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BioPhotonics workstation: A versatile setup for simultaneous optical manipulation, heat stress, and intracellular pH measurements of a live yeast cell

机译:Biophotonics工作站:用于同时光学操作,热应激和活酵母细胞的细胞内pH测量的多功能设置

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摘要

In this study we have modified the BioPhotonics workstation (BWS), which allows for using long working distance objective for optical trapping, to include traditional epi-fluorescence microscopy, using the trapping objectives. We have also added temperature regulation of sample stage, allowing for fast temperature variations while trapping. Using this modified BWS setup, we investigated the internal pH (pHi) response and membrane integrity of an optically trapped Saccharomyces cerevisiae cell at 5 mW subject to increasing temperatures. The pHi of the cell is obtained from the emission of 5-(and-6)-carboxyfluorescein diacetate, succinimidyl ester, at 435 and 485 nm wavelengths, while the permeability is indicated by the fluorescence of propidium iodide. We present images mapping the pHi and permeability of the cell at different temperatures and with enough spatial resolution to localize these attributes within the cell. The combined capability of optical trapping, fluorescence microscopy and temperature regulation offers a versatile tool for biological research.
机译:在这项研究中,我们对BioPhotonics工作站(BWS)进行了改进,该工作站允许使用长工作距离物镜进行光阱捕获,使其包括传统的落射荧光显微镜,并使用了该捕获物镜。我们还增加了样品台的温度调节,在捕集时允许快速的温度变化。使用这种改进的BWS设置,我们研究了5 mW随温度升高而被光学捕获的酿酒酵母细胞的内部pH(pHi)响应和膜完整性。细胞的pHi是通过在435和485 nm波长处发射5-(和-6)-羧基荧光素二乙酸酯,琥珀酰亚胺酯获得的,而通透性由碘化丙啶的荧光指示。我们提出的图像在不同温度下以足够的空间分辨率映射细胞的pHi和渗透性,以定位细胞内的这些属性。光学捕获,荧光显微镜和温度调节的综合功能为生物学研究提供了一种多功能的工具。

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