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首页> 外文期刊>Lab on a chip >Membrane nanotubes drawn by optical tweezers transmit electrical signals between mammalian cells over long distances
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Membrane nanotubes drawn by optical tweezers transmit electrical signals between mammalian cells over long distances

机译:用光镊画出的膜纳米管在哺乳动物细胞之间长距离传输电信号

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Biological cells continuously change shape allowing essential functions such as cell motility, vesicle-mediated release/uptake of soluble and membrane components or nanotube-mediated cell-cell communications. Here we use single cell micromanipulation to induce functional changes of cell shape for nanobiotechnological applications. Optical tweezers are focused on the plasma membrane of living cells to pull membrane nanotubes of ~200 nanometre diameters and 100 micrometre lengths. Upon switching off the laser tweezer membrane nanotubes relax back to the cell surface. Single-exponential relaxation times deliver local mechanical properties of cells' plasma membrane. Nanotubes pulled beyond 100 micrometre tear off and form micrometre-sized vesicles carrying functional membrane receptors and cytoplasmic signaling components. Membrane nanotubes from one cell can be contacted to adjacent cells forming via connexins intercellular electrical connections within seconds in all directions. Our method opens broad applications for multiplexing single-cell analytics to submicrometer/subfemtoliter ranges and for creating artificial intercellular signaling networks, both not attainable by current methodologies.
机译:生物细胞不断改变形状,从而实现基本功能,例如细胞运动,囊泡介导的可溶性和膜成分的释放/摄取或纳米管介导的细胞间通讯。在这里,我们使用单细胞显微操作来诱导细胞形状的功能变化,以用于纳米生物技术应用。光学镊子聚焦在活细胞的质膜上,拉出直径约200纳米,长度100微米的膜纳米管。关闭激光镊子膜后,纳米管会松弛回到细胞表面。单指数松弛时间提供了细胞质膜的局部机械性能。纳米管的拉力超过100微米,形成带有功能性膜受体和细胞质信号成分的微米大小的囊泡。来自一个细胞的膜纳米管可以通过连接蛋白在几秒钟内在所有方向上与相邻细胞接触,形成连接蛋白。我们的方法为将单细胞分析多路复用到亚微米/亚飞升范围以及创建人工细胞间信号网络打开了广泛的应用,这都是当前方法无法实现的。

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