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将原子力显微镜的应用扩展到用于单细胞研究的流体原子力显微镜中。

Extending applications of AFM to fluidic AFM in single living cell studies.

机构信息

Department of Pathology, University of Texas Medical Branch, Galveston, Texas, USA.

The Estelle and Daniel Maggin Department of Neurology, Icahn School of Medicine at Mount Sinai, New York City, New York, USA.

出版信息

J Cell Physiol. 2022 Aug;237(8):3222-3238. doi: 10.1002/jcp.30809. Epub 2022 Jun 13.

Abstract

In this article, a review of a series of applications of atomic force microscopy (AFM) and fluidic Atomic Force Microscopy (fluidic AFM, hereafter fluidFM) in single-cell studies is presented. AFM applications involving single-cell and extracellular vesicle (EV) studies, colloidal force spectroscopy, and single-cell adhesion measurements are discussed. FluidFM is an offshoot of AFM that combines a microfluidic cantilever with AFM and has enabled the research community to conduct biological, pathological, and pharmacological studies on cells at the single-cell level in a liquid environment. In this review, capacities of fluidFM are discussed to illustrate (1) the speed with which sequential measurements of adhesion using coated colloid beads can be done, (2) the ability to assess lateral binding forces of endothelial or epithelial cells in a confluent cell monolayer in an appropriate physiological environment, and (3) the ease of measurement of vertical binding forces of intercellular adhesion between heterogeneous cells. Furthermore, key applications of fluidFM are reviewed regarding to EV absorption, manipulation of a single living cell by intracellular injection, sampling of cellular fluid from a single living cell, patch clamping, and mass measurements of a single living cell.

摘要

本文综述了原子力显微镜(AFM)和流体原子力显微镜(fluidic AFM,以下简称 fluidFM)在单细胞研究中的一系列应用。讨论了涉及单细胞和细胞外囊泡(EV)研究、胶体力谱学以及单细胞黏附测量的 AFM 应用。fluidFM 是 AFM 的分支,它将微流控悬臂与 AFM 结合在一起,使研究人员能够在液体环境中在单细胞水平上进行生物学、病理学和药理学研究。在这篇综述中,讨论了 fluidFM 的能力,以说明:(1)使用涂覆胶体珠进行连续黏附测量的速度;(2)在适当的生理环境中评估单层细胞中内皮细胞或上皮细胞的侧向结合力的能力;(3)测量异质细胞间细胞间黏附的垂直结合力的简便性。此外,还综述了 fluidFM 在 EV 吸收、通过细胞内注射对单个活细胞进行操作、从单个活细胞中采集细胞液、膜片钳和单个活细胞的质量测量等方面的关键应用。

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