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实验和热力学模型研究地西他滨抗癌药物在超临界二氧化碳中的溶解度。

Experimental and thermodynamic modeling decitabine anti cancer drug solubility in supercritical carbon dioxide.

机构信息

Institute of Research and Development, Duy Tan University, Da Nang, 550000, Viet Nam.

The Faculty of Pharmacy, Duy Tan University, Da Nang, 550000, Viet Nam.

出版信息

Sci Rep. 2021 Jan 13;11(1):1075. doi: 10.1038/s41598-020-80399-7.

Abstract

Design and development of efficient processes for continuous manufacturing of solid dosage oral formulations is of crucial importance for pharmaceutical industry in order to implement the Quality-by-Design paradigm. Supercritical solvent-based manufacturing can be utilized in pharmaceutical processing owing to its inherent operational advantages. However, in order to evaluate the possibility of supercritical processing for a particular medicine, solubility measurement needs to be carried out prior to process design. The current work reports a systematic solubility analysis on decitabine as an anti-cancer medicine. The solvent is supercritical carbon dioxide at different conditions (temperatures and pressures), while gravimetric technique is used to obtain the solubility data for decitabine. The results indicated that the solubility of decitabine varies between 2.84 × 10 and 1.07 × 10 mol fraction depending on the temperature and pressure. In the experiments, temperature and pressure varied between 308-338 K and 12-40 MPa, respectively. The solubility of decitabine was plotted against temperature and pressure, and it turned out that the solubility had direct relation with the pressure due to the effect of pressure on solvating power of solvent. The effect of temperature on solubility was shown to be dependent on the cross-over pressure. Below the cross-over pressure, there is a reverse relation between temperature and solubility, while a direct relation was observed above the cross-over pressure (16 MPa). Theoretical study was carried out to correlate the solubility data using several thermodynamic-based models. The fitting and model calibration indicated that the examined models were of linear nature and capable to predict the measured decitabine solubilities with the highest average absolute relative deviation percent (AARD %) of 8.9%.

摘要

设计和开发高效的连续制造固体制剂的工艺对于制药行业至关重要,以实现质量源于设计的理念。超临界溶剂基制造由于其固有的操作优势可用于药物加工。然而,为了评估超临界加工对于特定药物的可能性,在进行工艺设计之前需要进行溶解度测量。目前的工作对作为抗癌药物的地西他滨进行了系统的溶解度分析。溶剂为不同条件(温度和压力)下的超临界二氧化碳,而重量法用于获得地西他滨的溶解度数据。结果表明,地西他滨的溶解度在 2.84×10 和 1.07×10 之间摩尔分数取决于温度和压力。在实验中,温度和压力分别在 308-338 K 和 12-40 MPa 之间变化。地西他滨的溶解度与温度和压力作图,结果表明溶解度与压力直接相关,因为压力对溶剂溶解能力有影响。温度对溶解度的影响取决于交叉压力。在交叉压力以下,温度和溶解度之间存在反相关关系,而在交叉压力以上(16 MPa)则观察到直接关系。进行了理论研究,使用几种基于热力学的模型对溶解度数据进行关联。拟合和模型校准表明,所检查的模型具有线性性质,能够以 8.9%的平均绝对相对偏差(AARD%)预测测量的地西他滨溶解度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fe0/7807078/21c7fb6aa0a7/41598_2020_80399_Fig1_HTML.jpg

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