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Untethered Single Cell Grippers for Active Biopsy

机译:用于活检的无限单细胞夹具

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摘要

Single cell manipulation is important in biosensing, biorobotics, and quantitative cell analysis. Although microbeads, droplets, and microrobots have been developed previously, it is still challenging to simultaneously excise, capture, and manipulate single cells in a biocompatible manner. Here, we describe untethered single cell grippers, that can be remotely guided and actuated on-demand to actively capture or excise individual or few cells. We describe a novel molding method to micropattern a thermally responsive wax layer for biocompatible motion actuation. The multifingered grippers derive their energy from the triggered release of residual differential stress in bilayer hinges composed of silicon oxides. A magnetic layer enables remote guidance through narrow conduits and fixed tissue sections ex vivo. Our results provide an important advance in high-throughput single cell scale biopsy tools important to lab-on-a-chip devices, microrobotics, and minimally invasive surgery.
机译:单细胞操纵在生物传感,生物摩托学和定量细胞分析中是重要的。 虽然先前已经开发了微生物,液滴和微机器,但以生物相容性方式同时消除,捕获和操纵单个细胞仍然具有挑战性。 在这里,我们描述了不受限制的单个电池夹具,可以远程引导和致动以应对捕获或消除个体或少数细胞。 我们描述了一种用于微透镜的用于生物相容性运动致动的热响应蜡层的新型模塑方法。 多聚夹子夹持器从双层铰链中的残留差分应力的触发释放的悬垂器导出它们的能量。 磁性层通过窄导管和固定的组织部分来实现远程引导。 我们的结果提供了高通量单细胞尺度活组织检查工具中的重要提前,对于实验室设备,微生物和微创手术很重要。

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