von Burkersroda F, Gref R, Göpferich A
Department of Pharmaceutical Technology, University of Regensburg, Germany.
Biomaterials. 1997 Dec;18(24):1599-607. doi: 10.1016/s0142-9612(97)00098-7.
Biodegradable block copolymers made of poly(ethylene glycol) monomethylether (Me.PEG) and poly(D,L-lactic acid) (PLA) were investigated for their erosion properties. Wide angle X-ray diffraction (WAXD) and differential scanning calorimetry (DSC) investigations prior to erosion revealed that despite the low content of crystallizable Me.PEG of 10%, Me.PEG5-PLA45 is a partially crystalline polymer. The erosion of the polymer was investigated using cylindrical polymer matrix discs with a diameter of 8 mm and a height of 1.5 mm. WAXD and DSC spectra obtained from eroded polymer matrix discs suggest that both polymer blocks separate completely during erosion. The crystallinity of Me.PEG5-PLA45 was found to increase during erosion, which is probably due to the improved mobility of Me.PEG inside the polymer with a progressive degree of degradation. The erosion kinetics were found to be similar to that of PLA or poly(lactic-co-glycolic acid). During erosion the polymer matrix weight of dried samples remains constant for 11 weeks after which erosion sets in rapidly. From this observation one can conclude that the impact of the relatively small Me.PEG chains on Me.PEG5-PLA45 erosion is not pronounced. This is beneficial for all those applications that require the stability of the polymer matrix and in which the Me.PEG chain is intended to bring about other effects such as the modification of the surface properties of PLA polymers.
对由聚乙二醇单甲醚(Me.PEG)和聚(D,L-乳酸)(PLA)制成的可生物降解嵌段共聚物的侵蚀特性进行了研究。侵蚀前的广角X射线衍射(WAXD)和差示扫描量热法(DSC)研究表明,尽管可结晶的Me.PEG含量低至10%,但Me.PEG5-PLA45仍是一种部分结晶聚合物。使用直径为8毫米、高度为1.5毫米的圆柱形聚合物基质圆盘对聚合物的侵蚀进行了研究。从侵蚀后的聚合物基质圆盘中获得的WAXD和DSC光谱表明,在侵蚀过程中两个聚合物嵌段完全分离。发现Me.PEG5-PLA45的结晶度在侵蚀过程中增加,这可能是由于随着降解程度的逐渐增加,Me.PEG在聚合物内部的流动性得到改善。发现侵蚀动力学与PLA或聚(乳酸-共-乙醇酸)相似。在侵蚀过程中,干燥样品的聚合物基质重量在11周内保持恒定,之后侵蚀迅速开始。从这一观察结果可以得出结论,相对较小的Me.PEG链对Me.PEG5-PLA45侵蚀的影响并不明显。这对于所有需要聚合物基质稳定性且Me.PEG链旨在带来其他效果(如修饰PLA聚合物的表面性质)的应用来说是有益的。