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Nile Blue-Based Nanosized pH Sensors for SimultaneousFar-Red and Near-Infrared Live Bioimaging

机译:基于Nile Blue的纳米pH传感器可同时进行远红外和近红外实时生物成像

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摘要

Diblock copolymer vesicles are tagged with pH-responsive Nile Blue-based labels and used as a new type of pH-responsive colorimetric/fluorescent biosensor for far-red and near-infrared imaging of live cells. The diblock copolymer vesicles described herein are based on poly(2-(methacryloyloxy)ethyl phosphorylcholine-block-2-(diisopropylamino)ethyl methacrylate) [PMPC-PDPA]: the biomimetic PMPC block is known to facilitate rapid cell uptake for a wide range of cell lines, while the PDPA block constitutes the pH-responsive component that enables facile vesicle self-assembly in aqueous solution. These biocompatible vesicles can be utilized to detect interstitial hypoxic/acidic regions in a tumor model via a pH-dependent colorimetric shift. In addition, they are also useful for selective intracellular staining of lysosomes and early endosomes via subtle changes in fluorescence emission. Such nanoparticles combine efficient cellular uptake with a pH-responsive Nile Blue dye label to produce a highly versatile dual capability probe. This is in marked contrast to small molecule dyes, which are usually poorly uptakenby cells, frequently exhibit cytotoxicity, and are characterized byintracellular distributions invariably dictated by their hydrophilic/hydrophobicbalance.
机译:双嵌段共聚物囊泡用基于pH响应的尼罗蓝标记物标记,并用作新型pH响应比色/荧光生物传感器,用于活细胞的远红外和近红外成像。本文所述的二嵌段共聚物囊泡基于聚(2-(甲基丙烯酰氧基)乙基磷酸胆碱嵌段--2-(二异丙基氨基)甲基丙烯酸乙酯)[PMPC-PDPA]:已知的仿生PMPC嵌段可促进广泛的快速细胞摄取的细胞系中,PDPA嵌段构成了pH响应成分,可在水溶液中轻松进行囊泡自组装。这些生物相容性囊泡可用于通过pH依赖的比色变化来检测肿瘤模型中的组织间缺氧/酸性区域。此外,它们还可以通过荧光发射的细微变化用于溶酶体和早期内体的选择性细胞内染色。此类纳米粒子将有效的细胞摄取与pH响应的尼罗蓝染料标记结合在一起,以生产出高度通用的双功能探针。这与小分子染料形成鲜明对比,后者通常不易被吸收通过细胞,经常表现出细胞毒性,其特征是细胞内分布总是由其亲水/疏水性决定平衡。

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