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首页> 外文期刊>International Journal of Pharmaceutics >Role of drug substance material properties in the processibility and performance of a wet granulated product.
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Role of drug substance material properties in the processibility and performance of a wet granulated product.

机译:原料物质特性在湿法制粒产品的可加工性和性能中的作用。

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摘要

The purpose of this study was to establish a relationship between the material properties of an active pharmaceutical ingredient (API) and its behavior during high-shear wet granulation. Using several actives and excipients as material probes, the influence of aqueous solubility, wettability, water holding capacity, mean and width of the particle size distribution, and surface area was examined. The effect of these variables on the processibility and performance of the granulations was evaluated by monitoring such responses as granule growth, compactability and flow changes upon wet granulation. The prominent findings from this study include: (a) controlled growth is highest in readily wettable APIs with low surface area, (b) uncontrolled growth is high in APIs of high solubility and low water holding capacity, (c) polydisperse granulations are produced from APIs of high contact angle and surface area, (d) improvement in compactability is high in APIs with large surface area and broader size distributions and (e) flow enhancement as a result of wet granulation is highest in APIs of large size distributions. These results are physically interpreted in this manuscript based on the prevailing wet granulation theories. Findings from this study are useful in mapping a new material to predict its performance in a high-shear wet granulation process.
机译:这项研究的目的是建立活性药物成分(API)的材料特性与其在高剪切湿法制粒过程中的行为之间的关系。使用几种活性物质和赋形剂作为材料探针,研究了水溶性,润湿性,持水量,粒径分布的平均值和宽度以及表面积的影响。通过监测诸如湿法制粒时的颗粒生长,可压实性和流量变化等响应,评估了这些变量对颗粒的可加工性和性能的影响。这项研究的主要发现包括:(a)具有低表面积的易湿性API的受控生长最高,(b)具有高溶解度和低持水量的API中非受控的生长较高,(c)由具有高接触角和表面积的API,(d)具有较大表面积和较宽粒度分布的API的可压缩性提高很高,并且(e)由于湿法制粒而产生的流动增强在具有大粒度分布的API中最高。这些结果是根据现行的湿法制粒理论从物理上解释的。这项研究的发现有助于绘制新材料,以预测其在高剪切湿法制粒过程中的性能。

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