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人胰岛素在固态下的降解动力学:温度和湿度影响的研究

Kinetics of human insulin degradation in the solid-state: An investigation of the effects of temperature and humidity.

作者信息

Fagan Andrew, Bateman Lorraine M, O'Shea Joseph P, Crean Abina M

机构信息

SSPC Centre for Pharmaceutical Research, School of Pharmacy, University College Cork, Cork T12 YT20, Ireland.

School of Pharmacy, University College Cork, Cork T12 YT20, Ireland; Analytical and Biological Chemistry Research Facility (ABCRF), University College Cork, College Road, Cork T12 YN60, Ireland; School of Chemistry, University College Cork, College Road, Cork T12 YN60, Ireland.

出版信息

J Pharm Sci. 2025 Feb;114(2):1368-1375. doi: 10.1016/j.xphs.2024.11.032. Epub 2024 Dec 24.

DOI:10.1016/j.xphs.2024.11.032
PMID:39725225
Abstract

With the increasing development of oral peptide dosage forms, a comprehensive understanding of factors affecting peptide drug stability in the solid-state is critical. This study used human insulin, as a model peptide, to examine the individual and interactive effects of temperature and humidity on its solid-state stability. Insulin was stored at temperature (25 °C, 40 °C, and 6 °C) and humidity (1 %, 33 % and 75 %) over 6 months. Primary degradation pathways were deamidation and covalent aggregation. Degradation product formation rates were determined empirically and modelled using the humidity-corrected Arrhenius equation. Temperature had a major impact on deamidation and covalent aggregation rates, with the reaction rates increasing with temperature. The effect of humidity was temperature dependent. Moisture induced degradation was minimal at 25 °C and 40 °C, but an important factor at 60 °C. Dynamic vapour sorption analysed determined a clear differences in insulin moisture sorption characteristics at 60 °C relative to 25 °C and 40 °C. The findings suggest that the effect of moisture on insulin deamidation and covalent aggregation rates was not a function of water content but the nature of the insulin moisture interaction.

摘要

随着口服肽剂型的不断发展,全面了解影响肽药物固态稳定性的因素至关重要。本研究以人胰岛素作为模型肽,考察温度和湿度对其固态稳定性的单独及交互作用。胰岛素在温度(25℃、40℃和60℃)和湿度(1%、33%和75%)条件下储存6个月。主要降解途径为脱酰胺作用和共价聚集。通过实验测定降解产物形成速率,并使用湿度校正的阿累尼乌斯方程进行建模。温度对脱酰胺作用和共价聚集速率有重大影响,反应速率随温度升高而增加。湿度的影响取决于温度。在25℃和40℃时,水分诱导的降解最小,但在60℃时是一个重要因素。动态蒸汽吸附分析确定,相对于25℃和40℃,胰岛素在60℃时的水分吸附特性存在明显差异。研究结果表明,水分对胰岛素脱酰胺作用和共价聚集速率的影响不是含水量的函数,而是胰岛素与水分相互作用的性质。

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Kinetics of human insulin degradation in the solid-state: An investigation of the effects of temperature and humidity.人胰岛素在固态下的降解动力学:温度和湿度影响的研究
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