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辅料相互作用对固体制剂稳定性的影响。

Impact of excipient interactions on solid dosage form stability.

机构信息

Drug Product Science and Technology, Bristol-Myers Squibb, Co., One Squibb Dr., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA.

出版信息

Pharm Res. 2012 Oct;29(10):2660-83. doi: 10.1007/s11095-012-0782-9. Epub 2012 Jun 16.

Abstract

Drug-excipient interactions in solid dosage forms can affect drug product stability in physical aspects such as organoleptic changes and dissolution slowdown, or chemically by causing drug degradation. Recent research has allowed the distinction in chemical instability resulting from direct drug-excipient interactions and from drug interactions with excipient impurities. A review of chemical instability in solid dosage forms highlights common mechanistic themes applicable to multiple degradation pathways. These common themes include the role of water and microenvironmental pH. In addition, special aspects of solid-state reactions with excipients and/or excipient impurities add to the complexity in understanding and modeling reaction pathways. This paper discusses mechanistic basis of known drug-excipient interactions with case studies and provides an overview of common underlying themes. Recent developments in the understanding of degradation pathways further impact methodologies used in the pharmaceutical industry for prospective stability assessment. This paper discusses these emerging aspects in terms of limitations of drug-excipient compatibility studies, emerging paradigms in accelerated stability testing, and application of mathematical modeling for prediction of drug product stability.

摘要

固体制剂中的药物-赋形剂相互作用会影响药物产品的物理稳定性,例如感官变化和溶解减缓,或者通过引起药物降解而产生化学不稳定性。最近的研究允许区分由于直接药物-赋形剂相互作用和药物与赋形剂杂质相互作用而导致的化学不稳定性。对固体制剂中化学不稳定性的综述突出了适用于多种降解途径的常见机制主题。这些共同主题包括水和微环境 pH 值的作用。此外,与赋形剂和/或赋形剂杂质的固态反应的特殊方面增加了理解和模拟反应途径的复杂性。本文通过案例研究讨论了已知的药物-赋形剂相互作用的机制基础,并提供了常见潜在主题的概述。对降解途径的理解的最新进展进一步影响了制药行业用于前瞻性稳定性评估的方法。本文从药物-赋形剂相容性研究的局限性、加速稳定性测试中的新兴范例以及数学建模在预测药物产品稳定性方面的应用等方面讨论了这些新出现的方面。

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