Max Planck Institute of Molecular Cell Biology and Genetics Dresden, Dresden, Germany.
Nano Lett. 2012 Jan 11;12(1):348-53. doi: 10.1021/nl203632y. Epub 2011 Dec 12.
First lab-on-chip devices based on active transport by biomolecular motors have been demonstrated for basic detection and sorting applications. However, to fully employ the advantages of such hybrid nanotechnology, versatile spatial and temporal control mechanisms are required. Using a thermo-responsive polymer, we demonstrate the selective starting and stopping of modified microtubules gliding on a kinesin-1-coated surface. This approach allows the self-organized separation of multiple microtubule populations and their respective cargoes.
基于生物分子马达的主动运输的第一代芯片实验室设备已经被证明可用于基本的检测和分类应用。然而,为了充分利用这种混合纳米技术的优势,需要灵活的空间和时间控制机制。我们使用一种温度响应聚合物,演示了在肌球蛋白-1 涂覆的表面上滑动的修饰微管的选择性启动和停止。这种方法允许多个微管群体及其各自的货物的自组织分离。