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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >An Effect of Cellulose Crystallinity on the Moisture Absorbability of a Pharmaceutical Tablet Studied by Near-Infrared Spectroscopy
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An Effect of Cellulose Crystallinity on the Moisture Absorbability of a Pharmaceutical Tablet Studied by Near-Infrared Spectroscopy

机译:纤维素结晶度对药物片剂吸湿性的影响近红外光谱研究

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摘要

In this study, we investigated molecular-level variation of tablets caused by grinding and its effect on their actual moisture absorbability. Model tablets contained acetaminophen as an active pharmaceutical ingredient and microcrystalline cellulose (MCC) as an excipient. Different levels of grinding were applied during the tablet formulation to intentionally cause the structural variation of the MCC. The moisture absorbability of tablets showed obvious variation depending on the grinding time, and the corresponding change in near-infrared spectra was readily captured. The detailed analysis of the variation of the band frequencies (i.e., wavenumber) revealed that the grinding process substantially disintegrates the crystalline and generates a glassy amorphous structure of MCC, which is a requirement to absorb water molecules. Consequently, it is very likely that the change of the moisture absorbability of the tablets is closely related to the development of the amorphous structure. These results indicate that the pharmaceutical product performances can be influenced by the physical properties of the excipient, which in turn can be controlled by the grinding process.
机译:在这项研究中,我们研究了研磨引起的片剂分子水平变化及其对实际吸湿性的影响。模型片剂包含对乙酰氨基酚作为活性药物成分和微晶纤维素(MCC)作为赋形剂。在片剂配制期间进行了不同程度的研磨,以有意引起MCC的结构变化。片剂的吸湿性表现出明显的变化,这取决于研磨时间,并且很容易捕获到相应的近红外光谱变化。对频带频率(即波数)变化的详细分析表明,研磨过程基本上使晶体崩解并产生MCC的玻璃态非晶态结构,这是吸收水分子的必要条件。因此,片剂的吸湿性的变化很可能与无定形结构的发展密切相关。这些结果表明,药物性能受赋形剂物理性能的影响,而赋形剂的物理性能又可以由研磨过程控制。

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