首页> 外文期刊>ACS applied materials & interfaces >Brighter, More Stable; and Less Toxic: A Host-Guest Interaction-Aided Strategy for Fabricating Fluorescent Silica Nanoparticles and Applying Them in Bioimaging and Biosensing at the Cellular Level
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Brighter, More Stable; and Less Toxic: A Host-Guest Interaction-Aided Strategy for Fabricating Fluorescent Silica Nanoparticles and Applying Them in Bioimaging and Biosensing at the Cellular Level

机译:更明亮,更稳定; 毒性较小:宿主的相互作用 - 用于制造荧光二氧化硅纳米颗粒的辅助策略,并在细胞水平下将它们施加在生物分析和生物传感中

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摘要

The exploration of fluorescent tools with distinguished optical properties and favorable biocompatibility is significant for biosensing and bioimaging. We herein present a host guest interactions aided strategy for fabricating fluorescent silica nanoparticles (FSNPs), which is enabled by cyclodextrin (CD) supermolecules. Compared with conventional FSNPs, the modified products (are named as fluorophore@CD@SNPs) possess several advantages. First, the incorporated fluorophores can thoroughly get rid of their intrinsic aggregation due to CD's inclusion effect, and the fluorescence intensity of the obtained fluorophore@CD@SNPs can enhance 48-67%. The fluorophores can then be well-fixed by the host CD molecules. As a result, the leak rates of the incorporated fluorophores are only 15-17%, which is about 3 times lower than that of conventional ones (42-48%). Notably, the as-prepared fluorophore@CD@SNPs show observable less cytotoxicity as compared with their conventional counterparts, probably due to the substantially decreased leakage of the incorporated fluorophores. Because of prominent properties and versatile fabrication, the proposed fluorophore@CD@SNPs not only possess better performances for cell-imaging but are competent for ratiometric sensing of pH value at living cell using (indicator-reference) integrative silica NPs.
机译:具有卓越光学性质和有利生物相容性的荧光工具的探索对于生物传感和生物分析是显着的。在本文中,我们在本文中提出了一种用于制造荧光二氧化硅纳米颗粒(FSNP)的助手辅助策略,其通过环糊精(CD)超分子使能。与传统的FSNP相比,修改的产品(被命名为荧光团@ CD @ SNP)具有几个优点。首先,掺入的荧光团由于CD的夹杂效果而彻底地摆脱其内在聚集,所得荧光团的荧光强度@ CD @ SNP可以增强48-67%。然后可以通过宿主CD分子良好地固定荧光团。结果,掺入的荧光团的泄漏率仅为15-17%,比常规荧光团的泄漏率为约3倍(42-48%)。值得注意的是,与常规对应物相比,AS制备的荧光团@ CD @ SNPS显示出可观察到的细胞毒性,这可能是由于掺入含有荧光团的显着降低的泄漏。由于性质和多功能的制造,所提出的荧光团@ CD @ SNP不仅具有更好的细胞成像性能,而且具有使用(指示器 - 参考)一体化二氧化硅NPS在活细胞上的pH值的比例感测。

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