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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >On-Chip Cell Sorting System Using Thermoreversible Gelation Polymer
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On-Chip Cell Sorting System Using Thermoreversible Gelation Polymer

机译:使用热可逆凝胶聚合物的片上细胞分选系统

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摘要

We have developed a microfabricated fluorescence-activated cell sorter system using laminar flow of thermoreversible gelation polymer (TGP). The glass sorter chip consists of microchannels with two inlets for sample and buffer solutions, and two outlets for collection and waste of the specimen. A biological specimen containing fluorescently labeled cells, is mixed with a solution containing a TGP. The laminar flow of the mixed solution and buffer solution are then introduced into the sorter chip. The fluorescently labeled target cells were detected with sensitive fluorescence microscopy. In the absence of a fluorescence signal, the laminar flow of the specimen is directed into the waste channel. Upon detection of a fluorescence signal from the target cells, the sol–gel transformation was locally induced by site-directed infrared laser irradiation for the flow switching and for allowing the fluorescent cells to be channeled into the collection reservoir. The flow switching time of 100 ms was achieved. Using this system, we have demonstrated the sorting of Escherichia coli cells expressing fluorescent proteins. These cells were found to be viable after extraction from the sorting system, indicating no damage to the cells.
机译:我们已经开发了一种利用热可逆凝胶聚合物(TGP)的​​层流微制造的荧光激活细胞分选系统。玻璃分选器芯片由微通道组成,该微通道具有两个用于样品和缓冲溶液的入口,以及两个用于收集和浪费样品的出口。将包含荧光标记细胞的生物样本与包含TGP的溶液混合。然后将混合溶液和缓冲溶液的层流引入分选器芯片。用灵敏的荧光显微镜检测荧光标记的靶细胞。在没有荧光信号的情况下,样品的层流被引导到废物通道中。在检测到目标细胞发出的荧光信号后,通过定点红外激光辐照局部诱导了溶胶-凝胶转变,以进行流量切换并允许荧光细胞进入收集池。实现了100 ms的流量切换时间。使用该系统,我们已经证明了表达荧光蛋白的大肠杆菌细胞的分类。从分选系统中提取这些细胞后发现它们是可行的,表明对细胞没有损害。

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