Division of Materials Science, Nara Institute of Science and Technology, Ikoma 630-0192, Japan.
Department of Chemistry, The University of Tokyo, Tokyo 113-0033, Japan.
Lab Chip. 2019 Aug 21;19(16):2669-2677. doi: 10.1039/c9lc00324j. Epub 2019 Jul 23.
High-speed isolation of microparticles (e.g., microplastics, heavy metal particles, microbes, cells) from heterogeneous populations is the key element of high-throughput sorting instruments for chemical, biological, industrial and medical applications. Unfortunately, the performance of continuous microparticle isolation or so-called sorting is fundamentally limited by the trade-off between throughput, purity, and yield. For example, at a given throughput, high-purity sorting needs to sacrifice yield, or vice versa. This is due to Poisson statistics of events (i.e., microparticles, microparticle clusters, microparticle debris) in which the interval between successive events is stochastic and can be very short. Here we demonstrate an on-chip microparticle sorter with an ultrashort switching window in both time (10 μs) and space (10 μm) at a high flow speed of 1 m s, thereby overcoming the Poisson trade-off. This is made possible by using femtosecond laser pulses that can produce highly localized transient cavitation bubbles in a microchannel to kick target microparticles from an acoustically focused, densely aligned, bumper-to-bumper stream of microparticles. Our method is important for rare-microparticle sorting applications where both high purity and high yield are required to avoid missing rare microparticles.
从多相群体中高速分离微粒子(例如微塑料、重金属颗粒、微生物、细胞)是用于化学、生物、工业和医疗应用的高通量分选仪器的关键要素。不幸的是,连续微粒子隔离或所谓的分选的性能从根本上受到通量、纯度和产率之间权衡的限制。例如,在给定的通量下,高纯度分选需要牺牲产率,或者反之亦然。这是由于事件的泊松统计(即微粒子、微粒子簇、微粒子碎片),其中连续事件之间的间隔是随机的,并且可能非常短。在这里,我们展示了一种在 1 米/秒的高流速下具有超短时间(10 μs)和空间(10 μm)切换窗口的片上微粒子分选器,从而克服了泊松权衡。这是通过使用飞秒激光脉冲来实现的,飞秒激光脉冲可以在微通道中产生高度局域化的瞬态空化气泡,从而将目标微粒子从声聚焦的、密集对齐的、 bumper-to-bumper 微粒子流中踢出来。我们的方法对于需要高纯度和高产量以避免错过稀有微粒子的稀有微粒子分选应用非常重要。