Influence of structural modifications in synthetic vectors of lipid adjuvants on mRNA vaccine delivery

IF 5.7 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Shruthilaya Chilumula, Pallavi Hanchate, Srilakshmi V. Patri and Srujan Marepally
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Abstract

Lipid adjuvants act as a fundamental element in mRNA vaccine technology by performing as diverse functional parts: augmenting immune responses, assisting genetic payload delivery to target cells, and optimizing antigen presentation. They offer various advantages, such as particle stabilization, targeted delivery, refined endosomal escape mechanisms, and self-adjuvant characteristics that amplify immune activation. The lipid adjuvant structure is crucial for both maximizing delivery accuracy and unlocking tunable immune responses, positioning lipid adjuvants as critical components of next-generation vaccines. Understanding the structural alterations of the lipid adjuvants is necessary for the rational design and synthesis of next-generation novel lipid adjuvants that elicit superior immune responses in mRNA vaccines. To magnify the potency and safety of lipid adjuvants, researchers are investigating the fundamental aspects of designing an innovative lipid that leverages biodegradable linkages. This strategy emphasizes the critical roles of numerous lipids, such as ionizable/cationic lipids, helper lipids, phospholipids, and PEGylated lipids, for enhancing the stability, targeting precision, and immunogenic efficacy of mRNA vaccine delivery. Moreover, it elucidates the structural changes of recently developed cationic/ionizable lipid adjuvants, highlighting how their structure impacts vaccine efficacy, especially linkers. By leveraging these advancements, researchers are exploring the potential for highly effective and targeted mRNA vaccine platforms, paving the way for next-generation immunization strategies.

Abstract Image

脂质佐剂合成载体结构修饰对mRNA疫苗递送的影响
脂质佐剂作为mRNA疫苗技术的一个基本要素,发挥着多种功能:增强免疫反应,协助基因有效载荷传递到靶细胞,优化抗原呈递。它们具有多种优势,如颗粒稳定性、靶向递送、精致的内体逃逸机制和增强免疫激活的自辅助特性。脂质佐剂结构对于最大限度地提高递送准确性和解锁可调节的免疫反应至关重要,将脂质佐剂定位为下一代疫苗的关键成分。了解脂质佐剂的结构变化对于合理设计和合成下一代新型脂质佐剂是必要的,这些新型脂质佐剂可以在mRNA疫苗中引起更好的免疫反应。为了扩大脂质佐剂的效力和安全性,研究人员正在研究设计一种利用可生物降解键的创新脂质的基本方面。该策略强调了多种脂质(如电离/阳离子脂质、辅助脂质、磷脂和聚乙二醇化脂质)在提高mRNA疫苗递送的稳定性、靶向精度和免疫原性功效方面的关键作用。此外,它阐明了最近开发的阳离子/电离脂质佐剂的结构变化,强调了它们的结构如何影响疫苗的效力,特别是连接物。通过利用这些进展,研究人员正在探索高效靶向mRNA疫苗平台的潜力,为下一代免疫策略铺平道路。
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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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