Sud Dhruv, Mycek Mary-Ann
J Biomed Opt. 2009 Mar-Apr;14(2):020506. doi: 10.1117/1.3116714.
Calibration of fluorescent optical sensors for accurate, quantitative intracellular measurements in vivo suffers from lack of a representative medium that appropriately simulates the molecular complexity of the cytosol. We present a novel protocol for accurate intracellular oxygen sensing via fluorescence lifetime imaging microscopy (FLIM) using cell lysate-FLIM measurements to correct the in vitro calibration of a fluorescent oxygen sensor, and we describe electron paramagnetic resonance (EPR) validation studies. Lysate-FLIM studies provided biochemical information, while EPR provided a "gold standard" for intracellular oxygen estimation. Oxygen levels were evaluated in living human normal squamous and adenocarcinoma esophageal epithelial cells, and good agreement was observed between oxygen levels derived from the optical protocol and EPR. The proposed protocol introduces the concept of a living cell line as a reference for estimating unknown oxygen levels in other cell lines and accounts for high degrees of variability between different cell lines.
用于体内准确、定量细胞内测量的荧光光学传感器校准,因缺乏能适当模拟细胞质分子复杂性的代表性介质而受到影响。我们提出了一种通过荧光寿命成像显微镜(FLIM)进行准确细胞内氧传感的新方案,利用细胞裂解物-FLIM测量来校正荧光氧传感器的体外校准,并描述了电子顺磁共振(EPR)验证研究。裂解物-FLIM研究提供了生化信息,而EPR为细胞内氧估计提供了“金标准”。在活的人类正常鳞状和腺癌食管上皮细胞中评估了氧水平,并且在光学方案得出的氧水平与EPR之间观察到了良好的一致性。所提出的方案引入了活细胞系作为估计其他细胞系中未知氧水平的参考的概念,并考虑了不同细胞系之间的高度变异性。