首页> 外文期刊>Biomaterials >Branched polyesters based on poly(vinyl-3-(dialkylamino)alkylcarbamate-co-vinyl acetate-co-vinyl alcohol)-graft-poly(D,L-lactide-co-glycolide): effects of polymer structure on in vitro degradation behaviour.
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Branched polyesters based on poly(vinyl-3-(dialkylamino)alkylcarbamate-co-vinyl acetate-co-vinyl alcohol)-graft-poly(D,L-lactide-co-glycolide): effects of polymer structure on in vitro degradation behaviour.

机译:基于聚(乙烯基-3-(二烷基氨基)烷基氨基甲酸酯-乙酸乙烯酯-乙烯醇)-接枝聚(D,L-丙交酯-乙交酯)的支化聚酯:聚合物结构对体外降解行为的影响。

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Branched polyesters of the general structure poly[vinyl-3-(dialkylamino)alkylcarbamate-co-vinyl acetate-co-vinyl alcohol]-graft-poly(D,L-lactide-co-glycolide) have shown potential for nano- and micro-scale drug delivery systems. Here the in vitro degradation behaviour with a special emphasis on elucidating structure-property relationships is reported. Effects of type and degree of amine substitution as well as PLGA side chain length were considered. In a first set of experiment, the weight loss of solvent cast films of defined size from 19 polymers was measured as a function of incubation in phosphate buffer (pH 7.4) at 37 degrees C over a time of 21 days. A second study was initiated focusing on three selected polymers in a similar set up, but with additional observation of pH influences (pH 2 and pH 9) and determination of water uptake (swelling) and molecular weights during degradation. Scanning electron micrographs have been recorded at selected time points to characterize film specimens morphologically after degradation. Our investigations revealed the potential to influence the degradation of this polymer class by the degree of amine substitution, higher degrees leading to faster erosion. The erosion rate could further be influenced by the type of amine functionality, DEAPA-modified polyesters degrading as fast as or slightly faster than DMAPA-modified polyesters and these degrading faster than DEAEA-PVA-g-PLGA. As a third option the degradation rate could be modified by the PLGA side chain length, shorter side chains leading to faster erosion. As compared to linear PLGA, remarkably shorter degradation times could be achieved by grafting short PLGA side chains onto amine-modified PVA backbones. Erosion times from less than 5 days to more than 4 weeks could be realized by selecting the type of amine functionality, the degree of amine substitution and the PLGA side chain length at the time of synthesis. In addition, the pathway of hydrolytic degradation can be tuned to be either mainly bulk or surface erosion.
机译:通用结构的聚[乙烯基-3-(二烷基氨基)烷基氨基甲酸酯-乙酸乙烯酯-乙酸乙烯醇]-接枝-聚(D,L-丙交酯-乙交酯)的支链聚酯显示出纳米和微米的潜力规模的药物输送系统。在此报道了体外降解行为,其中特别强调阐明结构-性质关系。考虑了胺取代的类型和程度以及PLGA侧链长度的影响。在第一组实验中,测量了由19种聚合物制成的尺寸确定的溶剂流延膜的重量损失,该重量损失是在磷酸盐缓冲液(pH 7.4)中于37摄氏度下温育21天的函数。开始了第二项研究,着眼于在类似设置中选择的三种聚合物,但另外观察了pH的影响(pH 2和pH 9)以及降解过程中吸水率(溶胀)和分子量的确定。已经在选定的时间点记录了扫描电子显微照片,以表征降解后的薄膜样品形态。我们的研究表明,通过胺取代的程度可能会影响这种聚合物的降解,更高的程度会导致更快的腐蚀。腐蚀速率可能进一步受到胺官能团类型的影响,DEAPA改性的聚酯的降解速度与DMAPA改性的聚酯一样快或稍快,而其降解速度比DEAEA-PVA-g-PLGA快。作为第三种选择,可以通过PLGA侧链的长度来改变降解速率,较短的侧链会导致更快的腐蚀。与线性PLGA相比,通过将短PLGA侧链接枝到胺改性的PVA主链上,可以显着缩短降解时间。通过选择胺官能度的类型,胺取代程度和合成时的PLGA侧链长度,可以实现从不到5天到超过4周的侵蚀时间。另外,可以将水解降解的途径调整为主要是本体腐蚀或表面腐蚀。

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