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Intracellular Microrheology of Motile Amoeba proteus

机译:变形虫变形杆菌的细胞内微流变学

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摘要

The motility of Amoeba proteus was examined using the technique of passive particle tracking microrheology, with the aid of newly developed particle tracking software, a fast digital camera, and an optical microscope. We tracked large numbers of endogeneous particles in the amoebae, which displayed subdiffusive motion at short timescales, corresponding to thermal motion in a viscoelastic medium, and superdiffusive motion at long timescales due to the convection of the cytoplasm. Subdiffusive motion was characterized by a rheological scaling exponent of 3/4 in the cortex, indicative of the semiflexible dynamics of the actin fibers. We observed shear-thinning in the flowing endoplasm, where exponents increased with increasing flow rate; i.e., the endoplasm became more fluid-like. The rheology of the cortex is found to be isotropic, reflecting an isotropic actin gel. A clear difference was seen between cortical and endoplasmic layers in terms of both viscoelasticity and flow velocity, where the profile of the latter is close to a Poiseuille flow for a Newtonian fluid.
机译:使用被动粒子跟踪微流变技术,借助新开发的粒子跟踪软件,快速数码相机和光学显微镜,对变形虫的运动进行了检查。我们追踪了变形虫中的大量内源性颗粒,这些内源性颗粒在短时间尺度上显示出亚扩散运动,这与粘弹性介质中的热运动相对应,而在长时尺度上则由于细胞质的对流而出现了超扩散运动。亚扩散运动的特征是皮质中的流变缩放指数为3/4,表明肌动蛋白纤维的半柔韧性动力学。我们在流动的内质中观察到了剪切稀化,其中指数随流速的增加而增加。即,内质变得更像流体。发现皮质的流变性是各向同性的,反映出各向同性的肌动蛋白凝胶。就粘弹性和流速而言,在皮质层和内质层之间看到了明显的差异,其中后者的轮廓接近牛顿流体的泊肃叶流。

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