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荧光 Squaraine 树状大分子用于无背景成像癌细胞中的整合素受体。

Fluorogenic Squaraine Dendrimers for Background-Free Imaging of Integrin Receptors in Cancer Cells.

机构信息

Laboratoire de Biophotonique et Pharmacologie, CNRS UMR 7213, Faculté de Pharmacie, Université de Strasbourg, 74, Route du Rhin, 67401, Illkirch, France.

Department of Bioelectronics and Biosensors, Alagappa University, Karaikudi, 630 004, Tamil Nadu, India.

出版信息

Chemistry. 2021 Apr 16;27(22):6795-6803. doi: 10.1002/chem.202100480. Epub 2021 Mar 16.

Abstract

To overcome the limited brightness of existing fluorogenic molecular probes for biomolecular targets, we introduce a concept of fluorogenic dendrimer probe, which undergoes polarity-dependent switching due to intramolecular aggregation-caused quenching of its fluorophores. Based on a rational design of dendrimers with four and eight squaraine dyes, we found that octamer bearing dyes through a sufficiently long PEG(8) linker displays >400-fold fluorescence enhancement from water to non-polar dioxane. High extinction coefficient (≈2,300,000 m  cm ) resulted from eight squaraine dyes and quantum yield (≈25 %) make this octamer the brightest environment-sensitive fluorogenic molecule reported to date. Its conjugate with cyclic RGD used at low concentration (3 nm) enables integrin-specific fluorescence imaging of cancer cells with high signal-to-background ratio. The developed dendrimer probe is a "golden middle" between molecular probes and nanoparticles, combining small size, turn-on response and high brightness, important for bioimaging.

摘要

为克服现有用于生物分子靶标的荧光分子探针的亮度限制,我们引入了一种荧光树枝状大分子探针的概念,其由于荧光团的分子内聚集猝灭而发生极性依赖性开关。基于对具有四个和八个方酸染料的树枝状大分子的合理设计,我们发现通过足够长的 PEG(8)接头连接染料的八聚体在从水到非极性二氧六环的转变中显示出 >400 倍的荧光增强。高消光系数(≈2,300,000 m cm)来自八个方酸染料和量子产率(≈25%)使该八聚体成为迄今为止报道的最亮的环境敏感荧光发生分子。其与环状 RGD 的缀合物以低浓度(3nm)使用,能够实现具有高信噪比的癌细胞的整合素特异性荧光成像。所开发的树枝状大分子探针是分子探针和纳米颗粒之间的“中庸之道”,结合了小尺寸、开响应和高亮度,这对于生物成像很重要。

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