Wohl Ishay, Sherman Eilon
Racah Institute of Physics, The Hebrew University, Jerusalem, Israel.
Front Cell Dev Biol. 2021 Jun 10;9:590655. doi: 10.3389/fcell.2021.590655. eCollection 2021.
Mechanical vibrations affect multiple cell properties, including its diffusivity, entropy, internal content organization, and thus-function. Here, we used Differential Interference Contrast (DIC), confocal, and Total Internal Reflection Fluorescence (TIRF) microscopies to study mechanical vibrations in live (Jurkat) T cells. Vibrations were measured via the motion of intracellular particles and plasma membrane. These vibrations depend on adenosine triphosphate (ATP) consumption and on Myosin II activity. We then used spectral analysis of these vibrations to distinguish the effects of thermal agitation, ATP-dependent mechanical work and cytoskeletal visco-elasticity. Parameters of spectral analyses could be related to mean square displacement (MSD) analyses with specific advantages in characterizing intracellular mechanical work. We identified two spectral ranges where mechanical work dominated vibrations of intracellular components: 0-3 Hz for intracellular particles and the plasma-membrane, and 100-150 Hz for the plasma-membrane. The 0-3 Hz vibrations of the cell membrane that we measured in an experimental model of immune synapse (IS) are expected to affect the IS formation and function in effector cells. It may also facilitate immunological escape of extensively vibrating malignant cells.
机械振动会影响多种细胞特性,包括其扩散性、熵、内部成分组织以及功能。在此,我们使用微分干涉对比(DIC)、共聚焦和全内反射荧光(TIRF)显微镜技术来研究活的(Jurkat)T细胞中的机械振动。通过细胞内颗粒和质膜的运动来测量振动。这些振动取决于三磷酸腺苷(ATP)的消耗以及肌球蛋白II的活性。然后,我们对这些振动进行光谱分析,以区分热搅动、ATP依赖性机械功和细胞骨架粘弹性的影响。光谱分析的参数可能与均方位移(MSD)分析相关,在表征细胞内机械功方面具有特定优势。我们确定了两个光谱范围,其中机械功主导细胞内成分的振动:细胞内颗粒和质膜为0 - 3Hz,质膜为100 - 150Hz。我们在免疫突触(IS)实验模型中测量到的细胞膜0 - 3Hz振动预计会影响效应细胞中IS的形成和功能。它也可能促进大量振动的恶性细胞的免疫逃逸。