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磁驱动花生胶体马达用于细胞操控和图案化。

Magnetically Actuated Peanut Colloid Motors for Cell Manipulation and Patterning.

机构信息

State Key Laboratory of Robotics and Systems, Key Laboratory of Microsystems and Microstructures Manufacturing (Ministry of Education) , Harbin Institute of Technology , Harbin 150080 , China.

出版信息

ACS Nano. 2018 Mar 27;12(3):2539-2545. doi: 10.1021/acsnano.7b08344. Epub 2018 Feb 16.

Abstract

We report a magnetically actuated peanut-shaped hematite colloid motor that can not only move in a rolling or wobbling mode in fluids but also perform single cell manipulation and patterning in a noncontact way. The peanut motor in a rolling mode can reach a maximal velocity of 10.6 μm s under a rotating magnetic field of 130 Hz and 6.3 mT and achieve a more precisely controllable motion in predefined tracks. While in a wobbling mode, the motor reaches a maximal velocity of 14.5 μm s under a conical rotating magnetic field of 80 Hz and 6.3 mT and can climb over steep slopes to adapt the motor for more complex environments. The fluid flow simulation results reveal that the difference between two movement modes mostly comes from the distribution discrepancy of the flow fields near the motors. Through the integration of the rolling and wobbling movement, these peanut motors can autonomously transport and release cells to a predefined site and thus form complex cell patterns without a physical contact. Such magnetically actuated peanut colloid motors afford a biofriendly technique for manipulation and patterning of cells, cell measurements, and intracellular communication investigations.

摘要

我们报告了一种磁驱动的花生形磁铁矿胶体马达,它不仅可以在液体中以滚动或摆动模式运动,还可以非接触式地进行单细胞操作和图案化。在 130 Hz 和 6.3 mT 的旋转磁场下,滚动模式的花生马达可以达到 10.6 μm s 的最大速度,并在预定轨道上实现更精确的可控运动。而在摆动模式下,马达在 80 Hz 和 6.3 mT 的锥形旋转磁场下可以达到 14.5 μm s 的最大速度,并且可以爬上陡峭的斜坡,使马达适应更复杂的环境。流体流动模拟结果表明,两种运动模式的差异主要来自于马达附近流场的分布差异。通过滚动和摆动运动的结合,这些花生马达可以自主地将细胞运输和释放到预定的位置,从而形成无需物理接触的复杂细胞图案。这种磁驱动的花生胶体马达为细胞的操作和图案化、细胞测量和细胞内通信研究提供了一种生物友好的技术。

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