School of Engineering and Applied Science, Yale University, 15 Prospect St., Becton Center, Room 608, New Haven, CT 06520-8267, USA.
Lab Chip. 2012 Jan 7;12(1):190-6. doi: 10.1039/c1lc20864k. Epub 2011 Nov 11.
We present a low-cost, flow-through nanocytometer that utilizes a colloidal suspension of non-functionalized magnetic nanoparticles for label-free manipulation and separation of microparticles. Our size-based separation is mediated by angular momentum transfer from magnetically excited ferrofluid particles to microparticles. The nanocytometer is capable of rapidly sorting and focusing two or more species, with up to 99% separation efficiency and a throughput of 3 × 10(4) particles/s per mm(2) of channel cross-section. The device is readily scalable and applicable to live cell sorting with biocompatible ferrofluids, offering competitive cytometer performance in a simple and inexpensive package.
我们提出了一种低成本、直通式的纳流细胞仪,它利用未功能化的磁性纳米粒子胶体悬浮液来实现无标记的微粒子操控和分离。我们的基于尺寸的分离是通过磁激发铁磁流体粒子向微粒子传递角动量来介导的。该纳流细胞仪能够快速分选和聚焦两种或更多种物质,分离效率高达 99%,每平方毫米通道截面的吞吐量为 3×10(4)个/秒。该装置易于扩展,适用于使用生物相容性铁磁流体的活细胞分选,在简单且廉价的封装中提供了具有竞争力的细胞仪性能。