Boer G, Johann R, Rohner J, Merenda F, Delacrétaz G, Renaud Ph, Salathé R-P
ARCoptix S.A., Ch. Trois-Portes 18, NE-2000 Neuchâtel, Switzerland.
Rev Sci Instrum. 2007 Nov;78(11):116101. doi: 10.1063/1.2804768.
An array of four independent laser traps is combined with a polydimethylsiloxane microfluidic chip to form a very compact system allowing parallel processing of biological objects. Strong three dimensional trapping allows holding objects such as functionalized beads in flows at speeds near 1 mm/s, enabling rapid processing. By pressure control of the inlet flows, the trapped objects can be put in contact with different solutions for analysis purpose. This setup, including a fluorescence excitation-detection scheme, offers the potential to perform complex biochemical manipulations on an ensemble of microparticles.
一个由四个独立激光阱组成的阵列与一个聚二甲基硅氧烷微流控芯片相结合,形成了一个非常紧凑的系统,可对生物物体进行并行处理。强大的三维捕获功能能够以接近1毫米/秒的速度在流动中捕获诸如功能化微珠等物体,从而实现快速处理。通过对入口流动进行压力控制,可使捕获的物体与不同溶液接触以用于分析目的。这种设置,包括荧光激发 - 检测方案,为在一组微粒上进行复杂的生化操作提供了可能性。