位置:首页 >化学 >化学(综合) >ACS Nano >Magnetic Nanoparticles for Ultrafast Mechanical Control of Inner Ear Hair Cells

纳米磁性颗粒在内耳毛细胞超快机械控制方面的应用

Magnetic Nanoparticles for Ultrafast Mechanical Control of Inner Ear Hair Cells

作者:Jae-Hyun Lee;Ji-wook Kim;Michael Levy;Albert Kao;Seung-hyun Noh;Dolores Bozovic;Jinwoo Cheon;

关键词:magnetic nanoparticle,magnetic stimulation,hair cell,mechanosensitive ion channel

DOI:https://doi.org/10.1021/nn5020616

发表时间:2014年

  • 文献详情
  • 相似文献

摘要

我们介绍了立方磁性纳米颗粒作为精确和超快速控制机感细胞的有效工具。我们系统的时间分辨率约为先前使用的磁开关的1000倍,与当前最先进的光遗传学工具相当。本文报道的磁门开关的使用可以解决生物系统中研究机械转导的关键挑战。立方形磁性纳米颗粒设计用于结合细胞膜的组分,并可以通过电磁铁进行控制,对细胞施加皮克牛顿级的机械力。立方形纳米颗粒因此可以用于对内耳毛细胞纤毛位置的非接触机械控制,产生数十纳米的位移,具有亚毫秒级的时间分辨率。我们还证明了这种机械刺激导致离子流入毛细胞。我们的研究表明,磁门开关可以获得超快速的时间分辨率,并具有远程操纵和生物特异性的能力,这样的磁性系统可以用于研究各种感觉系统的机械传导过程。


Abstract

We introduce cubic magnetic nanoparticles as an effective tool for precise and ultrafast control of mechanosensitive cells. The temporal resolution of our system is ∼1000 times faster than previously used magnetic switches and is comparable to the current state-of-the-art optogenetic tools. The use of a magnetism-gated switch reported here can address the key challenges of studying mechanotransduction in biological systems. The cube-shaped magnetic nanoparticles are designed to bind to components of cellular membranes and can be controlled with an electromagnet to exert pico-Newtons of mechanical force on the cells. The cubic nanoparticles can thus be used for noncontact mechanical control of the position of the stereocilia of an inner ear hair cell, yielding displacements of tens of nanometers, with sub-millisecond temporal resolution. We also prove that such mechanical stimulus leads to the influx of ions into the hair cell. Our study demonstrates that a magnetic switch can yield ultrafast temporal resolution, and has capabilities for remote manipulation and biological specificity, and that such magnetic system can be used for the study of mechanotransduction processes of a wide range of sensory systems.