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Pulsed laser activated cell sorter (PLACS) for high-throughput fluorescent mammalian cell sorting

机译:脉冲激光激活细胞分选仪(PLACS)用于高通量荧光哺乳动物细胞分选

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We present a Pulsed Laser Activated Cell Sorter (PLACS) realized by exciting laser induced cavitation bubbles in a PDMS microfluidic channel to create high speed liquid jets to deflect detected fluorescent samples for high speed sorting. Pulse laser triggered cavitation bubbles can expand in few microseconds and provide a pressure higher than tens of MPa for fluid perturbation near the focused spot. This ultrafast switching mechanism has a complete on-off cycle less than 20 μsec. Two approaches have been utilized to achieve 3D sample focusing in PLACS. One is relying on multilayer PDMS channels to provide 3D hydrodynamic sheath flows. It offers accurate timing control of fast (2 m sec~(-1)) passing particles so that synchronization with laser bubble excitation is possible, an critically important factor for high purity and high throughput sorting. PLACS with 3D hydrodynamic focusing is capable of sorting at 11,000 cells/sec with >95% purity, and 45,000 cells/sec with 45% purity using a single channel in a single step. We have also demonstrated 3D focusing using inertial flows in PLACS. This sheathless focusing approach requires 10 times lower initial cell concentration than that in sheath-based focusing and avoids severe sample dilution from high volume sheath flows. Inertia PLACS is capable of sorting at 10,000 particles sec~(-1) with >90% sort purity.
机译:我们提出了一种脉冲激光激活细胞分选仪(PLACS),该器件通过激发PDMS微流体通道中的激光诱导的空化气泡来产生高速液体射流来偏转检测到的荧光样品,从而实现高速分选。脉冲激光触发的空化气泡可以在几微秒内膨胀,并为聚焦点附近的流体扰动提供高于数十MPa的压力。这种超快速的开关机制具有小于20微秒的完整通断周期。已经使用两种方法在PLACS中实现3D样本聚焦。一种是依靠多层PDMS通道来提供3D流体动力鞘流。它提供了对快速通过(2 m sec〜(-1))粒子的精确定时控制,因此可以与激光气泡激发进行同步,这对于高纯度和高通量分选至关重要。具有3D流体动力聚焦功能的PLACS能够通过一个步骤在单个步骤中以11,000个细胞/秒的速度进行分类,其纯度> 95%,并且以45,000个细胞/秒的速度进行分离,其纯度为45%。我们还演示了在PLACS中使用惯性流进行3D聚焦。这种无鞘聚焦方法所需的初始细胞浓度比基于鞘的聚焦方法低10倍,并且避免了高体积鞘流对样品的严重稀释。惯性PLACS能够以10,000 sec〜(-1)的速度进行分选,分选纯度> 90%。

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