microRNA-150在变态反应、自身免疫和免疫耐受中的复杂功能

IF 0.9 Q4 IMMUNOLOGY
Katarzyna Nazimek
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引用次数: 0

摘要

目前,正在作出特别努力,以制定策略,允许激活长期抗原特异性免疫耐受治疗过敏性和自身免疫性疾病。其中一些治疗方法旨在通过使用基于mirna和靶向mirna的治疗在遗传水平上调节细胞功能。同时,细胞外囊泡作为天然miRNA载体的关键作用在诱导抗原特异性免疫耐受方面得到了强调,特别是它们似乎很容易用于治疗应用。在其他免疫相关的mirna中,miR-150受到特别关注,因为它在免疫细胞成熟和分化的不同阶段表达不同。此外,miR-150参与了不同的信号级联,协调先天和适应性免疫反应的体液和细胞介导机制。因此,miR-150被认为是哺乳动物免疫的主要调节因子。目前,生理mir -150依赖的调节回路及其功能障碍的原因正在揭示过敏性和自身免疫性疾病的发病机制。因此,本文对miR-150在这些疾病的发病机制和并发症中的作用进行综述。此外,miR-150参与调节对过敏原和自身抗原的免疫反应以及诱导抗原特异性免疫耐受,并特别强调了该miRNA的治疗潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The complex functions of microRNA-150 in allergy, autoimmunity and immune tolerance
At present, special efforts are being made to develop the strategies allowing for activation of long-lasting antigen-specific immune tolerance in therapy of allergic and autoimmune diseases. Some of these therapeutic approaches are aimed at modulating cell functions at genetic level by using miRNA-based and miRNA-targeting treatments. Simultaneously, the crucial role of extracellular vesicles as natural miRNA conveyors is highlighted for induction of antigen-specific immune tolerance, especially that they appear to be easily manipulatable for therapeutic applications. Among other immune-related miRNAs, miR-150 is getting special attention as it is differently expressed by immune cells at various stages of their maturation and differentiation. In addition, miR-150 is involved in different signaling cascades orchestrating humoral and cell-mediated mechanisms of both innate and adaptive immune responses. Therefore, miR-150 is considered a master regulator of immunity in mammals. Currently, physiological miR-150-dependent regulatory circuits and causes of their malfunctioning that underlie the pathogenesis of allergic and autoimmune disorders are being unraveled. Thus, present review summarizes the current knowledge of the role of miR-150 in the pathogenesis and complications of these diseases. Furthermore, the involvement of miR-150 in regulation of immune responses to allergens and self-antigens and in induction of antigen-specific immune tolerance is discussed with the special emphasis on the therapeutic potential of this miRNA.
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