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植物病毒纳米颗粒在疫苗应用中的研究进展

Plant Virus Nanoparticles for Vaccine Applications.

机构信息

Department of Biotechnology, University of Verona. Strada Le Grazie, 15. 37134 Verona, Italy.

Diamante srl. Strada Le Grazie, 15. 37134 Verona, Italy.

出版信息

Curr Protein Pept Sci. 2020;21(4):344-356. doi: 10.2174/1389203721666200212100255.

Abstract

In the rapidly evolving field of nanotechnology, plant virus nanoparticles (pVNPs) are emerging as powerful tools in diverse applications ranging from biomedicine to materials science. The proteinaceous structure of plant viruses allows the capsid structure to be modified by genetic engineering and/or chemical conjugation with nanoscale precision. This means that pVNPs can be engineered to display peptides and proteins on their external surface, including immunodominant peptides derived from pathogens allowing pVNPs to be used for active immunization. In this context, pVNPs are safer than VNPs derived from mammalian viruses because there is no risk of infection or reversion to pathogenicity. Furthermore, pVNPs can be produced rapidly and inexpensively in natural host plants or heterologous production platforms. In this review, we discuss the use of pVNPs for the delivery of peptide antigens to the host immune in pre-clinical studies with the final aim of promoting systemic immunity against the corresponding pathogens. Furthermore, we described the versatility of plant viruses, with innate immunostimulatory properties, in providing a huge natural resource of carriers that can be used to develop the next generation of sustainable vaccines.

摘要

在快速发展的纳米技术领域,植物病毒纳米颗粒(pVNPs)在从生物医药到材料科学的各种应用中崭露头角。植物病毒的蛋白质结构使得衣壳结构可以通过遗传工程和/或纳米级精度的化学缀合进行修饰。这意味着 pVNPs 可以被设计成在其外表面展示肽和蛋白质,包括源自病原体的免疫优势肽,从而使 pVNPs 可用于主动免疫。在这种情况下,pVNPs 比源自哺乳动物病毒的 VNP 更安全,因为不存在感染或回复致病性的风险。此外,pVNPs 可以在天然宿主植物或异源生产平台中快速且廉价地生产。在这篇综述中,我们讨论了使用 pVNPs 在临床前研究中向宿主免疫系统递呈肽抗原,最终目的是促进针对相应病原体的全身免疫。此外,我们还描述了具有先天免疫刺激特性的植物病毒的多功能性,为开发下一代可持续疫苗提供了巨大的载体天然资源。

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