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首页> 外文期刊>Russian Journal of Developmental Biology >Development of Methods and Techniques to Visualize Mechanical Tension in Embryos Using Genetically Encoded Fluorescent Mechanosensors
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Development of Methods and Techniques to Visualize Mechanical Tension in Embryos Using Genetically Encoded Fluorescent Mechanosensors

机译:使用遗传编码荧光机械传感器在胚胎中可视化机械张力的方法和技术的发展

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摘要

Lately, the growing body of quantitative data has provided evidence of the importance of mechanical forces in embryogenesis. The study of spatial and temporal distribution of mechanical tension in the course of embryogenesis is one of the most important problems of modern developmental biology. Development of genetically encoded fluorescent mechanosensors allowed their application in an intravital study of mechanical tension in developing embryos via noninvasive techniques. The possibility of applying fluorescent mechanosensors based on vinculin and C-cadherin to visualize mechanical tension in tissues of Gallus and Xenopus embryos was studied. The methods to express and detect these proteins, as well as process the resulting images, were elaborated. The best results were obtained using Xenopus embryos and the vinculin-based mechanosensor.
机译:最近,越来越多的定量数据提供了胚胎发生中机械力的重要性。 胚胎发生过程中机械张力的空间和时间分布的研究是现代发展生物学中最重要的问题之一。 遗传编码的荧光机械传感器的开发允许它们在通过非侵入性技术开发胚胎的机械张力的胎隙研究中的应用。 研究了基于Vinculin和C-Cadherin应用荧光机械体系,以在巨大组织中可视化机械张力的可能性。 详细阐述了表达和检测这些蛋白质的方法以及加工所得到的图像。 使用Xenopus胚胎和基于Vinculin的机械传感器获得了最佳结果。

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