Zhang Guangxu, Wang Yadi, Qian Jiang, Wang Yue, Li Xueling, Lü Junhong
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai, China.
Jinan Microecological Biomedicine Shandong Laboratory, Jinan, China.
Front Bioeng Biotechnol. 2023 Jan 10;10:1105249. doi: 10.3389/fbioe.2022.1105249. eCollection 2022.
Cellular refractive index is a vital phenotypic parameter for understanding the cell functional activities. So far, there remains technical challenges to obtain refractive index of viable cells at the terahertz frequency in which contains rich information closely related to their physiological status. Here we introduce a label-free optical platform for interrogating cellular phenotypes to measure the refractive index of living cells in near-physiological environments by using terahertz spectroscopy with the combination of cellular encapsulation in a confined solution droplet. The key technical feature with cells encapsulated in aqueous droplets allows for keeping cellular viability while eliminating the strong adsorption of solvent water to terahertz signal. The obtained high signal-to-noise ratio enables to differentiate different cell types (e.g., , stem cell and cancer cell) and their states under stress conditions. The integrating of terahertz spectroscopy to droplet microfluidic further realizes automated and high-through sample preparation and detection, providing a practical toolkit for potential application in cellular health evaluation and phenotypic drug discovery.
细胞折射率是理解细胞功能活动的一个重要表型参数。到目前为止,在太赫兹频率下获取活细胞的折射率仍存在技术挑战,该频率包含与细胞生理状态密切相关的丰富信息。在此,我们介绍一种用于询问细胞表型的无标记光学平台,通过将细胞封装在受限溶液微滴中并结合太赫兹光谱,在近生理环境中测量活细胞的折射率。将细胞封装在水滴中的关键技术特征能够保持细胞活力,同时消除溶剂水对太赫兹信号的强烈吸附。所获得的高信噪比能够区分不同细胞类型(例如干细胞和癌细胞)及其在应激条件下的状态。将太赫兹光谱与微滴微流控技术相结合,进一步实现了自动化和高通量的样品制备与检测,为细胞健康评估和表型药物发现的潜在应用提供了一个实用工具包。