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利用基于喹喔啉的全彩色溶剂化变色荧光团 PQX 及其衍生物在活细胞中进行环境极性估计。

Environmental polarity estimation in living cells by use of quinoxaline-based full-colored solvatochromic fluorophore PQX and its derivatives.

机构信息

Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8571, Japan.

出版信息

Photochem Photobiol Sci. 2012 Apr;11(4):674-8. doi: 10.1039/c2pp05337c. Epub 2012 Jan 25.

DOI:10.1039/c2pp05337c
PMID:22274806
Abstract

Fluorosolvatochromic probes have recently attracted interest for live cell imaging. We recently tested our quinoxaline-based fluorosolvatochromic probes, PQX and MPQX, for in vivo imaging applications. PQX and MPQX are characterized by donor (pyrrole site)-acceptor (quinoxaline site) structure, and the peak emission wavelength of these compounds varies over the visible wavelength range depending on the polarity of the solvent used, for a variety of solvents from hexane to water. A linear relationship was obtained between peak emission wavenumber and E(T)(N) (normalized solvent polarity). When tested on cultured HEp-2 cells, the results showed that the PQX and MPQX were not harmful at the applied concentrations (10(-5) M), and site-dependent fluorescence spectra in living cells were observed with PQX treatment, which indicates that PQX penetrates into the plasma membrane, followed by delocalization throughout the cells. MPQX was also able to penetrate the cell membrane, distribute throughout the cells and emit fluorescence, but did not show site-dependent intracellular fluorescence spectra. These results suggest that PQX is a remarkable tool for investigating the local polarity environment in cells after appropriate conjugation to biomolecules.

摘要

氟溶剂化显色探针最近引起了人们对活细胞成像的兴趣。我们最近测试了我们基于喹喔啉的氟溶剂化显色探针 PQX 和 MPQX 在体内成像应用中的性能。PQX 和 MPQX 的特点是供体(吡咯位)-受体(喹喔啉位)结构,这些化合物的峰值发射波长在可见波长范围内变化,取决于所用溶剂的极性,从正己烷到水等各种溶剂。在测试的培养的 HEp-2 细胞中,结果表明 PQX 和 MPQX 在应用浓度(10(-5) M)下没有危害,并且在用 PQX 处理时观察到了与部位相关的活细胞荧光光谱,这表明 PQX 穿透了质膜,随后在整个细胞中扩散。MPQX 也能够穿透细胞膜,在细胞内分布并发出荧光,但没有表现出与部位相关的细胞内荧光光谱。这些结果表明,PQX 是一种非常有价值的工具,可用于在适当与生物分子缀合后研究细胞内局部极性环境。

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