高分子化学决定佐剂特性并决定针对抗原或疫苗的免疫反应。

Polymer Chemistry Defines Adjuvant Properties and Determines the Immune Response against the Antigen or Vaccine.

作者信息

Shakya Akhilesh Kumar, Nandakumar Kutty Selva

机构信息

Whitacre College of Engineering, Texas Tech University, Lubbock, TX 79409, USA.

Department of Environmental and Biosciences, School of Business, Innovation and Sustainability, Halmstad University, 30118 Halmstad, Sweden.

出版信息

Vaccines (Basel). 2023 Aug 22;11(9):1395. doi: 10.3390/vaccines11091395.

Abstract

Activation of the immune system is a needed for designing new antigen/drug delivery systems to develop new therapeutics and for developing animal disease models to study the disease pathogenesis. A weak antigen alone is insufficient to activate the immune system. Sometimes, assistance in the form of polymers is needed to control the release of antigens under in vivo conditions or in the form of an adjuvant to activate the immune system efficiently. Many kinds of polymers from different functional groups are suitable as microbial antigens for inducing therapeutic immune responses against infectious diseases at the preclinical level. The choice of the functionality of polymer varies as per the application type. Polymers from the acid and ester groups are the most common types investigated for protein-based antigens. However, electrostatic interaction-displaying polymers like cationic polymers are the most common type for nucleic acid-based antigens. Metal coordination chemistry is commonly used in polymers designed for cancer immunotherapeutic applications to suppress inflammation and induce a protective immune response. Amide chemistry is widely deployed in polymers used to develop antigen-specific disease models like the experimental autoimmune arthritis murine model.

摘要

激活免疫系统对于设计新的抗原/药物递送系统以开发新疗法以及开发动物疾病模型以研究疾病发病机制而言是必要的。仅一种弱抗原不足以激活免疫系统。有时,需要聚合物形式的辅助来控制体内条件下抗原的释放,或者需要佐剂形式的辅助来有效激活免疫系统。来自不同官能团的多种聚合物适合作为微生物抗原,用于在临床前水平诱导针对传染病的治疗性免疫反应。聚合物官能团的选择因应用类型而异。酸基和酯基聚合物是针对基于蛋白质的抗原研究最多的常见类型。然而,像阳离子聚合物这样显示静电相互作用的聚合物是基于核酸的抗原最常见的类型。金属配位化学常用于设计用于癌症免疫治疗应用的聚合物,以抑制炎症并诱导保护性免疫反应。酰胺化学广泛应用于用于开发抗原特异性疾病模型(如实验性自身免疫性关节炎小鼠模型)的聚合物中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42fd/10537360/42103e819bfe/vaccines-11-01395-g001.jpg

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