首页> 外文期刊>Drug delivery and translational research >Classification of the crystallization tendency of active pharmaceutical ingredients (APIs) and nutraceuticals based on their nucleation and crystal growth behaviour in solution state
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Classification of the crystallization tendency of active pharmaceutical ingredients (APIs) and nutraceuticals based on their nucleation and crystal growth behaviour in solution state

机译:基于溶液状态下的成核和晶体生长行为的活性药物成分(API)和营养素的结晶趋势分类

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摘要

Supersaturated drug delivery systems are commonly used to address the problems of poor aqueous solubility posed by most of the active pharmaceutical ingredients (APIs). However, the supersaturated systems are highly unstable due to their high free energy levels and demonstrate a tendency to precipitate. Understanding the crystallization tendency based on the mechanisms of crystallization, that is nucleation and crystal growth, is imperative to design formulation strategies and select appropriate precipitation inhibitors. This study aims to provide a classification system, based on both the nucleation and crystal growth tendency in the solution state of 60 APIs and nutraceuticals (in absence of polymer) from their desupersaturation profiles monitored by UV-Visible spectroscopy. The APIs and nutraceuticals are divided into four classes based on their induction time (t(ind)) and crystal growth rate as fast nucleators-fast crystal growth (class I), fast nucleators-slow crystal growth (class II), slow nucleators-fast crystal growth (class III) and slow nucleators-slow crystal growth (class IV). Most of the molecules fall in the class I and class IV. An easy-to-use protocol for nucleation and crystal growth studies has been optimized. This protocol will find application to assess the crystallization tendency of the molecules in the preliminary screening stages, enabling appropriate formulation strategies to inhibit crystallization.
机译:通常用于解决大部分活性药物成分(API)占差的水溶性差的问题的超饱和药物递送系统。然而,由于其高的自由能级并且证明沉淀倾向,因此过饱和系统非常不稳定。了解基于结晶机制的结晶趋势,即成核和晶体生长,对设计配方策略是必要的,并选择合适的沉淀抑制剂。该研究旨在提供分类系统,基于溶解的60 API和营养素(不存在聚合物)的核心和晶体生长趋势,从通过UV可见光光谱监测的其去蔗饱和曲线中的溶液状态(不存在聚合物)。 API和Nutraceuticals根据它们的诱导时间(T(IND))和晶体生长速率作为快速核核晶体生长(I类),快速成核酸慢晶体生长(II类),慢核 - 快速晶体生长(III类)和慢核剂 - 慢晶体生长(IV级)。大多数分子属于I类和第四级。已经优化了一种易于使用的成核和晶体生长研究的方案。该方案将发现应用以评估初步筛选阶段中分子的结晶趋势,从而能够抑制结晶的合适的配方策略。

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