Department of Chemistry and Biochemistry, The University of Texas at Dallas, 800 West Campbell Road, Richardson, Texas 75080, United States.
Department of Biomedical Engineering, The University of Texas at Dallas, 800 West Campbell Road, Richardson, Texas 75080, United States.
Chem Rev. 2024 Mar 27;124(6):3013-3036. doi: 10.1021/acs.chemrev.3c00409. Epub 2024 Feb 26.
The immune system's complexity and ongoing evolutionary struggle against deleterious pathogens underscore the value of vaccination technologies, which have been bolstering human immunity for over two centuries. Despite noteworthy advancements over these 200 years, three areas remain recalcitrant to improvement owing to the environmental instability of the biomolecules used in vaccines─the challenges of formulating them into controlled release systems, their need for constant refrigeration to avoid loss of efficacy, and the requirement that they be delivered via needle owing to gastrointestinal incompatibility. Nanotechnology, particularly metal-organic frameworks (MOFs) and covalent organic frameworks (COFs), has emerged as a promising avenue for confronting these challenges, presenting a new frontier in vaccine development. Although these materials have been widely explored in the context of drug delivery, imaging, and cancer immunotherapy, their role in immunology and vaccine-related applications is a recent yet rapidly developing field. This review seeks to elucidate the prospective use of MOFs and COFs for biomaterial stabilization, eliminating the necessity for cold chains, enhancing antigen potency as adjuvants, and potentializing needle-free delivery of vaccines. It provides an expansive and critical viewpoint on this rapidly evolving field of research and emphasizes the vital contribution of chemists in driving further advancements.
免疫系统的复杂性以及其与有害病原体持续不断的进化斗争突显了疫苗接种技术的重要价值,这些技术在过去的两个多世纪中一直在增强人类的免疫力。尽管在这 200 年里取得了显著的进展,但由于疫苗中使用的生物分子在环境中的不稳定性、将其制成控制释放系统的挑战、为避免效力丧失而需要持续冷藏以及由于胃肠道不兼容而需要通过针剂来递送这些生物分子,这三个领域仍然难以改善。纳米技术,特别是金属有机框架(MOFs)和共价有机框架(COFs),已成为应对这些挑战的有前途的途径,为疫苗开发提供了一个新的前沿领域。尽管这些材料在药物输送、成像和癌症免疫治疗方面已经得到了广泛的探索,但它们在免疫学和疫苗相关应用中的作用是一个最近但发展迅速的领域。本文旨在阐明 MOFs 和 COFs 在生物材料稳定化、消除冷链需求、作为佐剂增强抗原效力以及实现无针疫苗递送方面的潜在应用。本文对这一快速发展的研究领域进行了广泛而批判性的分析,并强调了化学家在推动进一步发展方面的重要贡献。