微流体系统中用于活细胞分析和分选的拉曼镊子

Z. Pilát, J. Ježek, J. Kaňka, P. Zemánek
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引用次数: 3

摘要

我们设计了一种结合光学捕获和拉曼光谱的微流控环境分析分选系统,用于各种单细胞生物的活细胞等生物物体的识别和分选。我们的主要目标是创建一个强大的通用平台,用于基于微物体的拉曼光谱特性的非破坏性和非接触式分选。这种方法使我们能够收集含有物体化学成分信息的光谱,如色素、脂质、蛋白质或核酸的存在和组成,避免了人工化学探针,如荧光标记。这种光学分析和操作的非破坏性使我们能够在无菌环境中分离出我们感兴趣的单个活细胞,并为进一步实验提供培养选定细胞的可能性。我们使用聚苯乙烯微粒和藻类细胞的混合物来测试和演示我们的分析和分选系统的功能。所设计的系统可以在许多医学、生物技术和生物学应用中找到它的用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Raman tweezers in microfluidic systems for analysis and sorting of living cells
We have devised an analytical and sorting system combining optical trapping with Raman spectroscopy in microfluidic environment, dedicated to identification and sorting of biological objects, such as living cells of various unicellular organisms. Our main goal was to create a robust and universal platform for non-destructive and non-contact sorting of micro-objects based on their Raman spectral properties. This approach allowed us to collect spectra containing information about the chemical composition of the objects, such as the presence and composition of pigments, lipids, proteins, or nucleic acids, avoiding artificial chemical probes such as fluorescent markers. The non-destructive nature of this optical analysis and manipulation allowed us to separate individual living cells of our interest in a sterile environment and provided the possibility to cultivate the selected cells for further experiments. We used a mixture of polystyrene micro-particles and algal cells to test and demonstrate the function of our analytical and sorting system. The devised system could find its use in many medical, biotechnological, and biological applications.
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