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解析塑造线粒体运动的细胞内力。

Deciphering the intracellular forces shaping mitochondrial motion.

机构信息

CONICET - Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Instituto de Cálculo (IC), Buenos Aires, 1428, Argentina.

Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Física, Buenos Aires, 1428, Argentina.

出版信息

Sci Rep. 2024 Oct 13;14(1):23914. doi: 10.1038/s41598-024-74734-5.

Abstract

We propose a novel quantitative method to explore the forces affecting mitochondria within living cells in an almost non-invasive fashion. This new tool enables the detection of localized mechanical impulses on these organelles that occur amidst the stationary fluctuations caused by the thermal jittering in the cytoplasm. Recent experimental evidence shows that the action of mechanical forces has important effects on the dynamics, morphology and distribution of mitochondria in cells. In particular, their crosstalk with the cytoskeleton has been found to alter these organelles function; however, the mechanisms underlying this phenomenon are largely unknown. Our results highlight the different functions that cytoskeletal networks play in shaping mitochondrial dynamics. This work presents a novel technique to extend our knowledge of how the impact of mechanical cues can be quantified at the single organelle level. Moreover, this approach can be expanded to the study of other organelles or biopolymers.

摘要

我们提出了一种新的定量方法,以近乎非侵入的方式探索活细胞内影响线粒体的力。这种新工具能够检测到细胞器上局部的机械脉冲,这些脉冲发生在细胞质热抖动引起的固定波动中。最近的实验证据表明,机械力的作用对细胞中线粒体的动力学、形态和分布有重要影响。特别是,它们与细胞骨架的相互作用被发现改变了这些细胞器的功能;然而,这种现象的机制在很大程度上是未知的。我们的结果强调了细胞骨架网络在塑造线粒体动力学方面的不同功能。这项工作提出了一种新的技术,可以扩展我们对机械线索的影响如何在单个细胞器水平上进行量化的认识。此外,这种方法可以扩展到其他细胞器或生物聚合物的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4416/11471753/3be3476285a6/41598_2024_74734_Fig1_HTML.jpg

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