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基于静电相互作用的动态杂化胶体囊泡用于 pH 平衡的低早期渗漏和超快载药释放

Dynamic Hybrid Colloidosomes via Electrostatic Interactions for pH-Balanced Low Premature Leakage and Ultrafast Cargo Release.

出版信息

Nano Lett. 2019 Sep 11;19(9):6065-6071. doi: 10.1021/acs.nanolett.9b01949. Epub 2019 Aug 27.

Abstract

A trade-off between minimized premature leakage and rapid cargo release on demand is an intractable obstacle faced by smart delivery systems that restrains them from lab to market. To address this dilemma, dynamic hybrid colloidosomes relying on strong yet reversible electrostatic interactions are developed, simply through one-pot cooperative self-assembly of silica nanoparticles and fluorescent carbon dots at the interface of emulsion droplets. Specifically, pH-driven charge reversal of zwitterionic carbon dots leads to immediate electrostatic conversion between the two building blocks from attraction to repulsion. This makes robust locking and instantaneous breakdown of the colloidosomes subtly balanced, thus enabling low off-state leakage (10.5% over 7 days) while ultrafast on-state release (>90% within 5 min) upon an acidic stimulus. We envision that such biocompatible, traceable, and smart colloidosomes will offer unique opportunities for broad applications as on-demand release is desired.

摘要

在最小化过早泄漏和按需快速释放货物之间进行权衡,是智能输送系统面临的一个棘手障碍,限制了它们从实验室走向市场。为了解决这一困境,研究人员开发了基于强而可逆静电相互作用的动态混合胶体囊泡,只需通过在乳液滴界面上一锅协同自组装二氧化硅纳米粒子和荧光碳点即可实现。具体来说,两性离子碳点的 pH 驱动电荷反转导致两个构建块之间的静电相互作用从吸引到排斥的瞬间转换。这使得胶体囊泡的坚固锁定和瞬时破裂微妙地达到平衡,从而在酸性刺激下实现低的关闭状态泄漏(7 天内为 10.5%),同时在超快速开启状态下释放(<5 分钟内超过 90%)。我们设想,这种生物相容性、可追踪性和智能胶体囊泡将为按需释放提供独特的应用机会。

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