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聚乳酸聚合物的选择用于开发可注射普鲁卡因控释微球:热分析的有用性。

Selection of PLA polymers for the development of injectable prilocaine controlled release microparticles: usefulness of thermal analysis.

机构信息

Department of Pharmaceutical Sciences, Faculty of Pharmacy, University of Florence, Via U. Schiff 6, 50019 Sesto Fiorentino, Florence, Italy.

出版信息

Int J Pharm. 2013 Jan 30;441(1-2):468-75. doi: 10.1016/j.ijpharm.2012.11.007. Epub 2012 Nov 16.

Abstract

The use of injectable local anaesthetics for the treatment of severe postoperative pain is limited by the short duration of the painkilling effect. Pre-formulation studies were carried out for the development of an injectable microparticle formulation for controlled release of prilocaine, an amino-amide type local anaesthetic suitable for intravenous, subcutaneous and intramuscular administration. To the best of our knowledge, the encapsulation of prilocaine into microparticles has not been investigated yet. Three different poly-lactic-acid (PLA) polymers were separately employed for the preparation of the microparticles. Thermal analyses by differential scanning calorimetry (DSC) were carried out for the characterization of the raw materials, to assess the drug-polymer compatibility and miscibility, to investigate the effects of the production process on the components. Empty and prilocaine loaded microparticles were prepared by double emulsion method. All formulations were fully characterized in terms of drug content, morphology, size and in vitro drug release. The preliminary value of PRL solubility in the polymer material determined by DSC was evaluated and discussed as a predictive value for encapsulation efficiency and controlled release. DSC analysis turned out to be a usefulness tool for a fast polymer selection. Microparticles prepared with PLA R202 and R203S showed desirable characteristics for subcutaneous administration and could represent two promising formulations for the development of innovative pharmacological tools in the treatment of postoperative pain.

摘要

局部麻醉药的注射应用于治疗严重的术后疼痛,其止痛效果持续时间有限。为开发一种用于普鲁卡因(一种适用于静脉、皮下和肌肉内给药的酰胺型局部麻醉剂)控释的可注射微球制剂,进行了预配方研究。据我们所知,普鲁卡因微球的包封尚未被研究过。分别使用三种不同的聚乳酸(PLA)聚合物来制备微球。采用差示扫描量热法(DSC)进行热分析,以对原材料进行表征,评估药物-聚合物的相容性和混溶性,研究生产工艺对各成分的影响。采用复乳法制备空白和载普鲁卡因的微球。对所有制剂进行了药物含量、形态、粒径和体外药物释放的全面表征。通过 DSC 初步评估和讨论了 PRL 在聚合物材料中的溶解度值,作为包封效率和控制释放的预测值。DSC 分析是一种快速选择聚合物的有用工具。用 PLA R202 和 R203S 制备的微球具有适合皮下给药的理想特性,可能是开发治疗术后疼痛的新型药物工具的两种有前途的制剂。

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