Institute for Integrative Nanosciences, Leibniz IFW Dresden, Helmholtzstraße 20, 01069, Dresden, Germany.
Research Center for Materials, Architectures and Integration of Nanomembranes (MAIN), TU Chemnitz, Rosenbergstraße 6, 09126, Chemnitz, Germany.
Angew Chem Int Ed Engl. 2020 Aug 24;59(35):15029-15037. doi: 10.1002/anie.202005657. Epub 2020 Jun 9.
An integrated system combining a magnetically-driven micromotor and a synthetized protein-based hyaluronic acid (HA) microflake is presented for the in situ selection and transport of multiple motile sperm cells (ca. 50). The system appeals for targeted sperm delivery in the reproductive system to assist fertilization or to deliver drugs. The binding mechanism between the HA microflake and sperm relies on the interactions between HA and the corresponding sperm HA receptors. Once sperm are captured within the HA microflake, the assembly is trapped and transported by a magnetically-driven helical microcarrier. The trapping of the sperm-microflake occurs by a local vortex induced by the microcarrier during rotation-translation under a rotating magnetic field. After transport, the microflake is enzymatically hydrolyzed by local proteases, allowing sperm to escape and finally reach the target location. This cargo-delivery system represents a new concept to transport not only multiple motile sperm but also other actively moving biological cargoes.
本文提出了一种将磁驱微电机和合成蛋白基透明质酸(HA)微片集成的系统,用于原位选择和输送多个游动精子(约 50 个)。该系统可用于在生殖系统中靶向输送精子以辅助受精或输送药物。HA 微片与精子的结合机制依赖于 HA 与相应精子 HA 受体之间的相互作用。一旦精子被捕获在 HA 微片中,组装体就会被一个磁驱动的螺旋微载体困住并输送。在旋转磁场下的旋转-平移过程中,微载体产生局部涡流,从而捕获精子-微片。运输后,通过局部蛋白酶将微片酶解,使精子逃逸,最终到达目标位置。这种货物输送系统代表了一种新概念,不仅可以输送多个游动精子,还可以输送其他主动运动的生物货物。