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用于移植损伤脊髓的聚氨酯/聚乳酸-乙醇酸共聚物海绵的微观结构与力学性能

Microstructure and Mechanical Properties of PU/PLDL Sponges Intended for Grafting Injured Spinal Cord.

作者信息

Lis-Bartos Anna, Szarek Dariusz, Krok-Borkowicz Małgorzata, Marycz Krzysztof, Jarmundowicz Włodzimierz, Laska Jadwiga

机构信息

Department of Biomaterials and Composites, Faculty of Material Science and Ceramics, AGH University of Science and Technology, 30-962 Kraków, Poland.

Emergency Medicine Centre, Department of Neurosurgery, Lower Silesia Specialist Hospital of T. Marciniak, 50-367 Wrocław, Poland.

出版信息

Polymers (Basel). 2020 Nov 16;12(11):2693. doi: 10.3390/polym12112693.

Abstract

Highly porous, elastic, and degradable polyurethane and polyurethane/polylactide (PU/PLDL) sponges, in various shapes and sizes, with open interconnected pores, and porosity up to 90% have been manufactured. They have been intended for gap filling in the injured spinal cord. The porosity of the sponges depended on the content of polylactide, i.e., it decreased with the increase of polylactide content. The rise of polylactide content caused an increase of Young modulus and rigidity as well as a more complex morphology of the polyurethane/polylactide blends. The mechanical properties, in vitro toxicity, and degradation in artificial cerebrospinal fluid were tested. Sponges underwent continuous degradation with varying degradation rates depending on the polymer composition. In vitro cell studies with fibroblast cultures proved the biocompatibility of the polymers. Based on the obtained results, the designed PU/PLDL sponges appeared to be promising candidates for bridging gaps within injured spinal cord in further in vitro and in vivo studies.

摘要

已经制造出了具有高度多孔性、弹性且可降解的聚氨酯以及聚氨酯/聚丙交酯(PU/PLDL)海绵,它们有各种形状和尺寸,具有开放的相互连通的孔隙,孔隙率高达90%。这些海绵旨在用于填充脊髓损伤部位的间隙。海绵的孔隙率取决于聚丙交酯的含量,即随着聚丙交酯含量的增加而降低。聚丙交酯含量的增加导致杨氏模量和刚度增加,以及聚氨酯/聚丙交酯共混物的形态更加复杂。测试了其力学性能、体外毒性以及在人工脑脊液中的降解情况。海绵会持续降解,降解速率因聚合物组成而异。对成纤维细胞培养物进行的体外细胞研究证明了这些聚合物的生物相容性。基于所获得的结果,所设计的PU/PLDL海绵在进一步的体外和体内研究中似乎有望成为桥接脊髓损伤间隙的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b6d/7697813/b8b3edaf537d/polymers-12-02693-g001.jpg

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