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首页> 外文期刊>Angewandte Chemie >Assessing the Stability of Fluorescently Encoded Nanoparticles in Lysosomes by Using Complementary Methods
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Assessing the Stability of Fluorescently Encoded Nanoparticles in Lysosomes by Using Complementary Methods

机译:使用互补方法评估溶酶体中荧光编码纳米颗粒的稳定性

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摘要

Nanoparticles (NPs) are promising tools in biomedical research. Invitro testing is still the first method for initial evaluation; however, NP colloidal behavior and integrity, in particular inside cells (that is, in lysosomes), are largely unknown and difficult to evaluate because of the complexity of the environment. Furthermore, while the majority of NPs are usually labeled with fluorescent dyes for tracking purposes, the effect of the lysosomal environment on the fluorophore properties, as well as the ensuing effects on data interpretation, is often only sparsely addressed. In this work, we have employed several complementary analytical methods to better understand the fate of fluorescently encoded NPs and identify potential pitfalls that may arise from focusing primary analysis on a single attribute, for example, fluorophore detection. Our study shows that in a lysosomal environment NPs can undergo significant changes resulting in dye quenching and distorted fluorescence signals.
机译:纳米粒子(NPS)是生物医学研究的有希望的工具。 invitro测试仍然是初始评估的第一种方法; 然而,NP胶体行为和完整性,特别是细胞内(即在溶酶体中)在很大程度上是未知的并且由于环境的复杂性而难以评估。 此外,虽然大多数NPS通常用荧光染料标记以跟踪目的,但溶酶体环境对荧光团特性的影响,以及随后的对数据解释的影响,通常只是稀疏地解决。 在这项工作中,我们采用了几种互补的分析方法来更好地理解荧光编码的NPS的命运,并识别可能因对单个属性的初步分析而导致的潜在缺陷,例如荧光团检测。 我们的研究表明,在溶酶体环境中,NPS可以经历显着的变化,导致染料猝灭和扭曲的荧光信号。

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