Molecular Immunology Section, Laboratory of Immunology, National Eye Institute (NEI), National Institutes of Health, Bethesda, MD, United States.
Department of Biomedical Sciences, College of Health Sciences, University of Wisconsin-Milwaukee, Milwaukee, WI, United States.
Front Immunol. 2021 Apr 30;12:623725. doi: 10.3389/fimmu.2021.623725. eCollection 2021.
The profound impact that vision loss has on human activities and quality of life necessitates understanding the etiology of potentially blinding diseases and their clinical management. The unique anatomic features of the eye and its sequestration from peripheral immune system also provides a framework for studying other diseases in immune privileged sites and validating basic immunological principles. Thus, early studies of intraocular inflammatory diseases (uveitis) were at the forefront of research on organ transplantation. These studies laid the groundwork for foundational discoveries on how immune system distinguishes self from non-self and established current concepts of acquired immune tolerance and autoimmunity. Our charge in this review is to examine how advances in molecular cell biology and immunology over the past 3 decades have contributed to the understanding of mechanisms that underlie immunopathogenesis of uveitis. Particular emphasis is on how advances in biotechnology have been leveraged in developing biologics and cell-based immunotherapies for uveitis and other neuroinflammatory diseases.
视力丧失对人类活动和生活质量的深远影响,需要了解潜在致盲疾病的病因及其临床管理。眼睛独特的解剖特征及其与外周免疫系统的隔离,也为研究免疫特惠部位的其他疾病和验证基本免疫学原理提供了框架。因此,眼内炎症性疾病(葡萄膜炎)的早期研究处于器官移植研究的前沿。这些研究为免疫系统如何区分自我和非自我奠定了基础,确立了获得性免疫耐受和自身免疫的现有概念。在这篇综述中,我们将探讨过去 30 年来分子细胞生物学和免疫学的进展如何有助于理解葡萄膜炎发病机制的免疫学基础。特别强调的是,生物技术的进步如何被用于开发生物制剂和基于细胞的免疫疗法,以治疗葡萄膜炎和其他神经炎症性疾病。