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应用新型便携式近红外成像设备监测片剂的溶出过程。

Application of a newly developed portable NIR imaging device to monitor the dissolution process of tablets.

机构信息

School of Science and Technology, Kwansei Gakuin University, 2-1 Gakuen, Sanda, Hyogo, 669-1337, Japan.

出版信息

Anal Bioanal Chem. 2013 Nov;405(29):9401-9. doi: 10.1007/s00216-013-7355-6. Epub 2013 Oct 3.

Abstract

We have recently developed a novel portable NIR imaging device (D-NIRs), which has a high speed and high wavelength resolution. This NIR imaging approach has been developed by utilizing D-NIRs for studying the dissolution of a model tablet containing 20 % ascorbic acid (AsA) as an active pharmaceutical ingredient and 80 % hydroxypropyl methylcellulose, where the tablet is sealed by a special cell. Diffuse reflectance NIR spectra in the 1,000 to 1,600 nm region were measured during the dissolution of the tablet. A unique band at around 1,361 nm of AsA was identified by the second derivative spectra of tablet and used for AsA distribution NIR imaging. Two-dimensional change of AsA concentration of the tablet due to water penetration is clearly shown by using the band-based image at 1,361 nm in NIR spectra obtained with high speed. Moreover, it is significantly enhanced by using the intensity ratio of two bands at 1,361 and 1,354 nm corresponding to AsA and water absorption, respectively, showing the dissolution process. The imaging results suggest that the amount of AsA in the imaged area decreases with increasing water penetration. The proposed NIR imaging approach using the intensity of a specific band or the ratio of two bands combined with the developed portable NIR imaging instrument, is a potentially useful practical way to evaluate the tablet at every moment during dissolution and to monitor the concentration distribution of each drug component in the tablet.

摘要

我们最近开发了一种新型的便携式近红外成像设备(D-NIRs),它具有高速和高波长分辨率。这种近红外成像方法是利用 D-NIRs 开发的,用于研究含有 20%抗坏血酸(AsA)作为活性药物成分和 80%羟丙基甲基纤维素的模型片剂的溶解情况,其中片剂被特殊的细胞密封。在片剂溶解过程中测量了 1000 到 1600nm 区域的漫反射近红外光谱。通过片剂的二阶导数光谱,确定了 AsA 在约 1361nm 处的独特带,并用于 AsA 分布近红外成像。通过使用在高速获得的近红外光谱中基于带的 1361nm 处的图像,清楚地显示了由于水渗透导致的片剂中 AsA 浓度的二维变化。此外,通过使用分别对应于 AsA 和水吸收的两个带(1361nm 和 1354nm)的强度比,显著增强了该图像,显示了溶解过程。成像结果表明,随着水渗透的增加,成像区域内的 AsA 量减少。使用特定带的强度或两个带的强度比与开发的便携式近红外成像仪相结合的这种近红外成像方法,是一种在溶解过程中的每个时刻评估片剂并监测片剂中每个药物成分的浓度分布的潜在有用的实用方法。

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