在无形固体分散的开发中利用基终结共聚合物 methoxy ((poly ((ethylene glycol)) -block-poly ((jasmine lactone):对功能化和非功能化聚合物进行比较研究
Rong Di1, Kuldeep K Bansal2, Jessica M Rosenholm2
1University of Copenhagen, Faculty of Health and Medical Sciences, Department of Pharmacy, Copenhagen, Denmark.
功能化聚合物通过改善分子相互作用来增强无形固体分散稳定性和药物负载. 然而,改善这些系统中的药物溶解性能需要进一步的研究和开发.
科学领域:
- 材料科学 材料科学 材料科学
- 制药科学 制药科学
- 聚合物化学 聚合物化学
背景情况:
- 无形固体分散 (ASDs) 需要强烈的药物-聚合物分子相互作用来稳定.
- 传统的聚合物往往表现出与药物分子的有限相互作用能力.
- 具有特定功能组的定制聚合物可以增强药物-聚合物相互作用.
研究的目的:
- 为了合成和功能化一种新型聚合物,甲基 (mPEG-b-PJL),用于增强药物聚合物相互作用.
- 为了研究功能化聚合物 (mPEG-b-PJL-COOH) 在无形固体分散 (ASD) 中的疗效,使用卡维迪洛 (CAR) 作为模型药物.
- 评估功能化对ASD混合性,药物负载,稳定性和溶解的影响.
主要方法:
- 合成和功能化mPEG-b-PJL与一个碳酸组 (mPEG-b-PJL-COOH).
- 使用卡维迪醇 (CAR) 和功能化和非功能化聚合物制备无形固体分散剂 (ASD).
- 通过混合性,药物负载,分子移动性 (稳定性) 和溶解测试来表征ASD.
主要成果:
- 功能化的mPEG-b-PJL-COOH与非功能化的mPEG-b-PJL相比,与卡维迪醇的分子相互作用更强.
- 与mPEG-b-PJL-COOH配制的ASDs表现出更好的可混合性,更高的药物负载能力和增强的物理稳定性 (减少分子流动性).
- 尽管通过小胞形成可能增强溶解度,但含有mPEG-b-PJL-COOH的ASD与单独的无形卡维迪醇相比,并没有显著改善卡维迪醇溶解.
结论:
- 功能化聚合物,如mPEG-b-PJL-COOH,显示出显著的希望,以提高无形固体分散的稳定性和药物负载.
- 该研究强调了特定功能组在调整聚合物特性以改善自闭症患者药物聚合物相互作用方面的重要性.
- 需要进一步开发,以克服改善功能化聚合物基ASD溶解率的挑战.
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