elasticity and isolated VIC nuclei elasticity were presented. This study confirmed that both local and global elasticity of VICs were sensitive to substrate compliance, and demonstrated that the nucleus was consistently two to four times stiffer than the cytoplasm and that isolated VIC nuclei were significantly softer than the intact nuclei in situ. It also provides practical guidelines for efficient AFM-based measurement of cell mechanical properties.
机译:细胞机械环境,包括细胞外基质的弹性,深刻影响细胞机械和生物学反应。这种响应性取决于并可能影响细胞和细胞核的固有机械性能。本文利用原子力显微镜(AFM)对在不同刚度的基质上培养的瓣膜间质细胞(VIC)的局部和整体弹性模量进行了表征。还测试了一种直接用于直接确定核弹性模量的新型原子力显微镜技术,并给出了VIC核弹性和孤立的VIC核弹性的初步结果。这项研究证实,VIC的局部和整体弹性都对底物顺应性敏感,并证明细胞核的硬度始终比细胞质坚硬2至4倍,并且分离的VIC核比原位完整的核要软得多。它还提供了有效的基于AFM的电池机械性能测量实用指南。

著录项

  • 作者

    Liu, Haijiao.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Biomedical.;Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2012
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:31

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