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聚合物-药物相容性:抗癌药物玫瑰树碱递送系统开发指南

Polymer-drug compatibility: a guide to the development of delivery systems for the anticancer agent, ellipticine.

作者信息

Liu Jubo, Xiao Yuehua, Allen Christine

机构信息

Department of Pharmaceutical Sciences, University of Toronto, 19 Russell St, Rom 315G, Toronto, Ontario M5S 2S2 Canada.

出版信息

J Pharm Sci. 2004 Jan;93(1):132-43. doi: 10.1002/jps.10533.

Abstract

To establish a method for predicting polymer-drug compatibility as a means to guide formulation development, we carried out physicochemical analyses of polymer-drug pairs and compared the difference in total and partial solubility parameters of polymer and drug. For these studies, we employed a range of biodegradable polymers and the anticancer agent Ellipticine as the model drug. The partial and total solubility parameters for the polymer and drug were calculated using the group contribution method. Drug-polymer pairs with different enthalpy of mixing values were analyzed by physicochemical techniques including X-ray diffraction and Fourier transform infrared. Polymers identified to be compatible [i.e., polycaprolactone (PCL) and poly-beta-benzyl-L-aspartate (PBLA)] and incompatible [i.e., poly (d,l-lactide (PLA)], by the above mentioned methods, were used to formulate Ellipticine. Specifically, Ellipticine was loaded into PBLA, PCL, and PLA films using a solvent casting method to produce a local drug formulation; while, polyethylene oxide (PEO)-b-polycaprolactone (PCL) and PEO-b-poly (d,l-lactide) (PLA) copolymer micelles were prepared by both dialysis and dry down methods resulting in a formulation for systemic administration. The drug release profiles for all formulations and the drug loading efficiency for the micelle formulations were also measured. In this way, we compared formulation characteristics with predictions from physicochemical analyses and comparison of total and partial solubility parameters. Overall, a good correlation was obtained between drug formulation characteristics and findings from our polymer-drug compatibility studies. Further optimization of the PEO-b-PCL micelle formulation for Ellipticine was also performed.

摘要

为建立一种预测聚合物 - 药物相容性的方法以指导制剂开发,我们对聚合物 - 药物对进行了物理化学分析,并比较了聚合物和药物的总溶解度参数及偏溶解度参数的差异。在这些研究中,我们使用了一系列可生物降解的聚合物,并以抗癌药物椭圆玫瑰树碱作为模型药物。聚合物和药物的偏溶解度参数及总溶解度参数采用基团贡献法计算。通过包括X射线衍射和傅里叶变换红外光谱等物理化学技术分析具有不同混合焓值的药物 - 聚合物对。通过上述方法确定为相容的聚合物[即聚己内酯(PCL)和聚β - 苄基 - L - 天冬氨酸(PBLA)]和不相容的聚合物[即聚(d,l - 丙交酯)(PLA)]用于制备椭圆玫瑰树碱制剂。具体而言,采用溶剂浇铸法将椭圆玫瑰树碱载入PBLA、PCL和PLA薄膜中以制备局部给药制剂;同时,通过透析法和冻干法制备聚环氧乙烷(PEO) - b - 聚己内酯(PCL)和PEO - b - 聚(d,l - 丙交酯)(PLA)共聚物胶束,得到用于全身给药的制剂。还测定了所有制剂的药物释放曲线以及胶束制剂的载药效率。通过这种方式,我们将制剂特性与物理化学分析以及总溶解度参数和偏溶解度参数比较的预测结果进行了比较。总体而言,药物制剂特性与我们的聚合物 - 药物相容性研究结果之间获得了良好的相关性。还对椭圆玫瑰树碱的PEO - b - PCL胶束制剂进行了进一步优化。

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