Dipartimento Scienze Fisiche Universitá di Napoli Federico II, Complesso Universitario Monte S. Angelo, via Cintia 80126 Napoli, Italy.
J Biophotonics. 2011 May;4(5):324-34. doi: 10.1002/jbio.201000076. Epub 2010 Aug 16.
We studied the mechanical properties of living starfish oocytes belonging to two species, Astropecten Auranciacus and Asterina pectinifera, over a wide range of timescales. We monitored the Brownian motion of microspheres injected in the cytoplasm using laser particle-tracking (LPT) and video multiple-particle-tracking (MPT) techniques, to explore high- and low-frequency response ranges, respectively. The analysis of the mean-square-displacements (MSD) allowed us to characterize the samples on different timescales. The MSD behavior is explained by three power-law exponents: for short times (τ < 1 ms) it reflects the semiflexible behavior of the actin network; for intermediate timescales (1 ms < τ < 1 s) it is similar to that of a soft-glass material; finally for long times (τ > 1 s) it behaves mainly like a viscous medium. We computed and compared the viscoelastic moduli using a recently proposed model describing the frequency response of the cell material. The large fluctuations found in the MSD over hundreds of trajectories indicate and confirm the significant cytoplasm heterogeneity.
我们研究了两种海星(Astropecten Auranciacus 和 Asterina pectinifera)的活卵母细胞的力学性能,跨越了广泛的时间尺度。我们使用激光粒子跟踪(LPT)和视频多粒子跟踪(MPT)技术监测注射到细胞质中的微球的布朗运动,分别探索高和低频率响应范围。均方位移(MSD)的分析使我们能够在不同的时间尺度上对样品进行特征化。MSD 行为由三个幂律指数解释:对于短时间(τ < 1 ms),它反映了肌动蛋白网络的半柔性行为;对于中间时间尺度(1 ms < τ < 1 s),它类似于软玻璃材料;最后对于长时间(τ > 1 s),它主要表现为粘性介质。我们使用最近提出的描述细胞材料频率响应的模型计算并比较了粘弹性模量。数百条轨迹上 MSD 中发现的大波动表明并证实了细胞质的显著异质性。