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第三代疫苗:核酸疫苗的特点和提高其效率的策略。

Third-Generation Vaccines: Features of Nucleic Acid Vaccines and Strategies to Improve Their Efficiency.

机构信息

Laboratory of Molecular Studies and Experimental Therapy-LEMTE, Department of Genetics, Federal University of Pernambuco, Recife 50670-901, Brazil.

Laboratory of Immunological and Antitumor Analysis, Department of Antibiotics, Bioscience Center, and Keizo Asami Imunophatology Laboratory, Federal University of Pernambuco, Recife 50670-901, Brazil.

出版信息

Genes (Basel). 2022 Dec 4;13(12):2287. doi: 10.3390/genes13122287.

Abstract

Gene immunization comprises mRNA and DNA vaccines, which stand out due to their simple design, maintenance, and high efficacy. Several studies indicate promising results in preclinical and clinical trials regarding immunization against ebola, human immunodeficiency virus (HIV), influenza, and human papillomavirus (HPV). The efficiency of nucleic acid vaccines has been highlighted in the fight against COVID-19 with unprecedented approval of their use in humans. However, their low intrinsic immunogenicity points to the need to use strategies capable of overcoming this characteristic and increasing the efficiency of vaccine campaigns. These strategies include the improvement of the epitopes' presentation to the system via MHC, the evaluation of immunodominant epitopes with high coverage against emerging viral subtypes, the use of adjuvants that enhance immunogenicity, and the increase in the efficiency of vaccine transfection. In this review, we provide updates regarding some characteristics, construction, and improvement of such vaccines, especially about the production of synthetic multi-epitope genes, widely employed in the current gene-based vaccines.

摘要

基因免疫包括 mRNA 和 DNA 疫苗,它们具有设计简单、易于保存和高效等优点。多项研究表明,在针对埃博拉、人类免疫缺陷病毒 (HIV)、流感和人乳头瘤病毒 (HPV) 的免疫接种方面,这些疫苗在临床前和临床试验中都有很有前景的结果。核酸疫苗在抗击 COVID-19 方面的效率非常高,其在人类中的应用也得到了前所未有的批准。然而,它们的低固有免疫原性表明需要使用能够克服这一特性并提高疫苗接种效果的策略。这些策略包括通过 MHC 改善表位向系统的呈现、评估针对新兴病毒亚型具有高覆盖率的免疫优势表位、使用增强免疫原性的佐剂以及提高疫苗转染效率。在这篇综述中,我们提供了有关这些疫苗的一些特性、构建和改进的最新信息,特别是关于合成多表位基因的生产,这种基因广泛应用于当前的基因疫苗中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e727/9777941/540849c41d1f/genes-13-02287-g001.jpg

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