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Biodegradation of porous versus non-porous poly(L-lactic acid) films

机译:多孔与无孔聚乳酸薄膜的生物降解

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摘要

The influence of porosity on the degradation rate of poly(L-lactic acid) (PLLA) films was investigated in vitro and in vivo. Non-porous, porous and “combi” (porous with a non-porous layer) PLLA films were used. Changes in Mw, Mn, polydispersity (Mw/Mn) ratio, melting temperature (Tm), heat of fusion, tensile strength, E-modulus, mass and the remaining surface area of cross-sections of the PLLA films were measured. In general, during the degradation process, the porous film has the highest Mw, Mn, Mw/Mn ratio and Tm, while the non-porous film has the lowest. In contrast, the highest heat of fusion values were observed for the non-porous film, indicating the presence of relatively smaller molecules forming crystalline domains more easily. The tensile strength and E-modulus of the non-porous film decrease faster than those of the porous and the combi film. None of the three types of films showed massive mass loss in vitro nor a significant decrease in remaining polymer surface area in light microscopical sections in vitro and in vivo. Heavy surface erosion of the non-porous layer of the combi film was observed after 180 days, turning the combi film into a porous film. This is also indicated by the changes in tensile strength, Mw, Mw/Mn, Tm and heat of fusion as a function of time. It is concluded that non-porous PLLA degrades faster than porous PLLA. Thus, in our model, porosity is an important determinant of the degradation rate of PLLA films.
机译:在体外和体内研究了孔隙度对聚(L-乳酸)(PLLA)薄膜降解速率的影响。使用了无孔,多孔和“复合”(有无孔层的多孔)PLLA膜。测量了PLLA膜的Mw,Mn,多分散度(Mw / Mn)比,熔融温度(Tm),熔融热,拉伸强度,E模量,质量和剩余的横截面表面积的变化。通常,在降解过程中,多孔膜的Mw,Mn,Mw / Mn比和Tm最高,而无孔膜的最低。相反,对于无孔膜观察到最高的熔化热值,表明存在相对较小的分子更容易形成晶域。无孔膜的拉伸强度和E模量的下降速度要快于多孔膜和组合膜的拉伸强度和E模量。三种类型的薄膜均未显示出体外大量质量损失,也未显示出体外和体内光显微切片中的剩余聚合物表面积显着减少。在180天后,观察到组合膜的无孔层的严重表面腐蚀,使组合膜变成多孔膜。抗拉强度,Mw,Mw / Mn,Tm和熔化热随时间的变化也表明了这一点。结论是无孔PLLA的降解速度比多孔PLLA快。因此,在我们的模型中,孔隙率是决定PLLA膜降解速率的重要因素。

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