首页> 外文期刊>Journal of biomedical materials research, Part A >Controlled degradation of multilayered poly(lactide-co-glycolide) films using electron beam irradiation.
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Controlled degradation of multilayered poly(lactide-co-glycolide) films using electron beam irradiation.

机译:使用电子束辐照可控降解多层聚(丙交酯-共-乙交酯)薄膜。

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摘要

The ability to undergo predictable and controlled degradation allows biopolymers to release prescribed dosages of drugs locally over a sustained period. However, the bulk or homogeneous degradation of some of these polymers like poly(L-lactide) (PLLA) and poly(lactide-co-glycolide) (PLGA) work against a better controlled release of the drugs. Inducing the polymers to undergo surface erosion or layer-by-layer degradation could provide a better process of controlled drug release from the polymers. This study has demonstrated that surface erosion degradation of PLGA is possible with the use of a multilayer film system, with PPdlLGA [plasticized poly(D,L-lactide-co-glycolide) (PdlLGA)] as the surface layers and poly(L-lactide-co-glycolide) as the center layer. The use of the more hydrophilic PPdlLGA as the surface layer resulted in a faster degradation of the surface layers compared to the center layer, thus giving a surface erosion degradation effect. The rate of surface degradation could also be controlled with electron beam (e-beam) radiation, where e-beam irradiation was shown to alter the degradation time and onset of polymer mass loss. It was also shown that the more highly irradiated PPdlLGA surface layers had an earlier onset of mass loss, which resulted in a faster reduction in overall film thickness. The ability to control the rate of film thickness reduction with different radiation dose promises a better controlled release of drugs from this multilayer PLGA film system.
机译:经历可预测和受控降解的能力允许生物聚合物在持续时间内局部释放规定剂量的药物。但是,其中某些聚合物的大量或均质降解,如聚(L-丙交酯)(PLLA)和聚(丙交酯-共-乙交酯)(PLGA),不利于药物的更好控制释放。诱导聚合物经历表面侵蚀或逐层降解可以提供更好的控制药物从聚合物中释放的过程。这项研究表明,使用多层膜系统可以将PLGA的表面腐蚀降解,其中PPdlLGA [可塑聚(D,L-丙交酯-乙交酯)(PdlLGA)]作为表面层,而聚(L-丙交酯-乙交酯)作为中间层。与中心层相比,使用亲水性更强的PPdlLGA作为表面层导致表面层的降解更快,从而产生表面腐蚀的降解效果。表面降解的速率也可以通过电子束(电子束)辐射来控制,其中电子束辐射显示出可以改变降解时间和聚合物质量损失的开始。还显示出,辐照度更高的PPdlLGA表面层出现质量损失的开始较早,这导致整体膜厚度的减小更快。通过不同的辐射剂量来控制薄膜厚度减小的速度的能力有望更好地控制药物从该多层PLGA薄膜系统中的释放。

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