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载有卡莫司汀的聚(D,L-丙交酯-共-乙交酯)微球的内部形态。对药物稳定性的影响。

Internal morphology of poly(D,L-lactide-co-glycolide) BCNU-loaded microspheres. Influence on drug stability.

作者信息

Painbeni T, Venier-Julienne M C, Benoit J P

机构信息

UPRES EA 2169, University of Angers, France.

出版信息

Eur J Pharm Biopharm. 1998 Jan;45(1):31-9. doi: 10.1016/S0939-6411(97)00120-3.

Abstract

The solvent extraction/evaporation process has been used to form poly(D,L-lactide-co-glycolide) (PLAGA) BCNU-loaded microspheres designed for use as intracranial controlled-release implants. Their actual payload could reach 25% with a 20-50 microns size distribution. Scanning electron microscopy showed that such carriers had a smooth surface and a spherical geometry. Differential scanning calorimetry analyses carried out on drug-loaded microspheres established that the PLAGA Tg was markedly shifted towards the low temperatures along with the disappearance of the BCNU melting endotherm. Annealing experiments performed at room temperature did not induce any change of the loaded microsphere DSC profiles. These features indicated that the BCNU acted as a plasticizer for the coating material and formed with it a solid solution. Similarly, stability of encapsulated BCNU was assessed in different conditions of storage. It appeared that drug degradation increased with temperature increase: 5.4, 8.8, 32.4 and 51.2% of decomposition after 3 month storage at -18, 4, room temperature (RT) and 37 degrees C respectively. Since the free drug was stable at 4 degrees C and experienced only 10.6% decomposition at RT during the same storage time, the state of solid solution involving the intimate mixing of the drug and the polyester in the matrix favors a progressive decomposition of BCNU. However, keeping the microspheres 6 months at -18 degrees C or 3 months at 4 degrees C prevents a loss of drug superior to 10%.

摘要

溶剂萃取/蒸发工艺已被用于制备负载卡莫司汀(BCNU)的聚(D,L-丙交酯-共-乙交酯)(PLAGA)微球,该微球设计用作颅内控释植入物。其实际载药量可达25%,粒径分布在20 - 50微米之间。扫描电子显微镜显示,此类载体表面光滑,呈球形。对载药微球进行的差示扫描量热分析表明,随着BCNU熔融吸热峰的消失,PLAGA的玻璃化转变温度(Tg)明显向低温偏移。在室温下进行的退火实验并未引起载药微球DSC曲线的任何变化。这些特征表明,BCNU作为包衣材料的增塑剂,并与之形成了固溶体。同样,在不同储存条件下评估了包封BCNU的稳定性。结果表明,药物降解随温度升高而增加:在-18℃、4℃、室温(RT)和37℃下储存3个月后,分解率分别为5.4%、8.8%、32.4%和51.2%。由于游离药物在4℃下稳定,在相同储存时间内室温下仅分解10.6%,因此药物与聚酯在基质中形成固溶体的状态有利于BCNU的逐步分解。然而,将微球在-?18℃下保存6个月或在4℃下保存3个月可防止药物损失超过10%。

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