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Genuine antiplasticizing effect of water on a glass-former drug

机译:水对玻璃原药具有真正的抗塑作用

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摘要

Water is the most important plasticizer of biological and organic hydrophilic materials, which generally exhibit enhanced mechanical softness and molecular mobility upon hydration. The enhancement of the molecular dynamics upon mixing with water, which in glass-forming systems implies a lower glass transition temperature (T g), is considered a universal result of hydration. In fact, even in the cases where hydration or humidification of an organic glass-forming sample result in stiffer mechanical properties, the molecular mobility of the sample almost always increases with increasing water content, and its T g decreases correspondingly. Here, we present an experimental report of a genuine antiplasticizing effect of water on the molecular dynamics of a small-molecule glass former. In detail, we show that addition of water to prilocaine, an active pharmaceutical ingredient, has the same effect as that of an applied pressure, namely, a decrease in mobility and an increase of T g. We assign the antiplasticizing effect to the formation of prilocaine-H 2 O dimers or complexes with enhanced hydrogen bonding interactions.
机译:水是生物和有机亲水性材料最重要的增塑剂,通常在水化后表现出增强的机械柔软性和分子迁移性。与水混合时分子动力学的增强,这在玻璃形成系统中意味着较低的玻璃化转变温度(T g),被认为是水合的普遍结果。实际上,即使在有机玻璃形成样品的水合或加湿导致较硬的机械性能的情况下,样品的分子迁移率几乎总是随着水含量的增加而增加,并且其T g相应地降低。在这里,我们提出了水对小分子玻璃形成剂的分子动力学的真正抗塑化作用的实验报告。详细地,我们表明向丙胺卡因(一种活性药物成分)中加水与施加压力具有相同的效果,即运动性降低和T g升高。我们将抗增塑作用分配给丙胺卡因-H 2 O二聚体或具有增强的氢键相互作用的复合物。

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