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Electrical coupling between micropatterned cardiomyocytes and stem cells.

机译:微模式心肌细胞和干细胞之间的电耦合。

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摘要

To understand how stem cells functionally couple with native cardiomyocytes is crucial for cell-based therapies to restore the loss of cardiomyocytes that occurs during heart infarction and other cardiac diseases. Due to the complexity of the in vivo environment, our knowledge of cell coupling is heavily dependent on cell-culture models. However, conventional in vitro studies involve undefined cell shapes and random length of cell-cell contacts in addition to the presence of multiple homotypic and heterotypic contacts between interacting cells. Thus, it has not been feasible to study electrical coupling corresponding to isolated specific types of cell contact modes.;To address this issue, we used microfabrication techniques to develop different geometrically-defined stem cell-cardiomyocyte contact assays to comparatively and quantitatively study functional stem cell-cardiomyocyte electrical coupling. Through geometric confinements, we will construct a matrix of identical microwells, and each was constructed as a specific microenvironment. Using laser-guided cell micropatterning technique, individual stem cells or cardiomyocytes can be deposited into the microwells to form certain contact mode. In this research, we firstly constructed an in-vivo like cardiac muscle fiber microenvironment, and the electrical conductivity of stem cells was investigated by inserting stem cells as cellular bridges. Then, the electrical coupling between cardiomyocytes and stem cells was studied at single-cell level by constructing contact-promotive/-preventive microenvironments.
机译:了解干细胞如何与天然心肌细胞功能性结合,对于基于细胞的治疗来恢复在心肌梗塞和其他心脏病中发生的心肌细胞丢失至关重要。由于体内环境的复杂性,我们对细胞偶联的了解在很大程度上取决于细胞培养模型。然而,常规的体外研究除了相互作用细胞之间存在多个同型和异型接触之外,还涉及不确定的细胞形状和细胞-细胞接触的随机长度。因此,研究与分离的特定类型的细胞接触模式相对应的电耦合是不可行的。为了解决这个问题,我们使用微细加工技术来开发不同的几何定义的干细胞-心肌细胞接触测定法,以比较和定量地研究功能性干细胞。细胞-心肌细胞电耦合。通过几何限制,我们将构建一个具有相同微孔的矩阵,并将每个微孔构建为特定的微环境。使用激光引导细胞微模式技术,可以将单个干细胞或心肌细胞沉积到微孔中以形成一定的接触模式。在这项研究中,我们首先构建了一个体内像心肌纤维微环境,并通过插入干细胞作为细胞桥来研究干细胞的电导率。然后,通过构建促进/预防接触的微环境,在单细胞水平上研究心肌细胞与干细胞之间的电耦合。

著录项

  • 作者

    Ma, Zhen.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Biomedical.;Biophysics General.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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