首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Degradation and protein release properties of microspheres prepared from biodegradable poly(lactide-co-glycolide) and ABA triblock copolymers: influence of buffer media on polymer erosion and bovine serum albumin release.
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Degradation and protein release properties of microspheres prepared from biodegradable poly(lactide-co-glycolide) and ABA triblock copolymers: influence of buffer media on polymer erosion and bovine serum albumin release.

机译:由可生物降解的聚(丙交酯-共-乙交酯)和ABA三嵌段共聚物制备的微球的降解和蛋白质释放特性:缓冲介质对聚合物侵蚀和牛血清白蛋白释放的影响。

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The aim of the present study was to investigate the influence of the chemical insertion of poly(ethylene oxide), PEO, into a poly(lactide-co-glycolide), PLG, backbone on the mechanisms of in vitro degradation and erosion of the polymer. For this purpose microspheres prepared by a modified W/O/W double emulsion technique using ABA triblock copolymers, consisting of PLG A-blocks attached to central PEO B-blocks were compared with microspheres prepared from PLG. Due to their molecular architecture the ABA triblock copolymers differed in their erosion and degradation behavior from PLG. Degradation occurred faster in the ABA polymers by cleavage of ester bonds inside the polymer backbone. Even erosion was shown to start immediately after incubation in different buffer media. By varying pH and ionic strength of the buffer it was found that both mass loss and molecular weight decay were accelerated in alkaline and acidic pH in the case of the ABA triblock copolymers. Although the pH of the medium had a moderate influence on the degradation of PLG, the molecular weight decay was not accompanied by a mass loss during the observation time. In a second set of experiments we prepared bovine serum albumin, BSA, loaded microspheres from both polymers. The release of BSA from ABA microspheres under in vitro conditions parallels the faster swelling and erosion rates. This could be confirmed by electron paramagnetic resonance, EPR, measurements with spin labeled albumin where an influx of buffer medium into the ABA microspheres was already observed within a few minutes. In contrast, PLG microspheres revealed a burst release without any erosion. The current study shows that the environmental conditions affected the degradation and erosion of the pure polymer microspheres in the same way as the release of the model protein. This leads to the conclusion that the more favorable degradation profile of the ABA triblock copolymers was responsible for the improvement of the release profile.
机译:本研究的目的是研究将聚环氧乙烷PEO化学插入到聚丙交酯-乙交酯共聚物PLG主链中对聚合物体外降解和腐蚀机理的影响。 。为此目的,将通过改进的W / O / W双乳液技术使用ABA三嵌段共聚物(由连接至中心PEO B嵌段的PLG A嵌段组成)组成的微球与由PLG制备的微球进行比较。由于其分子结构,ABA三嵌段共聚物的腐蚀和降解行为与PLG不同。通过裂解聚合物主链内的酯键,降解速度更快地发生在ABA聚合物中。在不同的缓冲液中孵育后,腐蚀立即开始。通过改变缓冲剂的pH和离子强度,发现在ABA​​三嵌段共聚物的情况下,在碱性和酸性pH中,质量损失和分子量衰减都被加速。尽管培养基的pH对PLG的降解有中等程度的影响,但分子量的降低并没有伴随观察时间的质量损失。在第二组实验中,我们从两种聚合物中制备了牛血清白蛋白,负载BSA的微球。在体外条件下,ABA微球中BSA的释放与更快的溶胀和侵蚀速率平行。这可以通过电子顺磁共振,EPR,用自旋标记的白蛋白进行测量来证实,其中在几分钟之内就已经观察到缓冲液流入ABA微球。相反,PLG微球显示出爆发释放而没有任何侵蚀。当前的研究表明,环境条件以与释放模型蛋白质相同的方式影响纯聚合物微球的降解和侵蚀。这得出的结论是,ABA三嵌段共聚物的更有利的降解特性导致了释放特性的改善。

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