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通过多臂聚乙二醇共轭工程化药用肽的生物活性谱

Engineering the Bioactive Profile of Medicinal Peptides by Multiarm Polyethylene Glycol Conjugation.

作者信息

Chen Haonan, Dong Yuhang, Shi Feng, Li Feng

机构信息

State Key Laboratory of Chemical Resource Engineering, College of Chemistry, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

State Key Laboratory of Chemical Resource Engineering, Beijing Laboratory of Biomedical Materials & Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Langmuir. 2025 Apr 22;41(15):9932-9940. doi: 10.1021/acs.langmuir.5c00462. Epub 2025 Apr 8.

Abstract

PEGylation plays a crucial role in peptide modification and has been widely applied in the field of biomedicine, demonstrating significant potential for enhancing peptide drug performance. Herein, we synthesized melittin peptides modified with single arm, double arm, and four arm of PEG12, utilizing lysine side chains as branching points, to systematically investigate the effects of multiarm PEGylation on toxicity, hemolytic activity, stability, and membrane-disrupting ability. Our results revealed that increasing the number of PEG arms significantly reduced the cytotoxicity and hemolytic activity of melittin (with IC increasing approximately 20-fold) while simultaneously enhancing serum stability. These effects were attributed to the improved water solubility and altered hydrophilicity/hydrophobicity balance at the N-terminus, which modulated the interactions with cell membranes and reduced the membrane penetration capacity. Meanwhile, the steric hindrance effect that was caused by multiarm PEG modification prevented the destruction of cell membranes by melittin. The strategy of terminal PEGylation was expected to minimize systemic toxicity and in vivo degradation. Collectively, our findings highlight the critical role of the topological structure PEG in fine-tuning peptide drug performance, providing valuable insights for the design of safer and more effective peptide-based therapeutics.

摘要

聚乙二醇化在肽修饰中起着关键作用,并且已在生物医学领域广泛应用,显示出增强肽药物性能的巨大潜力。在此,我们以赖氨酸侧链为分支点,合成了单臂、双臂和四臂PEG12修饰的蜂毒肽,以系统研究多臂聚乙二醇化对毒性、溶血活性、稳定性和膜破坏能力的影响。我们的结果表明,增加PEG臂的数量显著降低了蜂毒肽的细胞毒性和溶血活性(IC增加约20倍),同时提高了血清稳定性。这些效应归因于改善的水溶性和N端亲水性/疏水性平衡的改变,这调节了与细胞膜的相互作用并降低了膜穿透能力。同时,多臂PEG修饰引起的空间位阻效应阻止了蜂毒肽对细胞膜的破坏。末端聚乙二醇化策略有望将全身毒性和体内降解降至最低。总的来说,我们的研究结果突出了拓扑结构PEG在微调肽药物性能中的关键作用,为设计更安全、更有效的肽类疗法提供了有价值的见解。

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