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追求免疫:探索人类疱疹病毒作为疫苗载体。

The Quest for Immunity: Exploring Human Herpesviruses as Vaccine Vectors.

机构信息

Department of Agricultural and Biological Engineering, Purdue University, West Lafayette, IN 47907, USA.

Department of Medicine and Infectious Diseases, Faculty of Veterinary Medicine, Cairo University, Giza 11221, Egypt.

出版信息

Int J Mol Sci. 2023 Nov 9;24(22):16112. doi: 10.3390/ijms242216112.

Abstract

Herpesviruses are large DNA viruses that have long been used as powerful gene therapy tools. In recent years, the ability of herpesviruses to stimulate both innate and adaptive immune responses has led to their transition to various applications as vaccine vectors. This vaccinology branch is growing at an unprecedented and accelerated rate. To date, human herpesvirus-based vectors have been used in vaccines to combat a variety of infectious agents, including the Ebola virus, foot and mouth disease virus, and human immunodeficiency viruses. Additionally, these vectors are being tested as potential vaccines for cancer-associated antigens. Thanks to advances in recombinant DNA technology, immunology, and genomics, numerous steps in vaccine development have been greatly improved. A better understanding of herpesvirus biology and the interactions between these viruses and the host cells will undoubtedly foster the use of herpesvirus-based vaccine vectors in clinical settings. To overcome the existing drawbacks of these vectors, ongoing research is needed to further advance our knowledge of herpesvirus biology and to develop safer and more effective vaccine vectors. Advanced molecular virology and cell biology techniques must be used to better understand the mechanisms by which herpesviruses manipulate host cells and how viral gene expression is regulated during infection. In this review, we cover the underlying molecular structure of herpesviruses and the strategies used to engineer their genomes to optimize capacity and efficacy as vaccine vectors. Also, we assess the available data on the successful application of herpesvirus-based vaccines for combating diseases such as viral infections and the potential drawbacks and alternative approaches to surmount them.

摘要

疱疹病毒是一种大型 DNA 病毒,长期以来一直被用作强大的基因治疗工具。近年来,疱疹病毒刺激固有和适应性免疫反应的能力使其转变为各种疫苗载体的应用。这个疫苗学分支正在以前所未有的速度加速发展。迄今为止,基于人类疱疹病毒的载体已被用于疫苗中以对抗多种传染性病原体,包括埃博拉病毒、口蹄疫病毒和人类免疫缺陷病毒。此外,这些载体正在作为癌症相关抗原的潜在疫苗进行测试。得益于重组 DNA 技术、免疫学和基因组学的进步,疫苗开发的许多步骤都得到了极大的改善。对疱疹病毒生物学以及这些病毒与宿主细胞之间相互作用的更好理解无疑将促进基于疱疹病毒的疫苗载体在临床环境中的应用。为了克服这些载体现有的缺点,需要进行正在进行的研究,以进一步推进我们对疱疹病毒生物学的了解,并开发更安全、更有效的疫苗载体。先进的分子病毒学和细胞生物学技术必须用于更好地理解疱疹病毒操纵宿主细胞的机制以及病毒基因表达在感染过程中是如何调控的。在这篇综述中,我们介绍了疱疹病毒的基本分子结构以及用于工程改造其基因组以优化作为疫苗载体的容量和功效的策略。我们还评估了基于疱疹病毒的疫苗在对抗病毒感染等疾病方面的应用的现有数据,以及克服这些问题的潜在缺点和替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dc1/10671728/a4ec1c77fcf6/ijms-24-16112-g001.jpg

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