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还原糖对冻干状态下人松弛素化学稳定性的影响。

Effects of reducing sugars on the chemical stability of human relaxin in the lyophilized state.

作者信息

Li S, Patapoff T W, Overcashier D, Hsu C, Nguyen T H, Borchardt R T

机构信息

Department of Pharmaceutical Chemistry, Simons Research Laboratories, University of Kansas, Lawrence 66047, USA.

出版信息

J Pharm Sci. 1996 Aug;85(8):873-7. doi: 10.1021/js950456s.

Abstract

Sugars and polyols have been used routinely with lyophilized proteins and peptides as bulking agents, cryoprotectants, and lyoprotectants. However, reducing sugars may present a problem as excipients since they are potentially reactive with proteins. In this stability study of recombinant human relaxin (Rix) with various sugars as excipients in lyophilized formulations, we observed rapid covalent modifications of the protein in the presence of glucose. Analysis of the protein by LC/MS and tryptic mapping indicated two major degradation pathways. Covalent adducts of glucose with amino groups on the side chains of the protein (i.e., Lys and Arg) formed via the Maillard reaction. In addition, a significant amount of Ser cleavage from the C-terminal of the B-chain of relaxin was also identified when glucose was used as the excipient. It was observed that the latter reaction occurred to a greater extent in the solid state than in solution. We proposed a mechanism for this reaction involving an initial reaction of the Ser hydroxyl group with glucose followed by subsequent hydrolysis of the Trp-Ser amide bond via a cyclic intermediate. In contrast to glucose, mannitol (polyhydric alcohol) and trehalose (nonreducing sugar) produced stable, lyophilized formulations of Rix.

摘要

糖类和多元醇常被用作冻干蛋白质和肽的填充剂、冷冻保护剂和冻干保护剂。然而,还原糖作为辅料可能存在问题,因为它们可能与蛋白质发生反应。在这项以各种糖类作为辅料的重组人松弛素(Rix)冻干制剂的稳定性研究中,我们观察到在有葡萄糖存在的情况下蛋白质会迅速发生共价修饰。通过液相色谱/质谱联用(LC/MS)和胰蛋白酶图谱分析蛋白质,发现了两条主要的降解途径。葡萄糖通过美拉德反应与蛋白质侧链上的氨基(即赖氨酸和精氨酸)形成共价加合物。此外,当使用葡萄糖作为辅料时,还发现大量的丝氨酸从松弛素B链的C端被切割下来。观察到后一种反应在固态中比在溶液中发生的程度更大。我们提出了该反应的一种机制,即丝氨酸羟基首先与葡萄糖反应,随后通过一个环状中间体使色氨酸-丝氨酸酰胺键发生水解。与葡萄糖不同,甘露醇(多元醇)和海藻糖(非还原糖)制成了稳定的Rix冻干制剂。

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