Post-coupling strategy enables true receptor-targeted nanoparticles.

Jianmeizi Chen, Michael R Jorgensen, Maya Thanou, Andrew D Miller
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Abstract

A key goal of our research is the targeted delivery of functional biopharmaceutical agents of interest, such as small interfering RNA (siRNA), to selected cells by means of receptor-mediated nanoparticle technologies. Recently, we described how pH-triggered, PEGylated siRNA-nanoparticles (pH triggered siRNA-ABC nanoparticles) were able to mediate the passive targeting of siRNA to liver cells in vivo. In addition, PEGylated siRNA nanoparticles enabled for long-term circulation (LTC siRNA-ABC nanoparticles, LEsiRNA nanoparticles) were shown to do the same to tumour cells in vivo. Further gains in the efficiency of siRNA delivery are expected to require active targeting with nanoparticles targeted for delivery and cellular uptake by means of attached biological ligands. Here we report on the development of a new synthetic chemistry and a bioconjugation methodology that allows for the controlled formulation of PEGylated nanoparticles which surface-present integrin-targeting peptides unambiguously and so enable integrin receptor-mediated cellular uptake. Furthermore, we present delivery data that provide a clear preliminary demonstration of physical principles that we propose should underpin successful, bonefide receptor-mediated targeted delivery of therapeutic and/or imaging agents to cells.

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后耦合策略实现了真正的受体靶向纳米粒子。
我们研究的一个主要目标是通过受体介导的纳米颗粒技术,将小干扰 RNA(siRNA)等感兴趣的功能性生物制药制剂定向输送到选定的细胞中。最近,我们介绍了 pH 触发的 PEG 化 siRNA 纳米颗粒(pH 触发 siRNA-ABC 纳米颗粒)如何在体内介导 siRNA 被动靶向肝细胞。此外,可长期循环的 PEG 化 siRNA 纳米颗粒(LTC siRNA-ABC 纳米颗粒、LEsiRNA 纳米颗粒)也能在体内对肿瘤细胞起到同样的作用。要进一步提高 siRNA 的递送效率,需要通过附着的生物配体对纳米颗粒进行主动靶向递送和细胞吸收。在此,我们报告了一种新的合成化学和生物连接方法的开发情况,该方法可控制 PEG 化纳米颗粒的配方,使其表面能明确呈现整合素靶向肽,从而实现整合素受体介导的细胞摄取。此外,我们还展示了一些递送数据,这些数据清楚地初步展示了物理原理,我们认为这些原理应能成功地支持以骨化受体为介导的治疗和/或成像制剂向细胞的靶向递送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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