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Deimmunization of protein therapeutics – Recent advances in experimental and computational epitope prediction and deletion

机译:蛋白质治疗方法的解放 - 实验和计算表位预测和缺失的最新进展

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摘要

Biotherapeutics, and antimicrobial proteins in particular, are of increasing interest for human medicine. An important challenge in the development of such therapeutics is their potential immunogenicity, which can induce production of anti-drug-antibodies, resulting in altered pharmacokinetics, reduced efficacy, and potentially severe anaphylactic or hypersensitivity reactions. For this reason, the development and application of effective deimmunization methods for protein drugs is of utmost importance. Deimmunization may be achieved by unspecific shielding approaches, which include PEGylation, fusion to polypeptides (e.g., XTEN or PAS), reductive methylation, glycosylation, and polysialylation. Alternatively, the identification of epitopes for T cells or B cells and their subsequent deletion through site-directed mutagenesis represent promising deimmunization strategies and can be accomplished through either experimental or computational approaches. This review highlights the most recent advances and current challenges in the deimmunization of protein therapeutics, with a special focus on computational epitope prediction and deletion tools.
机译:特别是生物治疗和抗微生物蛋白质对人类药物的兴趣越来越厉害。在这种治疗方法的发展中的一个重要挑战是它们的潜在免疫原性,可以诱导产生抗药物 - 抗体的产生,导致药代动力学,减少疗效和可能严重的过敏反应或过敏反应。因此,蛋白质药物有效解放方法的开发和应用至关重要。可以通过非特异性屏蔽方法实现,其包括聚乙二醇化,融合到多肽(例如,XTEN或PAS),还原甲基化,糖基化和多糖化。或者,通过定向定向诱变的T细胞或B细胞的表位及其随后的缺失代表了有希望的解放策略,并且可以通过实验或计算方法来实现。本综述凸显了蛋白质治疗剂解除释放的最新进展和目前挑战,特别关注计算表位预测和删除工具。

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