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纳线磁力仪揭示具有左右不对称性的细胞扭矩。

Nanowire Magnetoscope Reveals a Cellular Torque with Left-Right Bias.

机构信息

CityU Shenzhen Research Institute , Shenzhen, 518057, China.

出版信息

ACS Nano. 2016 Aug 23;10(8):7409-17. doi: 10.1021/acsnano.6b01142. Epub 2016 Jul 13.

Abstract

Cellular force regulates many types of cell mechanics and the associated physiological behaviors. Recent evidence suggested that cell motion with left-right (LR) bias may be the origin of LR asymmetry in tissue architecture. As actomyosin activity was found essential in the process, it predicts a type of cellular force that coordinates the development of LR asymmetry in tissue formation. However, due to the lack of appropriate platform, cellular force with LR bias has not yet been found. Here we report a nanowire magnetoscope that reveals a rotating force-torque-exerted by cells. Ferromagnetic nanowires were deposited and internalized by micropatterned cells. Within a uniform, horizontal magnetic field, the nanowires that initially aligned with the magnetic field were subsequently rotated due to the cellular torque. We found that the torque is LR-biased depending on cell types. While NIH 3T3 fibroblasts and human vascular endothelial cells exhibited counterclockwise torque, C2C12 myoblasts showed torque with slight clockwise bias. Moreover, an actin ring composed of transverse arcs and radial fibers was identified as a major factor determining the LR bias of cellular torque, since the disruption of actin ring by biochemical inhibitors or elongated cell shape abrogated the counterclockwise bias of NIH 3T3 fibroblasts. Our finding reveals a LR-biased torque of single cells and a fundamental origin of cytoskeletal chirality. More broadly, we anticipate that our method will provide a different perspective on mechanics-related cell physiology and force transmission necessary for LR propagation in tissue formation.

摘要

细胞力调节多种类型的细胞力学和相关的生理行为。最近的证据表明,具有左右(LR)偏向的细胞运动可能是组织架构中 LR 不对称的起源。由于肌动球蛋白活性在该过程中被发现是必不可少的,因此它预测了一种细胞力,这种细胞力协调了组织形成中 LR 不对称的发展。然而,由于缺乏合适的平台,具有 LR 偏向的细胞力尚未被发现。在这里,我们报告了一种纳米线磁强计,该仪器揭示了细胞施加的旋转力-扭矩。铁磁纳米线被沉积并被微图案化的细胞内化。在均匀的水平磁场中,最初与磁场对齐的纳米线由于细胞扭矩而随后旋转。我们发现,扭矩取决于细胞类型而具有 LR 偏向性。虽然 NIH 3T3 成纤维细胞和人血管内皮细胞表现出逆时针扭矩,但 C2C12 成肌细胞显示出具有轻微顺时针偏向性的扭矩。此外,由横向弧和径向纤维组成的肌动蛋白环被确定为确定细胞扭矩 LR 偏向性的主要因素,因为肌动蛋白环的生化抑制剂破坏或拉长的细胞形状破坏了 NIH 3T3 成纤维细胞的逆时针偏向性。我们的发现揭示了单个细胞的 LR 偏向性扭矩和细胞骨架手性的基本起源。更广泛地说,我们预计我们的方法将为与力学相关的细胞生理学和组织形成中 LR 传播所需的力传递提供一个不同的视角。

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