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用于测量酵母力学特性的分析模型。

Analytical Models for Measuring the Mechanical Properties of Yeast.

机构信息

Research Laboratory of Biophysics, National University of Science and Technology MISiS, Moscow 119049, Russia.

出版信息

Cells. 2023 Jul 27;12(15):1946. doi: 10.3390/cells12151946.

Abstract

The mechanical properties of yeast play an important role in many biological processes, such as cell division and growth, maintenance of internal pressure, and biofilm formation. In addition, the mechanical properties of cells can indicate the degree of damage caused by antifungal drugs, as the mechanical parameters of healthy and damaged cells are different. Over the past decades, atomic force microscopy (AFM) and micromanipulation have become the most widely used methods for evaluating the mechanical characteristics of microorganisms. In this case, the reliability of such an estimate depends on the choice of mathematical model. This review presents various analytical models developed in recent years for studying the mechanical properties of both cells and their individual structures. The main provisions of the applied approaches are described along with their limitations and advantages. Attention is paid to the innovative method of low-invasive nanomechanical mapping with scanning ion-conductance microscopy (SICM), which is currently starting to be successfully used in the discovery of novel drugs acting on the yeast cell wall and plasma membrane.

摘要

酵母的力学特性在许多生物学过程中起着重要作用,例如细胞分裂和生长、内部压力的维持以及生物膜的形成。此外,细胞的力学特性可以表明抗真菌药物造成的损伤程度,因为健康细胞和受损细胞的力学参数不同。在过去的几十年中,原子力显微镜(AFM)和微操作已成为评估微生物力学特性最广泛使用的方法。在这种情况下,这种估计的可靠性取决于数学模型的选择。本综述介绍了近年来为研究细胞及其单个结构的力学特性而开发的各种分析模型。描述了所应用方法的主要规定以及它们的局限性和优点。本文还关注了创新的低侵入性纳米力学映射方法,即扫描离子电导显微镜(SICM),该方法目前已开始成功用于发现作用于酵母细胞壁和质膜的新型药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e282/10417110/862de00a3e9f/cells-12-01946-g001.jpg

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