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具有互补表面化学性质的胶体纳米生物缀合物用于细胞和亚细胞靶向。

Colloidal Nanobioconjugate with Complementary Surface Chemistry for Cellular and Subcellular Targeting.

机构信息

Centre for Advanced Materials , Indian Association for the Cultivation of Science , Kolkata - 700032 , India.

出版信息

Langmuir. 2018 Nov 13;34(45):13461-13471. doi: 10.1021/acs.langmuir.8b00376. Epub 2018 May 3.

Abstract

Chemically and biochemically functionalized colloidal nanoparticles with appropriate surface chemistry are essential for various biomedical applications. Although a variety of approaches are now available in making such functional nanoparticles and nanobioconjugates, the lack of complementary surface chemistry often leads to poor performance with respect to intended biomedical applications. This feature article will focus on our efforts to make colloidal nanobioconjugates with appropriate/complementary surface chemistry for better performance of a designed nanoprobe with respect to cellular and subcellular targeting applications. In particular, we emphasize polyacrylate-based coating chemistry followed by a conjugation strategy for transforming <10 nm inorganic nanoparticle to colloidal nanoprobe of 20-50 nm hydrodynamic size. We show that a colloidal nanoprobe can be chemically designed to control the cell-nanoparticle interaction, cellular endocytosis, and targeting/labeling of subcellular compartments. Further study should be directed to adapt this surface chemistry to different nanoparticles, fine tune the surface chemistry for targeting/imaging on the subcellular/molecular length scale, and develop a delivery nanocarrier for subcellular compartments.

摘要

具有适当表面化学性质的化学和生物化学功能化胶体纳米粒子对于各种生物医学应用至关重要。尽管现在有多种方法可用于制备这种功能化纳米粒子和纳米生物缀合物,但缺乏互补的表面化学性质往往会导致在预期的生物医学应用方面性能不佳。本文将重点介绍我们在制备具有适当/互补表面化学性质的胶体纳米生物缀合物方面的努力,以提高设计的纳米探针在细胞和亚细胞靶向应用方面的性能。特别是,我们强调了基于聚丙烯酸酯的涂层化学,随后采用一种偶联策略,将<10nm 的无机纳米粒子转化为 20-50nm 水动力尺寸的胶体纳米探针。我们表明,可以对胶体纳米探针进行化学设计,以控制细胞-纳米粒子相互作用、细胞内吞作用以及亚细胞区室的靶向/标记。进一步的研究应致力于将这种表面化学性质适应于不同的纳米粒子,精细调整表面化学性质以实现亚细胞/分子尺度上的靶向/成像,并开发用于亚细胞区室的递药纳米载体。

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