机械转化
背景(考古学)
力谱学
张力(地质)
粘附
生物物理学
受体
化学
分子
整合素
细胞生物学
纳米技术
材料科学
复合材料
生物
生物化学
极限抗拉强度
有机化学
古生物学
作者
Myung Hyun Jo,Paul Meneses,Olivia Yang,Claudia C. Carcamo,Sushil Pangeni,Taekjip Ha
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-03-21
卷期号:383 (6689): 1374-1379
被引量:14
标识
DOI:10.1126/science.adk6921
摘要
Cells connect with their environment through surface receptors and use physical tension in receptor–ligand bonds for various cellular processes. Single-molecule techniques have revealed bond strength by measuring “rupture force,” but it has long been recognized that rupture force is dependent on loading rate—how quickly force is ramped up. Thus, the physiological loading rate needs to be measured to reveal the mechanical strength of individual bonds in their functional context. We have developed an overstretching tension sensor (OTS) to allow more accurate force measurement in physiological conditions with single-molecule detection sensitivity even in mechanically active regions. We used serially connected OTSs to show that the integrin loading rate ranged from 0.5 to 4 piconewtons per second and was about three times higher in leukocytes than in epithelial cells.
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