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定制无机纳米佐剂以开发下一代疫苗。

Tailoring inorganic nanoadjuvants towards next-generation vaccines.

机构信息

Health Research Institute, Department of Life Science and Biotechnology, National Institute of Advanced Industrial Science and Technology (AIST), Central 6, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8566, Japan.

出版信息

Chem Soc Rev. 2018 Jul 2;47(13):4954-4980. doi: 10.1039/c8cs00028j.

Abstract

Vaccines, one of the most effective and powerful public health measures, have saved countless lives over the past century and still have a tremendous global impact. As an indispensable component of modern vaccines, adjuvants play a critical role in strengthening and/or shaping a specific immune response against infectious diseases as well as malignancies. The application of nanotechnology provides the possibility of precisely tailoring the building blocks of nanoadjuvants towards modern vaccines with the desired immune response. The last decade has witnessed great academic progress in inorganic nanomaterials for vaccine adjuvants in terms of nanometer-scale synthesis, structure control, and functionalization design. Inorganic adjuvants generally facilitate the delivery of antigens, allowing them to be released in a sustained manner, enhance immunogenicity, deliver antigens efficiently to specific targets, and induce a specific immune response. In particular, the recent discovery of the intrinsic immunomodulatory function of inorganic nanomaterials further allows us to shape the immune response towards the desired type and increase the efficacy of vaccines. In this article, we comprehensively review state-of-the-art research on the use of inorganic nanomaterials as vaccine adjuvants. Attention is focused on the physicochemical properties of versatile inorganic nanoadjuvants, such as composition, size, morphology, shape, hydrophobicity, and surface charge, to effectively stimulate cellular immunity, considering that the clinically used alum adjuvants can only induce strong humoral immunity. In addition, the efforts made to date to expand the application of inorganic nanoadjuvants in cancer vaccines are summarized. Finally, we discuss the future prospects and our outlook on tailoring inorganic nanoadjuvants towards next-generation vaccines.

摘要

疫苗是过去一个世纪中最有效和最强大的公共卫生措施之一,为数以百万计的生命提供了保障,并且仍然对全球产生着巨大的影响。作为现代疫苗不可或缺的组成部分,佐剂在增强和/或塑造针对传染病和恶性肿瘤的特定免疫反应方面发挥着关键作用。纳米技术的应用为精确定制纳米佐剂的构建块提供了可能性,使其具有所需的免疫反应。在过去的十年中,无机纳米材料在疫苗佐剂方面取得了巨大的学术进展,包括纳米级合成、结构控制和功能化设计。无机佐剂通常有助于抗原的传递,使它们能够以持续的方式释放,增强免疫原性,将抗原有效地递送到特定的靶标,并诱导特定的免疫反应。特别是,最近发现无机纳米材料具有内在的免疫调节功能,这使得我们能够进一步塑造所需类型的免疫反应,并提高疫苗的功效。在本文中,我们全面回顾了将无机纳米材料用作疫苗佐剂的最新研究进展。我们关注的是多功能无机纳米佐剂的物理化学性质,例如组成、尺寸、形态、形状、疏水性和表面电荷,以有效刺激细胞免疫,因为临床使用的明矾佐剂只能诱导强烈的体液免疫。此外,我们还总结了迄今为止为扩大无机纳米佐剂在癌症疫苗中的应用所做的努力。最后,我们讨论了未来的前景和我们对定制下一代疫苗的无机纳米佐剂的展望。

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