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疫苗佐剂的进展:从明矾到纳米制剂的历程

Advancements in Vaccine Adjuvants: The Journey from Alum to Nano Formulations.

作者信息

Moni Sivakumar S, Abdelwahab Siddig Ibrahim, Jabeen Aamena, Elmobark Mohamed Eltaib, Aqaili Duaa, Ghoal Gassem, Oraibi Bassem, Farasani Abdulla Mohammed, Jerah Ahmed Ali, Alnajai Mahdi Mohammed A, Mohammad Alowayni Abdul Majeed Hamad

机构信息

Department of Pharmaceutics, College of Pharmacy, Jazan University, Jazan 45142, Saudi Arabia.

Medical Research Centre, Jazan University, Jazan 45142, Saudi Arabia.

出版信息

Vaccines (Basel). 2023 Nov 9;11(11):1704. doi: 10.3390/vaccines11111704.


DOI:10.3390/vaccines11111704
PMID:38006036
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10674458/
Abstract

Vaccination is a groundbreaking approach in preventing and controlling infectious diseases. However, the effectiveness of vaccines can be greatly enhanced by the inclusion of adjuvants, which are substances that potentiate and modulate the immune response. This review is based on extensive searches in reputable databases such as Web of Science, PubMed, EMBASE, Scopus, and Google Scholar. The goal of this review is to provide a thorough analysis of the advances in the field of adjuvant research, to trace the evolution, and to understand the effects of the various adjuvants. Historically, alum was the pioneer in the field of adjuvants because it was the first to be approved for use in humans. It served as the foundation for subsequent research and innovation in the field. As science progressed, research shifted to identifying and exploiting the potential of newer adjuvants. One important area of interest is nano formulations. These advanced adjuvants have special properties that can be tailored to enhance the immune response to vaccines. The transition from traditional alum-based adjuvants to nano formulations is indicative of the dynamism and potential of vaccine research. Innovations in adjuvant research, particularly the development of nano formulations, are a promising step toward improving vaccine efficacy and safety. These advances have the potential to redefine the boundaries of vaccination and potentially expand the range of diseases that can be addressed with this approach. There is an optimistic view of the future in which improved vaccine formulations will contribute significantly to improving global health outcomes.

摘要

疫苗接种是预防和控制传染病的一种开创性方法。然而,通过添加佐剂可以大大提高疫苗的效力,佐剂是增强和调节免疫反应的物质。本综述基于在科学网、PubMed、EMBASE、Scopus和谷歌学术等知名数据库中的广泛检索。本综述的目的是对佐剂研究领域的进展进行全面分析,追溯其发展历程,并了解各种佐剂的作用。从历史上看,明矾是佐剂领域的先驱,因为它是第一个被批准用于人类的佐剂。它为该领域随后的研究和创新奠定了基础。随着科学的进步,研究转向识别和开发新型佐剂的潜力。一个重要的研究领域是纳米制剂。这些先进的佐剂具有特殊的性质,可以进行定制以增强对疫苗的免疫反应。从传统的基于明矾的佐剂向纳米制剂的转变表明了疫苗研究的活力和潜力。佐剂研究的创新,特别是纳米制剂的开发,是提高疫苗效力和安全性的有希望的一步。这些进展有可能重新定义疫苗接种的界限,并有可能扩大可以用这种方法解决的疾病范围。对于未来有一种乐观的看法,即改进的疫苗制剂将对改善全球健康状况做出重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/29c54bdebc41/vaccines-11-01704-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/25c980b93af9/vaccines-11-01704-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/34e13b757ee1/vaccines-11-01704-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/d8244f8f453e/vaccines-11-01704-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/29c54bdebc41/vaccines-11-01704-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/25c980b93af9/vaccines-11-01704-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/34e13b757ee1/vaccines-11-01704-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/d8244f8f453e/vaccines-11-01704-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb25/10674458/29c54bdebc41/vaccines-11-01704-g004.jpg

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Advancements in Vaccine Adjuvants: The Journey from Alum to Nano Formulations.

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[7]
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[8]
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[9]
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[10]
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本文引用的文献

[1]
Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines.

Vaccines (Basel). 2023-6-29

[2]
Vaccine adjuvants: mechanisms and platforms.

Signal Transduct Target Ther. 2023-7-19

[3]
Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications.

Vaccines (Basel). 2023-3-15

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Hepatitis B Immunization Status in Children with Chronic Kidney Disease: Experience at a Single Center, Egypt.

J Clin Med. 2023-2-27

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A liposomal vaccine promotes strong adaptive immune responses via dendritic cell activation in draining lymph nodes.

J Control Release. 2023-4

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Induction of Innate and Adaptive Immune Response against Recombinant HBsAg Protein Entrapped in Docosahexaenoic Acid Nanovesicles through Biomarkers.

Vaccines (Basel). 2023-2-16

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A TLR7-nanoparticle adjuvant promotes a broad immune response against heterologous strains of influenza and SARS-CoV-2.

Nat Mater. 2023-3

[8]
Role of B cells as antigen presenting cells.

Front Immunol. 2022

[9]
Design, Characterization, and Immune Augmentation of Docosahexaenoic Acid Nanovesicles as a Potential Delivery System for Recombinant HBsAg Protein.

Vaccines (Basel). 2022-6-16

[10]
An Overview of Vaccine Adjuvants: Current Evidence and Future Perspectives.

Vaccines (Basel). 2022-5-22

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