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基于罗丹明6G与其荧光共振能量转移/光诱导电子转移对共轭的pH敏感荧光标记物用于“智能”聚合物胶束中癌细胞的选择性成像。

pH-Sensitive Fluorescent Marker Based on Rhodamine 6G Conjugate with Its FRET/PeT Pair in "Smart" Polymeric Micelles for Selective Imaging of Cancer Cells.

作者信息

Zlotnikov Igor D, Ezhov Alexander A, Kudryashova Elena V

机构信息

Faculty of Chemistry, Lomonosov Moscow State University, Leninskie Gory, 1/3, 119991 Moscow, Russia.

Faculty of Physics, Lomonosov Moscow State University, Leninskie Gory, 1/2, 119991 Moscow, Russia.

出版信息

Pharmaceutics. 2024 Jul 30;16(8):1007. doi: 10.3390/pharmaceutics16081007.

Abstract

Cancer cells are known to create an acidic microenvironment (the Warburg effect). At the same time, fluorescent dyes can be sensitive to pH, showing a sharp increase or decrease in fluorescence depending on pH. However, modern applications, such as confocal laser scanning microscopy (CLSM), set additional requirements for such fluorescent markers to be of practical use, namely, high quantum yield, low bleaching, minimal quenching in the cell environment, and minimal overlap with auto-fluorophores. R6G could be the perfect match for these requirements, but its fluorescence is not pH-dependent. We have attempted to develop an R6G conjugate with its FRET or PeT pair that would grant it pH sensitivity in the desired range (5.5-7.5) and enable the selective targeting of tumor cells, thus improving CLSM imaging. Covalent conjugation of R6G with NBD using a spermidine (spd) linker produced a pH-sensitive FRET effect but within the pH range of 7.0-9.0. Shifting this effect to the target pH range of 5.5-7.5 appeared possible by incorporating the R6G-spd-NBD conjugate within a "smart" polymeric micelle based on chitosan grafted with lipoic acid. In our previous studies, one could conclude that the polycationic properties of chitosan could make this pH shift possible. As a result, the micellar form of the NBD-spd-R6G fluorophore demonstrates a sharp ignition of fluorescence by 40%per1 pH unit in the pH range from 7.5 to 5. Additionally, "smart" polymeric micelles based on chitosan allow the label to selectively target tumor cells. Due to the pH sensitivity of the fluorophore NBD-spd-R6G and the selective targeting of cancer cells, the efficient visualization of A875 and K562 cells was achieved. CLSM imaging showed that the dye actively penetrates cancer cells (A875 and K562), while minimal accumulation and low fluorophore emission are observed in normal cells (HEK293T). It is noteworthy that by using "smart" polymeric micelles based on polyelectrolytes of different charges and structures, we create the possibility of regulating the pH dependence of the fluorescence in the desired interval, which means that these "smart" polymeric micelles can be applied to the visualization of a variety of cell types, organelles, and other structures.

摘要

已知癌细胞会营造一种酸性微环境(瓦伯格效应)。同时,荧光染料可能对pH敏感,其荧光会根据pH值急剧增加或减少。然而,诸如共聚焦激光扫描显微镜(CLSM)等现代应用对这类荧光标记物的实际应用提出了额外要求,即高量子产率、低漂白率、在细胞环境中最小程度的猝灭以及与自身荧光团的最小重叠。若丹明6G(R6G)可能符合这些要求,但其荧光不依赖于pH值。我们试图开发一种带有荧光共振能量转移(FRET)或光诱导电子转移(PeT)对的R6G共轭物,使其在所需范围(5.5 - 7.5)具有pH敏感性,并能够选择性靶向肿瘤细胞,从而改善CLSM成像效果。使用亚精胺(spd)连接子将R6G与NBD共价共轭产生了pH敏感的FRET效应,但该效应发生在pH值7.0 - 9.0范围内。通过将R6G - spd - NBD共轭物包裹在基于接枝了硫辛酸的壳聚糖的“智能”聚合物胶束中,有可能将这种效应转移到目标pH范围5.5 - 7.5。在我们之前的研究中,可以得出结论,壳聚糖的聚阳离子特性可能使这种pH值的转变成为可能。结果,NBD - spd - R6G荧光团的胶束形式在pH值从7.5到5的范围内,每单位pH值荧光急剧增强40%。此外,基于壳聚糖的“智能”聚合物胶束使该标记物能够选择性靶向肿瘤细胞。由于荧光团NBD - spd - R6G的pH敏感性以及对癌细胞的选择性靶向,实现了对A875和K562细胞的有效可视化。CLSM成像显示,该染料能有效穿透癌细胞(A875和K562),而在正常细胞(HEK293T)中观察到最小的积累和低荧光团发射。值得注意的是,通过使用基于不同电荷和结构的聚电解质的“智能”聚合物胶束,我们创造了在所需区间调节荧光pH依赖性的可能性,这意味着这些“智能”聚合物胶束可应用于各种细胞类型、细胞器和其他结构的可视化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afb0/11360677/5dad7ea93476/pharmaceutics-16-01007-g001.jpg

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