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引用次数: 0
摘要
树突状细胞(DC)在连接先天性免疫反应和适应性免疫反应方面发挥着至关重要的作用。它们广泛分布于各种组织和器官,包括眼睛。在眼部,永久性 DCs 以未成熟状态存在于视网膜外周边缘和毛细血管周围区域。然而,在炎症过程中,DCs 会被激活并导致葡萄膜炎的发生。本综述重点介绍了DC诱发葡萄膜炎的特点和现状,探讨了影响DC现状的因素,并讨论了在实验性自身免疫性葡萄膜炎动物模型和人类中治疗DC的可行方法。报告强调了进一步研究调节 DC 功能的分子通路和信号通路的重要性。例如,研究细胞毒性T淋巴细胞相关蛋白4等抑制B7-CD28共刺激相互作用的分子有助于改善免疫稳态。研究的目的是确定新的治疗靶点,开发针对直流电的策略,如直流电疫苗疗法或使用免疫调节剂。这些方法可根据个体患者的免疫特征和疾病表现进行定制,从而实现个性化治疗策略。这可能包括直流电疗法的个性化设计和精确用药,最终目标是提高疗效,同时最大限度地减少不良反应。
Overview of dendritic cells and related pathways in autoimmune uveitis
Dendritic cells (DCs) play a crucial role in bridging innate and adaptive immune responses. They are widely distributed in various tissues and organs, including the eyes. In the ocular context, permanent DCs are present at the peripheral edge of the retina and the peripapillary area in an immature state. However, during the inflammatory process, DCs become activated and contribute to the development of uveitis. This review focuses on introducing the characteristics and status of DC-induced uveitis, exploring factors that can influence the status of DCs, and discussing feasible methods for treating DCs in both experimental autoimmune uveitis animal models and humans. It emphasizes the importance of further research on molecular pathways and signaling pathways that regulate the function of DCs. For example, investigating molecules such as cytotoxic T-lymphocyte-associated protein 4, which inhibits the B7-CD28 co-stimulatory interaction, can help improve immune homeostasis. The aim is to identify new therapeutic targets and develop targeted strategies for DCs, such as DC vaccine therapy or the use of immune modulators. These approaches can be tailored to the immune characteristics and disease manifestations of individual patients, enabling personalized treatment strategies. This may include the personalized design and precise medication of DC therapy, with the ultimate goal of improving treatment efficacy while minimizing adverse reactions.
期刊介绍:
Open Life Sciences (previously Central European Journal of Biology) is a fast growing peer-reviewed journal, devoted to scholarly research in all areas of life sciences, such as molecular biology, plant science, biotechnology, cell biology, biochemistry, biophysics, microbiology and virology, ecology, differentiation and development, genetics and many others. Open Life Sciences assures top quality of published data through critical peer review and editorial involvement throughout the whole publication process. Thanks to the Open Access model of publishing, it also offers unrestricted access to published articles for all users.