从遗传密码到全球健康:核酸疫苗对疾病预防和治疗的影响。

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Alessandra Del Bene, Antonia D'Aniello, Salvatore Mottola, Vincenzo Mazzarella, Roberto Cutolo, Erica Campagna, Rosaria Benedetti, Lucia Altucci, Sandro Cosconati, Salvatore Di Maro, Anna Messere
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引用次数: 0

摘要

疫苗学彻底改变了现代医学,为预防和控制传染病提供了开创性的解决方案,同时开创了应对包括癌症在内的非传染性挑战的创新战略。传统疫苗面临固有的局限性,这推动了亚单位疫苗、肽基疫苗和核酸基平台等下一代疫苗的发展。其中,包括DNA和mRNA技术在内的核酸疫苗是一项重大创新。20世纪90年代的开创性研究表明,它们能够通过编码特定抗原来引发免疫反应。递送系统和分子工程的最新进展已经克服了最初的挑战,使它们能够快速发展并取得临床成功。这篇综述探讨了基于核酸的疫苗,包括化学修饰的变体,通过检查其机制、结构特征和治疗潜力,同时强调了它们在现代免疫策略和扩大在当代医学中的应用中的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From genetic code to global health: the impact of nucleic acid vaccines on disease prevention and treatment.

Vaccinology has revolutionized modern medicine, delivering groundbreaking solutions to prevent and control infectious diseases while pioneering innovative strategies to tackle non-infectious challenges, including cancer. Traditional vaccines faced inherent limitations, driving the evolution of next-generation vaccines such as subunit vaccines, peptide-based vaccines, and nucleic acid-based platforms. Among these, nucleic acid-based vaccines, including DNA and mRNA technologies, represent a major innovation. Pioneering studies in the 1990s demonstrated their ability to elicit immune responses by encoding specific antigens. Recent advancements in delivery systems and molecular engineering have overcome initial challenges, enabling their rapid development and clinical success. This review explores nucleic acid-based vaccines, including chemically modified variants, by examining their mechanisms, structural features, and therapeutic potential, while underscoring their pivotal role in modern immunization strategies and expanding applications across contemporary medicine.

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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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