蛋白质和多肽的人工脂化:从机制到临床应用。

IF 4.2
Jiaming Mu, Emily Vong, Sheiliza Carmali
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引用次数: 0

摘要

以蛋白质为基础的治疗方法改变了现代医学的面貌,为复杂疾病提供了具有显著特异性和有效性的靶向治疗。然而,这些生物制剂在临床环境中面临着显着的局限性,包括快速清除,易受酶降解,生物膜吸收差以及靶组织内分配效率低。人工脂化为这些挑战提供了一种创新的解决方案,通过故意将脂质基团附着在蛋白质和肽结构上。这种仿生方法利用在自然翻译后修饰中观察到的原理来创造具有优越药理特征的治疗方法。通过战略性地结合脂质部分,研究人员可以通过白蛋白结合显着延长循环半衰期,防止蛋白质水解分解,促进细胞摄取,定制药代动力学参数并增强组织特异性靶向。本文综述了目前脂化技术的综合分析,比较了共价修饰策略和非共价络合方法。我们研究了治疗益处的分子机制,调查了成功的临床应用,并探索了不同治疗领域的新兴机会。通过这一分析,我们为指导合理的设计决策提供了见解,以开发优化的脂化生物治疗药物,提高临床性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Artificial lipidation of proteins and peptides: from mechanism to clinical applications.

The landscape of modern medicine has been transformed by protein-based therapeutics, offering targeted treatments for complex disorders with remarkable specificity and efficacy. However, these biologics face significant limitations in clinical settings, including rapid clearance, vulnerability to enzymatic degradation, poor absorption across biological membranes and inefficient distribution within target tissues. Artificial lipidation provides an innovative solution to these challenges, by the deliberate attachment of lipid groups to proteins and peptide structures. This biomimetic approach harnesses principles observed in natural post-translational modifications to create therapeutics with superior pharmacological profiles. By strategically incorporating lipid moieties, researchers can significantly prolong circulation half-life through albumin binding, protect against proteolytic breakdown, facilitate cellular uptake, customize pharmacokinetic parameters and enhance tissue-specific targeting. This Review provides a comprehensive analysis of current lipidation technologies, contrasting covalent modification strategies with noncovalent complexation approaches. We examine the molecular mechanisms underlying the therapeutic benefits, survey successful clinical applications and explore emerging opportunities across diverse therapeutic areas. Through this analysis, we offer insights to guide rational design decisions for developing optimized lipidated biotherapeutics with enhanced clinical performance.

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