免疫工程治疗系统性自身免疫的潜力。
The therapeutic potential of immunoengineering for systemic autoimmunity.
机构信息
Department of NanoEngineering and Chemical Engineering Program, University of California, San Diego, La Jolla, CA, USA.
Kao Autoimmunity Institute and Division of Rheumatology, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
出版信息
Nat Rev Rheumatol. 2024 Apr;20(4):203-215. doi: 10.1038/s41584-024-01084-x. Epub 2024 Feb 21.
Disease-modifying drugs have transformed the treatment options for many systemic autoimmune diseases. However, an evolving understanding of disease mechanisms, which might vary between individuals, is paving the way for the development of novel agents that operate in a patient-tailored manner through immunophenotypic regulation of disease-relevant cells and the microenvironment of affected tissue domains. Immunoengineering is a field that is focused on the application of engineering principles to the modulation of the immune system, and it could enable future personalized and immunoregulatory therapies for rheumatic diseases. An important aspect of immunoengineering is the harnessing of material chemistries to design technologies that span immunologically relevant length scales, to enhance or suppress immune responses by re-balancing effector and regulatory mechanisms in innate or adaptive immunity and rescue abnormalities underlying pathogenic inflammation. These materials are endowed with physicochemical properties that enable features such as localization in immune cells and organs, sustained delivery of immunoregulatory agents, and mimicry of key functions of lymphoid tissue. Immunoengineering applications already exist for disease management, and there is potential for this new discipline to improve disease modification in rheumatology.
疾病修饰药物已经改变了许多系统性自身免疫性疾病的治疗选择。然而,对疾病机制的不断深入了解(这种了解可能因人而异)正在为新型药物的开发铺平道路,这些药物通过对疾病相关细胞和受累组织区域的微环境进行免疫表型调节,以个体化的方式发挥作用。免疫工程是一个专注于将工程原理应用于免疫系统调节的领域,它可以为风湿病的未来个性化和免疫调节治疗提供可能。免疫工程的一个重要方面是利用材料化学来设计跨越免疫相关长度尺度的技术,通过重新平衡先天或适应性免疫中的效应和调节机制,增强或抑制免疫反应,并纠正潜在的致病性炎症异常,从而实现免疫调节。这些材料具有赋予它们一些理化特性,如在免疫细胞和器官中的定位、免疫调节剂的持续递送,以及模仿淋巴组织的关键功能。免疫工程已经应用于疾病管理,这一新学科有可能改善风湿病的疾病修饰。