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γ射线辐照对聚(DL-丙交酯-共-乙交酯)微球的影响

Gamma irradiation effects on poly(DL-lactictide-co-glycolide) microspheres.

作者信息

Montanari L, Costantini M, Signoretti E C, Valvo L, Santucci M, Bartolomei M, Fattibene P, Onori S, Faucitano A, Conti B, Genta I

机构信息

Istituto di Chimica Farmaceutica, Università degli Studi di Milano, V. le Abruzzi 53, 20131 Milano, Italia.

出版信息

J Control Release. 1998 Dec 4;56(1-3):219-29. doi: 10.1016/s0168-3659(98)00082-0.

Abstract

Gamma radiation treatment plays an increasingly important role in the sterilization/sanitization of pharmaceutical products. However, irradiation may affect the stability of the product and thus its safety of use. We investigated the influence of ionizing radiation on modified release microparticulate drug delivery systems made of two types of polylactide-co-glycolide copolymers (PLG): RG 503 and RG 503H; these polymers have identical molecular weights but different chemical structures. The effect of gamma radiation on polymer stability of the raw polymers (P) and related microspheres (Ms) was evaluated. Samples were irradiated at different irradiation doses (5, 15 and 25 kGy) using 60Co as radiation source. The microspheres were prepared using the spray drying technique. Degradation of PLG and related microspheres was evaluated during six months in terms of average molecular weight (Mw) loss by gel permeation chromatography (GPC) and variation in glass transition temperature (Tg) using differential calorimetry (DSC). The presence of free radicals in the product was tested by electron paramagnetic resonance (EPR). Both P and Ms showed a trend in decreasing their Mw at time 0 as a function of irradiation dose. For RG503 the decay in Mw is always negligible for doses below 15 kGy while it is about 10% for 25 kGy. After 150 days Mw decay was 25% in the microspheres and 20% in the raw polymer. It was not possible to evaluate the radiation effect, at different storage times, for RG503H because this polymer resulted to be unstable even in the regular storage conditions without being irradiated. The concentration of radiation-induced free radicals was higher in RG 503H (both P and Ms) and they were more stable than the free radicals species observed in the case of polymer RG 503. Alterations and/or production of new radicals were observed on exposure of RG 503H microspheres to the light. Radiolytic degradation of RG 503 under vacuum is characterized by a prevalence of the chain scission events leading to a decrease of Mw. Some crosslinking can occur mainly in the post irradiation stage through the decay and coupling of the hydrogen abstraction radicals. A hydroperoxydative cycle, whose mechanism is suggested, is generated in the presence of oxygen.

摘要

γ辐射处理在药品的灭菌/消毒中发挥着越来越重要的作用。然而,辐照可能会影响产品的稳定性,进而影响其使用安全性。我们研究了电离辐射对由两种聚乳酸-共-乙醇酸共聚物(PLG)制成的缓释微粒药物递送系统的影响:RG 503和RG 503H;这些聚合物具有相同的分子量但化学结构不同。评估了γ辐射对原料聚合物(P)和相关微球(Ms)的聚合物稳定性的影响。使用60Co作为辐射源,以不同的辐照剂量(5、15和25 kGy)对样品进行辐照。采用喷雾干燥技术制备微球。通过凝胶渗透色谱法(GPC)测定平均分子量(Mw)损失,并使用差示量热法(DSC)测定玻璃化转变温度(Tg)的变化,在六个月内评估PLG和相关微球的降解情况。通过电子顺磁共振(EPR)测试产品中自由基的存在情况。在时间0时,P和Ms均呈现出Mw随辐照剂量降低的趋势。对于RG503,当剂量低于15 kGy时,Mw的衰减始终可以忽略不计,而对于25 kGy,Mw的衰减约为10%。150天后,微球中的Mw衰减为25%,原料聚合物中的Mw衰减为20%。对于RG503H,由于该聚合物即使在未辐照的常规储存条件下也不稳定,因此无法评估不同储存时间下的辐射效应。RG 503H(P和Ms)中辐射诱导自由基的浓度较高,并且它们比在聚合物RG 503中观察到的自由基物种更稳定。在RG 503H微球暴露于光的情况下,观察到了自由基的变化和/或新自由基产生。RG 503在真空下的辐射降解特征是链断裂事件占主导,导致Mw降低。一些交联主要发生在辐照后阶段,通过氢提取自由基的衰减和偶联。在有氧存在的情况下会产生一个氢过氧化物循环,其机制已被提出。

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