俘获
存水弯(水管)
光学镊子
材料科学
校准
光电子学
寄主(生物学)
刚度
纳米技术
光学
物理
生物
复合材料
生态学
量子力学
气象学
作者
Dadi Xu,Liu Liu,Yawen Zheng,Yuyao Li,Pengfei Xu,Yang Liu,Hong‐Wu Tang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-05-16
标识
DOI:10.1021/acsnano.5c04890
摘要
Optical tweezers are considered a tool for trapping and measuring forces on single molecules and small particles. Current research mainly focuses on measuring force spectral information on particles suspended in solution. However, the viscoelastic environment within the cell presents additional challenges for the in situ calibration of force spectroscopy data. To address this issue, we used an active-passive calibration method to calibrate the optical trap stiffness in live cells through sinusoidal oscillation and spontaneous fluctuation responses. This technique was applied to in situ measurements of the optical trap stiffness and viscoelastic modulus of viruses inside the host cell. The results indicate that this method can measure the optical trap stiffness and related parameters of intracellular viruses at different frequencies. Moreover, we proceeded to confirm that using quantum dots labeled viruses inside cells increased the stiffness of the viral optical trap similar to that in fluid. This provides more robust support for future force measurements and analysis of the transport mechanisms of viruses trapped within live cells using optical tweezers.
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