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基于频域荧光寿命成像显微镜测量和微流控平台的高效单细胞耗氧率表征

Efficient single-cell oxygen consumption rate characterization based on frequency domain fluorescence lifetime imaging microscopy measurement and microfluidic platform.

作者信息

Kannan Santhosh, Ko Ping-Liang, Wu Hsiao-Mei, Tung Yi-Chung

机构信息

Department of Biomechatronics Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

Biomicrofluidics. 2023 Oct 13;17(5):054105. doi: 10.1063/5.0161752. eCollection 2023 Sep.

Abstract

Cell metabolism is critical in regulating normal cell functions to maintain energy homeostasis. In order to monitor cell metabolism, the oxygen consumption rate (OCR) of cells has been characterized as an important factor. In conventional cell analysis, the cells are characterized in bulk due to technical limitations. However, the heterogeneity between the cells cannot be identified. Therefore, single-cell analysis has been proposed to reveal cellular functions and their heterogeneity. In this research, an approach integrating a microfluidic device and widefield frequency domain fluorescence imaging lifetime microscopy (FD-FLIM) for single-cell OCR characterization in an efficient manner is developed. The microfluidic device provides an efficient platform to trap and isolate single cells in microwells with the buffer saline containing an oxygen-sensitive phosphorescent dye. The oxygen tension variation within the microwells can be efficiently estimated by measuring the fluorescence lifetime change using the FD-FLIM, and the OCR values of the single cells can then be calculated. In the experiments, breast cancer (MCF-7) cells are exploited for the OCR measurement. The results demonstrate the functionality of the developed approach and show the heterogeneity among the cells. The developed approach possesses great potential to advance cellular metabolism studies with single-cell resolution.

摘要

细胞代谢对于调节正常细胞功能以维持能量稳态至关重要。为了监测细胞代谢,细胞的耗氧率(OCR)已被视为一个重要因素。在传统的细胞分析中,由于技术限制,细胞是以群体形式进行表征的。然而,细胞之间的异质性无法被识别。因此,有人提出进行单细胞分析以揭示细胞功能及其异质性。在本研究中,开发了一种将微流控装置与宽场频域荧光成像寿命显微镜(FD - FLIM)相结合的方法,以高效地表征单细胞的OCR。微流控装置提供了一个高效的平台,可将单个细胞捕获并隔离在含有氧敏感磷光染料的缓冲盐溶液的微孔中。通过使用FD - FLIM测量荧光寿命变化,可以有效地估计微孔内的氧张力变化,进而计算出单个细胞的OCR值。在实验中,利用乳腺癌(MCF - 7)细胞进行OCR测量。结果证明了所开发方法的功能,并显示了细胞之间的异质性。所开发的方法具有极大的潜力,能够以单细胞分辨率推进细胞代谢研究。

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