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Study on Dependence of Mechanotransduction Sensitivity on Cytoskeletal Development Using Cultured Cardiomyocytes

机译:用培养的心肌细胞研究机电调用敏感性对细胞骨骼发育的依赖性研究

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As a basic study on the mechanical effects of ultrasound exposure on biological tissues, the relationship between cytoskeleton development and mechanotransduction sensitivity was investigated using cardiomyocytes isolated from neonatal rats. The cardiomyocytes were cultured on a coverslip with and without an actin polymerization inhibitor, latrunculin A. Development of the cytoskeleton was visualized using a confocal microscope, indicating that the inhibitor can control cytoskeleton development. Mechanotransduction sensitivity was evaluated by determining the threshold condition of ultrasound exposure for induction of pulsation disruption. One-shot of puled ultrasound of 1 MHz in center frequency and 1.3 MPa in peak negative pressure was used to induce pulsation disruption, and a series of ultrasound pulses with increasing burst cycles was used in experiments. The results showed that suppression of cytoskeletal development requires a longer duration of ultrasound pulse to induce disruption, indicating the importance to consider cell morphology in studies on mechanotransduction of cells in vivo.
机译:作为超声暴露对生物组织的机械效应的基本研究,研究了从新生大鼠分离的心肌细胞研究了细胞骨架发育与机电常见敏感性的关系。在盖玻片上培养心肌细胞,没有肌动蛋白聚合抑制剂,使用共聚焦显微镜观察细胞骨架的开发,表明抑制剂可以控制细胞骨架发育。通过确定超声曝光诱导脉动破坏的阈值条件来评价机械手术敏感性。在中心频率下1MHz的脉冲超声波的一次射击,峰值负压下的1.3MPa用于诱导脉动破坏,并且在实验中使用了一系列具有增加脉冲循环的超声脉冲。结果表明,细胞骨骼发育的抑制需要较长的超声脉冲持续时间来诱导破坏,表明在体内电机调查中考虑细胞形态的重要性。

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