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Synthesis Cellular Delivery and In vivo Application of Dendrimer-based pH Sensors

机译:基于树枝状聚合物的pH传感器的合成细胞递送和体内应用

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摘要

The development of fluorescent indicators represented a revolution for life sciences. Genetically encoded and synthetic fluorophores with sensing abilities allowed the visualization of biologically relevant species with high spatial and temporal resolution. Synthetic dyes are of particular interest thanks to their high tunability and the wide range of measureable analytes. However, these molecules suffer several limitations related to small molecule behavior (poor solubility, difficulties in targeting, often no ratiometric imaging allowed). In this work we introduce the development of dendrimer-based sensors and present a procedure for pH measurement in vitro, in living cells and in vivo. We choose dendrimers as ideal platform for our sensors for their many desirable properties (monodispersity, tunable properties, multivalency) that made them a widely used scaffold for several biomedical devices. The conjugation of fluorescent pH indicators to the dendrimer scaffold led to an enhancement of their sensing performances. In particular dendrimers exhibit reduced cell leakage, improved intracellular targeting and allow ratiometric measurements. These novel sensors were successfully employed to measure pH in living HeLa cells and in vivo in mouse brain.
机译:荧光指示剂的发展代表了生命科学的一场革命。具有感测能力的基因编码和合成荧光团可以可视化显示具有高空间和时间分辨率的生物学相关物种。合成染料由于其高可调性和可测量的分析物种类繁多而特别受关注。然而,这些分子遭受与小分子行为有关的若干限制(溶解度差,靶向困难,通常不允许进行比例成像)。在这项工作中,我们介绍了基于树状聚合物的传感器的开发,并提出了一种在体外,活细胞和体内进行pH测量的程序。我们选择树枝状聚合物作为传感器的理想平台,因为它们具有许多理想的性能(单分散性,可调性,多价性),这使其成为多种生物医学设备的广泛使用的支架。荧光pH指示剂与树状聚合物支架的缀合导致其传感性能的增强。特别地,树枝状聚合物表现出减少的细胞渗漏,改善的细胞内靶向性并允许进行比例测量。这些新型传感器已成功用于测量活HeLa细胞和小鼠大脑体内的pH。

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