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用于细胞器 pH 成像的比率荧光探针。

Ratiometric fluorescent probes for pH mapping in cellular organelles.

机构信息

Molecular Sensors and Therapeutics (MST) Research Laboratory, Department of Chemistry, School of Natural Sciences, Shiv Nadar Institute of Eminence Deemed to be University, NH 91, Tehsil Dadri, Uttar Pradesh, India 201314.

出版信息

Analyst. 2023 Sep 11;148(18):4242-4262. doi: 10.1039/d3an00960b.

Abstract

The intracellular pH (pHi) in organelles, including mitochondria, endoplasmic reticulum, lysosomes, and nuclei, differs from the cytoplasmic pH, and thus maintaining the pH of these organelles is crucial for cellular homeostasis. Alterations in the intracellular pH (ΔpHi) in organelles lead to the disruption of cell proliferation, ion transportation, cellular homeostasis, and even cell death. Hence, accurately mapping the pH of organelles is crucial. Accordingly, the development of fluorescence imaging probes for targeting specific organelles and monitoring their dynamics at the molecular level has become the forefront of research in the last three decades. Among them, ratiometric fluorescent probes minimize the interference from the excitation wavelength of light, auto-fluorescence from probe concentration, environmental fluctuations, and instrument sensitivity through self-correction compared to monochromatic fluorescent probes, which are known as turn-on/off fluorescent probes. Small-molecular ratiometric fluorescent probes for detecting ΔpHi are challenging yet demanding. To date, sixty-two ratiometric pH probes have been reported for monitoring internal pH alterations in cellular organelles. However, a critical review on organelle-specific ratiometric probes for pH mapping is still lacking. Thus, in the present review, we report the most recent advances in ratiometric pH probes and the previous data on the role of mapping the ΔpHi of cellular organelles. The development strategy, including ratiometric fluorescence with one reference signal (RFRS) and ratiometric fluorescence with two reversible signals (RFRvS), is systematically illustrated. Finally, we emphasize the major challenges in developing ratiometric probes that merit further research in the future.

摘要

细胞内的 pH 值(pHi)在细胞器中有所不同,包括线粒体、内质网、溶酶体和细胞核,与细胞质 pH 值不同,因此维持这些细胞器的 pH 值对于细胞内稳态至关重要。细胞器内的 pH 值(ΔpHi)的改变会导致细胞增殖、离子运输、细胞内稳态甚至细胞死亡的破坏。因此,准确绘制细胞器的 pH 值非常重要。因此,开发针对特定细胞器的荧光成像探针,并在分子水平上监测其动力学,已成为过去三十年研究的前沿。其中,比率荧光探针通过与单波长荧光探针相比的自校正,最小化了来自光的激发波长、探针浓度的自荧光、环境波动和仪器灵敏度的干扰,被称为开/关荧光探针。用于检测 ΔpHi 的小分子比率荧光探针具有挑战性但又非常有必要。迄今为止,已经有 62 种比率 pH 探针被报道用于监测细胞细胞器内部 pH 值的变化。然而,对于细胞器特异性比率探针用于 pH 值映射的关键综述仍然缺乏。因此,在本综述中,我们报告了比率 pH 探针的最新进展以及以前关于细胞细胞器 ΔpHi 映射作用的数据。我们系统地说明了包括一个参考信号的比率荧光(RFRS)和两个可逆信号的比率荧光(RFRvS)的发展策略。最后,我们强调了开发比率探针的主要挑战,这些挑战值得在未来进一步研究。

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