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A microfluidic system enabling Raman measurements of the oxygenation cycle in single optically trapped red blood cells

机译:一种微流体系统,可对单个光学捕获的红细胞中的氧合循环进行拉曼测量

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摘要

Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certain properties and following its dynamics after an environmental stimulation in real time using Raman spectroscopy.This is accomplished by combining a micro Raman set-up with optical tweezers and a microfluidic system.The latter gives full control over the media surrounding the cell,and it consists of a pattern of channels and reservoirs defined by electron beam lithography that is moulded into rubber silicon (PDMS).Different buffers can be transported through the channels using electro-osmotic flow,while the resonance Raman response of an optically trapped red blood cell (RBC) is simultaneously registered.This makes it possible to monitor the oxygenation cycle of the cell in real time and to investigate effects like photo-induced chemistry caused by the illumination.The experimental set-up has high potential for in vivo monitoring of cellular drug response using a variety of spectroscopic probes.
机译:使用芯片实验室方法,我们演示了通过拉曼光谱实时结合环境刺激后,选择具有某些特性的单个细胞并遵循其动态的可能性,这是通过将微拉曼设置与光学相结合来实现的镊子和微流体系统。后者对细胞周围的介质进行完全控制,它由电子束光刻定义的通道和储液器的图案组成,并通过模压成橡胶硅(PDMS)。不同的缓冲液可以通过通道利用电渗流,同时记录了光学捕获的红细胞(RBC)的共振拉曼响应,这使得可以实时监测细胞的氧合周期并研究光诱导化学等效应该实验装置具有使用多种光谱在体内监测细胞药物反应的潜力探针。

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