Suppr超能文献

软骨细胞中的线粒体动力学及其与细胞质力学特性的联系。

Mitochondrial dynamics in chondrocytes and their connection to the mechanical properties of the cytoplasm.

作者信息

Bomzon Ze'ev, Knight Martin M, Bader Dan L, Kimmel Eitan

机构信息

Faculty of Civil and Environmental Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

J Biomech Eng. 2006 Oct;128(5):674-9. doi: 10.1115/1.2246239.

Abstract

BACKGROUND

The motion and redistribution of intracellular organelles is a fundamental process in cells. Organelle motion is a complex phenomenon that depends on a large number of variables including the shape of the organelle, the type of motors with which the organelles are associated, and the mechanical properties of the cytoplasm. This paper presents a study that characterizes the diffusive motion of mitochondria in chondrocytes seeded in agarose constructs and what this implies about the mechanical properties of the cytoplasm.

METHOD OF APPROACH

Images showing mitochondrial motion in individual cells at 30 s intervals for 15 min were captured with a confocal microscope. Digital image correlation was used to quantify the motion of the mitochondria, and the mean square displacement (MSD) was calculated. Statistical tools for testing whether the characteristic motion of mitochondria varied throughout the cell were developed. Calculations based on statistical mechanics were used to establish connections between the measured MSDs and the mechanical nature of the cytoplasm.

RESULTS

The average MSD of the mitochondria varied with time according to a power law with the power term greater than 1, indicating that mitochondrial motion can be viewed as a combination of diffusion and directional motion. Statistical analysis revealed that the motion of the mitochondria was not uniform throughout the cell, and that the diffusion coefficient may vary by over 50%, indicating intracellular heterogeneity. High correlations were found between movements of mitochondria when they were less than 2 microm apart. The correlation is probably due to viscoelastic properties of the cytoplasm. Theoretical analysis based on statistical mechanics suggests that directed diffusion can only occur in a material that behaves like a fluid on large time scales.

CONCLUSIONS

The study shows that mitochondria in different regions of the cell experience different characteristic motions. This suggests that the cytoplasm is a heterogeneous viscoelastic material. The study provides new insight into the motion of mitochondria in chondrocytes and its connection with the mechanical properties of the cytoplasm.

摘要

背景

细胞内细胞器的运动和重新分布是细胞中的一个基本过程。细胞器运动是一种复杂的现象,它取决于大量变量,包括细胞器的形状、与细胞器相关的马达类型以及细胞质的力学性质。本文呈现了一项研究,该研究描述了接种在琼脂糖构建体中的软骨细胞中线粒体的扩散运动,以及这对细胞质力学性质的启示。

研究方法

使用共聚焦显微镜每隔30秒拍摄一次单个细胞中线粒体运动的图像,持续15分钟。采用数字图像相关技术来量化线粒体的运动,并计算均方位移(MSD)。开发了用于测试线粒体的特征运动在整个细胞中是否变化的统计工具。基于统计力学的计算被用于建立测量的MSD与细胞质力学性质之间的联系。

结果

线粒体的平均MSD随时间按幂律变化,幂项大于1,这表明线粒体运动可被视为扩散运动和定向运动的组合。统计分析表明,线粒体在整个细胞中的运动并不均匀,扩散系数可能变化超过50%,这表明细胞内存在异质性。当线粒体之间的距离小于2微米时,它们的运动之间存在高度相关性。这种相关性可能是由于细胞质的粘弹性特性。基于统计力学的理论分析表明,定向扩散只能发生在大时间尺度上表现得像流体的物质中。

结论

该研究表明,细胞不同区域的线粒体经历不同的特征运动。这表明细胞质是一种异质粘弹性材料。该研究为软骨细胞中线粒体的运动及其与细胞质力学性质的联系提供了新的见解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验