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开发一系列实用的荧光化学工具,用于测量活样本中的 pH 值。

Development of a Series of Practical Fluorescent Chemical Tools To Measure pH Values in Living Samples.

机构信息

Graduate School of Science and Engineering , Saitama University , 255 Okubo, Sakura-ku , Saitama-shi , Saitama 338-8570 , Japan.

Cluster of Pioneering Research (CPR), Advanced Elements Chemistry Laboratory , RIKEN , 2-1 Hirosawa , Wako , Saitama 351-0198 , Japan.

出版信息

J Am Chem Soc. 2018 May 9;140(18):5925-5933. doi: 10.1021/jacs.8b00277. Epub 2018 Apr 24.

Abstract

In biological systems, the pH in intracellular organelles or tissues is strictly regulated, and differences of pH are deeply related to key biological events such as protein degradation, intracellular trafficking, renal failure, and cancer. Ratiometric fluorescence imaging is useful for determination of precise pH values, but existing fluorescence probes have substantial limitations, such as inappropriate p K for imaging in the physiological pH range, inadequate photobleaching resistance, and insufficiently long excitation and emission wavelengths. Here we report a versatile scaffold for ratiometric fluorescence pH probes, based on asymmetric rhodamine. To demonstrate its usefulness for biological applications, we employed it to develop two probes. (1) SiRpH5 has suitable p K and water solubility for imaging in acidic intracellular compartments; by using transferrin tagged with SiRpH5, we achieved time-lapse imaging of pH in endocytic compartments during protein trafficking for the first time. (2) Me-pEPPR is a near-infrared (NIR) probe; by using dextrin tagged with Me-pEPPR, we were able to image extracellular pH of renal tubules and tumors in situ. These chemical tools should be useful for studying the influence of intra- and extracellular pH on biological processes, as well as for in vivo imaging.

摘要

在生物系统中,细胞内细胞器或组织中的 pH 值受到严格调控,pH 值的差异与关键的生物学事件密切相关,如蛋白质降解、细胞内运输、肾衰竭和癌症。比率荧光成像是测定精确 pH 值的有用方法,但现有的荧光探针存在着实质性的局限性,例如在生理 pH 范围内成像的不合适 pK 值、不足的抗光漂白能力以及不够长的激发和发射波长。在这里,我们报告了一种基于不对称罗丹明的比率荧光 pH 探针的通用支架。为了证明其在生物学应用中的有用性,我们用它开发了两种探针。(1)SiRpH5 具有适合成像酸性细胞内区室的 pK 值和水溶性;通过使用转铁蛋白标记 SiRpH5,我们首次实现了蛋白质运输过程中内吞区室 pH 的时程成像。(2)Me-pEPPR 是一种近红外(NIR)探针;通过使用糊精标记 Me-pEPPR,我们能够对肾小管和肿瘤的细胞外 pH 值进行原位成像。这些化学工具应该有助于研究细胞内和细胞外 pH 值对生物学过程的影响,以及用于体内成像。

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