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细胞穿透肽介导的纳米疫苗递呈。

Cell-penetrating Peptide-mediated Nanovaccine Delivery.

机构信息

School of Medicine, Shanghai University, Shanghai 200444, China.

出版信息

Curr Drug Targets. 2021;22(8):896-912. doi: 10.2174/1389450122666210203193225.

Abstract

Vaccination with small antigens, such as proteins, peptides, or nucleic acids, is used to activate the immune system and trigger the protective immune responses against a pathogen. Currently, nanovaccines are undergoing development instead of conventional vaccines. The size of nanovaccines is in the range of 10-500 nm, which enables them to be readily taken up by cells and exhibit improved safety profiles. However, low-level immune responses, as the removal of redundant pathogens, trigger counter-effective activation of the immune system invalidly and present a challenging obstacle to antigen recognition and its uptake via antigen-presenting cells (APCs). In addition, toxicity can be substantial. To overcome these problems, a variety of cell-penetrating peptide (CPP)-mediated vaccine delivery systems based on nanotechnology have been proposed, most of which are designed to improve the stability of antigens in vivo and their delivery into immune cells. CPPs are particularly attractive components of antigen delivery. Thus, the unique translocation property of CPPs ensures that they remain an attractive carrier with the capacity to deliver cargo in an efficient manner for the application of drugs, gene transfer, protein, and DNA/RNA vaccination delivery. CPP-mediated nanovaccines can enhance antigen uptake, processing, and presentation by APCs, which are the fundamental steps in initiating an immune response. This review describes the different types of CPP-based nanovaccines delivery strategies.

摘要

接种小抗原(如蛋白质、肽或核酸)可激活免疫系统,引发针对病原体的保护性免疫反应。目前,正在开发纳米疫苗以替代传统疫苗。纳米疫苗的大小在 10-500nm 范围内,这使得它们可以被细胞轻易摄取,并表现出更好的安全性。然而,低水平的免疫反应(如去除冗余病原体)会无效地引发免疫系统的反向激活,从而对抗原识别及其被抗原呈递细胞(APC)摄取构成挑战。此外,还存在毒性问题。为了克服这些问题,已经提出了多种基于纳米技术的细胞穿透肽(CPP)介导的疫苗传递系统,其中大多数旨在提高抗原在体内的稳定性及其向免疫细胞的传递。CPP 是抗原传递的特别有吸引力的成分。因此,CPP 的独特转位特性确保了它们仍然是一种有吸引力的载体,能够以有效的方式输送货物,可应用于药物、基因转移、蛋白质和 DNA/RNA 疫苗的传递。CPP 介导的纳米疫苗可以增强抗原摄取、加工和 APC 呈递,这是引发免疫反应的基本步骤。本文综述了不同类型的基于 CPP 的纳米疫苗传递策略。

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