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基于脂质体的杂交药物输送系统,结合 DNA 纳米结构和金属纳米粒子。

Liposome-based hybrid drug delivery systems with DNA nanostructures and metallic nanoparticles.

机构信息

Institute of Technology, University of Tartu, Tartu, Estonia.

Department of Bioproducts and Biosystems, Aalto University School of Chemical Engineering, Espoo, Finland.

出版信息

Expert Opin Drug Deliv. 2024 Jun;21(6):905-920. doi: 10.1080/17425247.2024.2375389. Epub 2024 Jul 4.

Abstract

INTRODUCTION

This review discusses novel hybrid assemblies that are based on liposomal formulations. The focus is on the hybrid constructs that are formed through the integration of liposomes/vesicles with other nano-objects such as nucleic acid nanostructures and metallic nanoparticles. The aim is to introduce some of the recent, specific examples that bridge different technologies and thus may form a new platform for advanced drug delivery applications.

AREAS COVERED

We present selected examples of liposomal formulations combined with complex nanostructures either based on biomolecules like DNA origami or on metallic materials - metal/metal oxide/magnetic particles and metallic nanostructures, such as metal organic frameworks - together with their applications in drug delivery and beyond.

EXPERT OPINION

Merging the above-mentioned techniques could lead to development of drug delivery vehicles with the most desirable properties; multifunctionality, biocompatibility, high drug loading efficiency/accuracy/capacity, and stimuli-responsiveness. In the near future, we believe that especially the strategies combining dynamic, triggerable and programmable DNA nanostructures and liposomes could be used to create artificial liposome clusters for multiple applications such as examining protein-mediated interactions between lipid bilayers and channeling materials between liposomes for enhanced pharmacokinetic properties in drug delivery.

摘要

简介

本综述讨论了基于脂质体制剂的新型混合组件。重点介绍了通过将脂质体/囊泡与其他纳米物体(如核酸纳米结构和金属纳米粒子)集成而形成的混合结构。目的是介绍一些将不同技术联系起来的最新特定示例,从而可能为先进的药物输送应用形成新的平台。

涵盖领域

我们展示了一些脂质体制剂与复杂纳米结构的组合的示例,这些纳米结构要么基于生物分子(如 DNA 折纸术),要么基于金属材料 - 金属/金属氧化物/磁性颗粒和金属纳米结构,如金属有机骨架 - 以及它们在药物输送等方面的应用。

专家意见

将上述技术融合在一起,可以开发出具有最理想特性的药物输送载体;多功能性、生物相容性、高药物装载效率/准确性/容量和对刺激的响应性。在不久的将来,我们相信特别是将动态、可触发和可编程的 DNA 纳米结构和脂质体结合的策略,可以用于创建人工脂质体簇,用于多种应用,例如研究脂质双层之间的蛋白介导相互作用以及增强药物输送中药物动力学特性的脂质体之间的材料通道化。

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