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Journal Article

Micropipette-based biomechanical nanotools on living cells

Haoqing Wang; Fang Zhou; Yuze Guo; Lining Arnold Ju
European Biophysics Journal · Vol. 51, Issue 2 · pp. 119-133 · 2022

Abstract

Mechanobiology is an emerging field at the interface of biology and mechanics, investigating the roles of mechanical forces within biomolecules, organelles, cells, and tissues. As a highlight, the recent advances of micropipette-based aspiration assays and dynamic force spectroscopies such as biomembrane force probe (BFP) provide unprecedented mechanobiological insights with excellent live-cell compatibility. In their classic applications, these assays measure force-dependent ligand–receptor-binding kinetics, protein conformational changes, and cellular mechanical properties such as cortical tension and stiffness. In recent years, when combined with advanced microscopies in high spatial and temporal resolutions, these biomechanical nanotools enable characterization of receptor-mediated cell mechanosensing and subsequent organelle behaviors at single-cellular and molecular level. In this review, we summarize the latest developments of these assays for live-cell mechanobiology studies. We also provide perspectives on their future upgrades with multimodal integration and high-throughput capability.

Bibliographic Information

JournalEuropean Biophysics Journal
PublisherSpringer
Publication Date2022-03-01
Publication Year2022
Volume51
Issue2
Pages119-133
Document TypeJournal Article
Print ISSN0175-7571
eISSN1432-1017
DOI10.1007/s00249-021-01587-5

Access Information

NARA Access Coverage1974-01-01~Current
Journal Homepagehttps://www.springer.com/journal/249
Publisher PageOpen Publisher Page
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