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用于极简核酸疫苗的多功能免疫佐剂。

Multifunctional Immunoadjuvants for Use in Minimalist Nucleic Acid Vaccines.

作者信息

Abbasi Saed, Uchida Satoshi

机构信息

Innovation Center of NanoMedicine, Kawasaki Institute of Industrial Promotion, 3-25-14 Tonomachi, Kawasaki-ku, Kawasaki 210-0821, Japan.

Medical Chemistry, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, 1-5 Shimogamohangi-cho, Sakyo-ku, Kyoto 606-0823, Japan.

出版信息

Pharmaceutics. 2021 May 1;13(5):644. doi: 10.3390/pharmaceutics13050644.

Abstract

Subunit vaccines based on antigen-encoding nucleic acids have shown great promise for antigen-specific immunization against cancer and infectious diseases. Vaccines require immunostimulatory adjuvants to activate the innate immune system and trigger specific adaptive immune responses. However, the incorporation of immunoadjuvants into nonviral nucleic acid delivery systems often results in fairly complex structures that are difficult to mass-produce and characterize. In recent years, minimalist approaches have emerged to reduce the number of components used in vaccines. In these approaches, delivery materials, such as lipids and polymers, and/or pDNA/mRNA are designed to simultaneously possess several functionalities of immunostimulatory adjuvants. Such multifunctional immunoadjuvants encode antigens, encapsulate nucleic acids, and control their pharmacokinetic or cellular fate. Herein, we review a diverse class of multifunctional immunoadjuvants in nucleic acid subunit vaccines and provide a detailed description of their mechanisms of adjuvanticity and induction of specific immune responses.

摘要

基于编码抗原的核酸的亚单位疫苗在针对癌症和传染病的抗原特异性免疫方面显示出巨大潜力。疫苗需要免疫刺激佐剂来激活先天免疫系统并触发特异性适应性免疫反应。然而,将免疫佐剂掺入非病毒核酸递送系统通常会导致相当复杂的结构,难以大规模生产和表征。近年来,出现了极简主义方法以减少疫苗中使用的成分数量。在这些方法中,递送材料,如脂质和聚合物,和/或pDNA/mRNA被设计成同时具备免疫刺激佐剂的几种功能。这种多功能免疫佐剂编码抗原、封装核酸并控制其药代动力学或细胞命运。在此,我们综述了核酸亚单位疫苗中一类多样的多功能免疫佐剂,并详细描述了它们的佐剂作用机制和特异性免疫反应的诱导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa11/8147386/6fa42f236813/pharmaceutics-13-00644-g001.jpg

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