College of Pharmacy, Harbin Medical University-Daqing, Daqing, China.
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, China.
J Drug Target. 2023 Jun;31(5):433-455. doi: 10.1080/1061186X.2023.2193358. Epub 2023 Mar 29.
New nanocarrier technologies are emerging, and they have great potential for improving drug delivery, targeting efficiency and bioavailability. Virus-like particles (VLPs) are natural nanoparticles from animal and plant viruses and bacteriophages. Hence, VLPs present several great advantages, such as morphological uniformity, biocompatibility, reduced toxicity and easy functionalisation. VLPs can deliver many active ingredients to the target tissue and have great potential as a nanocarrier to overcome the limitations associated with other nanoparticles. This review will focus primarily on the construction and applications of VLPs, particularly as a novel nanocarrier to deliver active ingredients. Herein, the main methods for the construction, purification and characterisation of VLPs, as well as various VLP-based materials used in delivery systems are summarised. The biological distribution of VLPs in drug delivery, phagocyte-mediated clearance and toxicity are also discussed.
新型纳米载体技术不断涌现,它们在改善药物传递、靶向效率和生物利用度方面具有巨大潜力。病毒样颗粒(VLPs)是来自动物和植物病毒以及噬菌体的天然纳米颗粒。因此,VLPs 具有几个显著优势,如形态均匀性、生物相容性、降低毒性和易于功能化。VLPs 可以将许多活性成分递送到靶组织,并且作为克服与其他纳米颗粒相关的限制的纳米载体具有巨大潜力。本综述将主要关注 VLPs 的构建和应用,特别是作为递送活性成分的新型纳米载体。本文总结了 VLPs 的构建、纯化和表征的主要方法,以及各种用于递送系统的基于 VLP 的材料。还讨论了 VLPs 在药物递送中的生物分布、吞噬细胞介导的清除和毒性。