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生物药物的化学(新)糖基化。

Chemical (neo)glycosylation of biological drugs.

机构信息

Department of Chemistry, Aarhus University, Denmark.

Department of Chemistry, Aarhus University, Denmark; iNano Interdisciplinary Nanoscience Centre, Aarhus University, Denmark.

出版信息

Adv Drug Deliv Rev. 2021 Apr;171:62-76. doi: 10.1016/j.addr.2021.01.021. Epub 2021 Feb 3.

Abstract

Biological drugs, specifically proteins and peptides, are a privileged class of medicinal agents and are characterized with high specificity and high potency of therapeutic activity. However, biologics are fragile and require special care during storage, and are often modified to optimize their pharmacokinetics in terms of proteolytic stability and blood residence half-life. In this review, we showcase glycosylation as a method to optimize biologics for storage and application. Specifically, we focus on chemical glycosylation as an approach to modify biological drugs. We present case studies that illustrate the success of this methodology and specifically address the highly important question: does connectivity within the glycoconjugate have to be native or not? We then present the innovative methods of chemical glycosylation of biologics and specifically highlight the emerging and established protecting group-free methodologies of glycosylation. We discuss thermodynamic origins of protein stabilization via glycosylation, and analyze in detail stabilization in terms of proteolytic stability, aggregation upon storage and/or heat treatment. Finally, we present a case study of protein modification using sialic acid-containing glycans to avoid hepatic clearance of biological drugs. This review aims to spur interest in chemical glycosylation as a facile, powerful tool to optimize proteins and peptides as medicinal agents.

摘要

生物药物,特别是蛋白质和肽,是一类具有高特异性和高治疗活性的药物。然而,生物制剂很脆弱,在储存过程中需要特别注意,并且经常被修饰以优化其药代动力学,包括蛋白水解稳定性和血液半衰期。在这篇综述中,我们展示了糖基化作为一种优化生物制剂储存和应用的方法。具体来说,我们专注于化学糖基化作为修饰生物药物的一种方法。我们提出了一些案例研究,说明了这种方法的成功,并特别解决了一个非常重要的问题:糖缀合物内的连接是否必须是天然的?然后,我们介绍了生物制品的化学糖基化的创新方法,并特别强调了新兴的和成熟的无保护基糖基化方法。我们讨论了糖基化对蛋白质稳定的热力学起源,并详细分析了在蛋白水解稳定性、储存和/或热处理时的聚集稳定性。最后,我们提出了一个使用含有唾液酸的聚糖修饰蛋白质的案例研究,以避免生物药物的肝脏清除。本综述旨在激发人们对化学糖基化作为一种简便、强大的工具来优化蛋白质和肽作为药物的兴趣。

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