Department of Bio-Sciences and Technology, Maharishi Markandeshwar (Deemed to Be) University, Mullana, Ambala 134003, India.
Centera Laboratories, Institute of High Pressure Physics PAS, 01-142 Warsaw, Poland.
Life Sci. 2024 Jan 1;336:122331. doi: 10.1016/j.lfs.2023.122331. Epub 2023 Dec 7.
Despite the effectiveness of vaccination in reducing or eradicating diseases caused by pathogens, there remain certain diseases and emerging infections for which developing effective vaccines is inherently challenging. Additionally, developing vaccines for individuals with compromised immune systems or underlying medical conditions presents significant difficulties. As well as traditional vaccine different methods such as inactivated or live attenuated vaccines, viral vector vaccines, and subunit vaccines, emerging non-viral vaccine technologies, including viral-like particle and nanoparticle vaccines, DNA/RNA vaccines, and rational vaccine design, offer new strategies to address the existing challenges in vaccine development. These advancements have also greatly enhanced our understanding of vaccine immunology, which will guide future vaccine development for a broad range of diseases, including rapidly emerging infectious diseases like COVID-19 and diseases that have historically proven resistant to vaccination. This review provides a comprehensive assessment of emerging non-viral vaccine production methods and their application in addressing the fundamental and current challenges in vaccine development.
尽管疫苗接种在减少或消除病原体引起的疾病方面非常有效,但仍有一些疾病和新出现的感染,开发有效的疫苗具有内在的挑战性。此外,为免疫系统受损或有潜在医疗条件的个体开发疫苗也存在重大困难。除了传统的疫苗,如灭活或减毒疫苗、病毒载体疫苗和亚单位疫苗,新兴的非病毒疫苗技术,包括类病毒颗粒和纳米颗粒疫苗、DNA/RNA 疫苗和合理疫苗设计,为解决疫苗开发中的现有挑战提供了新的策略。这些进展还极大地提高了我们对疫苗免疫学的理解,这将指导针对广泛疾病(包括迅速出现的传染病,如 COVID-19,以及历史上对疫苗有抵抗力的疾病)的未来疫苗开发。本文综述了新兴的非病毒疫苗生产方法及其在解决疫苗开发中基本和当前挑战方面的应用。