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阻断超级抗原介导的疾病:挑战与未来趋势。

Blocking Superantigen-Mediated Diseases: Challenges and Future Trends.

机构信息

CenBRAIN Neurotech, School of Engineering, Westlake University, Hangzhou 310030, China.

出版信息

J Immunol Res. 2024 Jan 17;2024:2313062. doi: 10.1155/2024/2313062. eCollection 2024.

Abstract

Superantigens are virulence factors secreted by microorganisms that can cause various immune diseases, such as overactivating the immune system, resulting in cytokine storms, rheumatoid arthritis, and multiple sclerosis. Some studies have demonstrated that superantigens do not require intracellular processing and instated bind as intact proteins to the antigen-binding groove of major histocompatibility complex II on antigen-presenting cells, resulting in the activation of T cells with different T-cell receptor V and subsequent overstimulation. To combat superantigen-mediated diseases, researchers have employed different approaches, such as antibodies and simulated peptides. However, due to the complex nature of superantigens, these approaches have not been entirely successful in achieving optimal therapeutic outcomes. CD28 interacts with members of the B7 molecule family to activate T cells. Its mimicking peptide has been suggested as a potential candidate to block superantigens, but it can lead to reduced T-cell activity while increasing the host's infection risk. Thus, this review focuses on the use of drug delivery methods to accurately target and block superantigens, while reducing the adverse effects associated with CD28 mimic peptides. We believe that this method has the potential to provide an effective and safe therapeutic strategy for superantigen-mediated diseases.

摘要

超抗原是微生物分泌的一种毒力因子,可导致多种免疫性疾病,如过度激活免疫系统,导致细胞因子风暴、类风湿关节炎和多发性硬化症。一些研究表明,超抗原不需要细胞内加工,而是以完整的蛋白质形式与抗原呈递细胞上主要组织相容性复合体 II 的抗原结合槽结合,导致具有不同 T 细胞受体 V 的 T 细胞激活,随后过度刺激。为了对抗超抗原介导的疾病,研究人员采用了不同的方法,如抗体和模拟肽。然而,由于超抗原的复杂性,这些方法在实现最佳治疗效果方面并不完全成功。CD28 与 B7 分子家族的成员相互作用以激活 T 细胞。其模拟肽已被提议作为一种潜在的候选物来阻断超抗原,但它会导致 T 细胞活性降低,同时增加宿主的感染风险。因此,本综述重点讨论了使用药物递送方法来精确靶向和阻断超抗原,同时减少与 CD28 模拟肽相关的不良反应。我们相信,这种方法有可能为超抗原介导的疾病提供一种有效和安全的治疗策略。

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