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Probing Cytoskeletal Mechanics Using Biochemical Inhibitors

机译:使用生化抑制剂探测细胞骨架力学

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摘要

Quantifying the mechanics of the cytoskeletons of living cells is important for understanding several physiologic and pathologic cellular functions, such as wound healing and cellular migration in cancer. Our laboratory develops three-dimensional tissue constructs for assaying cytoskeletal mechanics in controlled conditions. These tissue constructs consist of defined components such as chick embryo fibroblasts and reconstituted rat tail collagen; fibroblasts remodel the collagen extracellular matrix (ECM) and develop a structural environment representative of that which would exist in a natural tissue.rnOur protocol for quantifying the microscale mechanics of the proteins that comprise the cytoskeleton involves mechanical testing of a tissue construct first in a bath that contains nutrition medium to support the active physiologic functioning of the cells, and next in the presence of inhibitors that selectively eliminate specific cytoskeletal structures. By solving an inverse homogenization problem, the mechanical functioning of these proteins at the cellular level can be estimated. Here, we present a combination of mechanical testing and imaging results to quantify the effects of specific inhibitors on cytoskeletal and extracellular matrix form and function.
机译:量化活细胞骨架的机制对于理解几种生理和病理细胞功能(例如伤口的愈合和癌症中的细胞迁移)非常重要。我们的实验室开发了用于在受控条件下测定细胞骨架力学的三维组织构造。这些组织构建物由确定的成分组成,例如鸡胚成纤维细胞和重组的大鼠尾胶原。成纤维细胞重塑胶原细胞外基质(ECM),并开发出代表天然组织中存在的结构环境。我们用于量化构成细胞骨架的蛋白质的微观力学的方案包括首先在浴中对组织构建体进行机械测试含有营养培养基以支持细胞的活跃生理功能,其次是存在选择性清除特定细胞骨架结构的抑制剂。通过解决逆均化问题,可以估计这些蛋白质在细胞水平上的机械功能。在这里,我们提出了机械测试和成像结果的组合,以量化特定抑制剂对细胞骨架和细胞外基质形式和功能的影响。

著录项

  • 来源
  • 会议地点 Naples FL(US);Naples FL(US)
  • 作者单位

    Departments of Mechanical, Aerospace andrnStructural Engineering,rnBiomedical Engineering, rnand Computer Science and Engineering,rnWashington University in St. LouisrnSt. Louis, MO rnCenter for Materials Innovation, WashingtonrnUniversityrnWashington University School of Medicine St. Louis, MOrnDepartment of Biochemistryrnand Molecular Biophysics,rnWashington University School of MedicinernSt. Louis, MO;

    Departments of Mechanical, Aerospace andrnStructural Engineering,rnBiomedical Engineering, rnand Computer Science and Engineering,rnWashington University in St. LouisrnSt. Louis, MO rnCenter for Materials Innovation, WashingtonrnUniversityrnWashington University School of Medicine St. Louis, MOrnDepartment of Biochemistryrnand Molecular Biophysics,rnWashington University School of MedicinernSt. Louis, MO;

    Departments of Mechanical, Aerospace andrnStructural Engineering,rnBiomedical Engineering, rnand Computer Science and Engineering,rnWashington University in St. LouisrnSt. Louis, MO rnCenter for Materials Innovation, WashingtonrnUniversityrnWashington University School of Medicine St. Louis, MOrnDepartment of Biochemistryrnand Molecular Biophysics,rnWashington University School of MedicinernSt. Louis, MO;

    Departments of Mechanical, Aerospace andrnStructural Engineering,rnBiomedical Engineering, rnand Computer Science and Engineering,rnWashington University in St. LouisrnSt. Louis, MO rnCenter for Materials Innovation, WashingtonrnUniversityrnWashington University School of Medicine St. Louis, MOrnDepartment of Biochemistryrnand Molecular Biophysics,rnWashington University School of MedicinernSt. Louis, MO;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体工程学;
  • 关键词

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