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Treating autoimmune disorders with venom-derived peptides

机译:用毒液衍生的肽治疗自身免疫性疾病

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Introduction: The effective treatment of autoimmune diseases remains a challenge. Voltage-gated potassium Kv1.3 channels, which are expressed in lymphocytes, are a new therapeutic target for treating autoimmune disease. Consequently, Kv1.3 channel-inhibiting venom-derived peptides are a prospective resource for new drug discovery and clinical application.Area covered: Preclinical and clinical studies have produced a wealth of information on Kv1.3 channel-inhibiting venom-derived peptides, especially from venomous scorpions and sea anemones. This review highlights the advances in screening and design of these peptides with diverse structures and potencies. It focuses on representative strategies for improving peptide selectivity and discusses the preclinical research on those venom-derived peptides as well as their clinical developmental status.Expert opinion: Encouraging results indicate that peptides isolated from the venom of venomous animals are a large resource for discovering immunomodulators that act on Kv1.3 channels. Since the structural diversity of venom-derived peptides determines the variety of their pharmacological activities, the design and optimization of venom-peptides for improved Kv1.3 channel-specificity has been advanced through some representative strategies, such as peptide chemical modification, amino acid residue truncation and binding interface modulation. These advances should further accelerate research, development and the future clinical application of venom-derived peptides selectively targeting Kv1.3 channels.
机译:简介:自身免疫性疾病的有效治疗仍然是一个挑战。在淋巴细胞中表达的电压门控钾kV1.3通道是治疗自身免疫疾病的新治疗靶标。因此,kV1.3抑制血管衍生的肽是新药物发现和临床应用的前瞻性资源。覆盖:临床前和临床研究已经产生了关于kv1.3抑制血液衍生肽的大量信息来自毒液和海葵。本综述突出了筛选和设计这些肽的进步,具有不同的结构和恒蹄。它专注于提高肽选择性的代表性策略,并探讨了对那些毒液衍生的肽的临床前研究以及它们的临床发育状态。普及意见:令人鼓舞的结果表明,从毒液中毒液中分离的肽是发现免疫调节剂的大资源这在KV1.3频道上采取行动。由于毒液衍生的肽的结构多样性决定了它们的药理学活性的各种,通过一些代表性策略,例如肽化学改性,氨基酸残基,氨基酸残基(氨基酸残基)提出了改善KV1.3通道特异性的毒液肽的设计和优化。截断和绑定界面调制。这些进步应进一步加速研究,开发和未来毒液衍生肽的临床应用选择性靶向kV1.3通道。

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