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胰岛素的化学修饰:在稳定性和药物性能之间寻求平衡。

Chemical modifications of insulin: Finding a compromise between stability and pharmaceutical performance.

机构信息

Protein Chemistry Laboratory (PCL), Department of Biology, College of Sciences, Shiraz University, Shiraz, Iran.

Department of Pharmaceutical Biotechnology and Pharmaceutical Sciences Research Center, Faculty of Pharmacy, Shiraz University of Medical Sciences, Shiraz 71345, Iran.

出版信息

Int J Pharm. 2018 Aug 25;547(1-2):450-468. doi: 10.1016/j.ijpharm.2018.06.023. Epub 2018 Jun 8.

Abstract

Insulin, a key peptide hormone that conjointly with its receptor regulates blood glucose levels, is used as the major means to treat diabetes. This therapeutic hormone may undergo different chemical modifications during industrial processes, pharmaceutical formulation, and through its endogenous storage in the pancreatic β-cells. Insulin is highly sensitive to the environmental stresses and easily undergoes structural changes, being also able to unfold and aggregate. Even small changes altering the structural integrity of insulin may have important impact on the biological efficacy in relation to the physiological and pharmacological activities of this hormone. The chemical modifications of insulin may occur either randomly or based on the well-planned strategies to enhance its pharmaceutical properties. A plethora of studies have attempted to answer the fundamental questions of how chemical modifications and which environmental conditions may have either destructive effects or improve structural stability and pharmaceutical performance of insulin. The aim of this review is to highlight the impact of different modifications on structure, stability, biological activity, and pharmaceutical properties of insulin.

摘要

胰岛素是一种关键的肽类激素,与受体共同调节血糖水平,被用作治疗糖尿病的主要手段。这种治疗性激素在工业过程、药物配方中以及通过其在胰腺β细胞中的内部分泌储存,可能会经历不同的化学修饰。胰岛素对环境压力非常敏感,容易发生结构变化,也能够展开和聚集。即使是微小的改变,也会改变胰岛素的结构完整性,这可能会对其与这种激素的生理和药理活性相关的生物学功效产生重要影响。胰岛素的化学修饰可能是随机发生的,也可能是基于增强其药物特性的精心策划的策略。大量研究试图回答以下基本问题:化学修饰和环境条件如何可能具有破坏性影响,或者如何改善胰岛素的结构稳定性和药物性能。本文的目的是强调不同修饰对胰岛素结构、稳定性、生物活性和药物性能的影响。

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