Synthesis and Characterization of Polycaprolactone-Based Polyurethanes for the Fabrication of Elastic Guided Bone Regeneration Membrane

聚己内酯 极限抗拉强度 材料科学 静电纺丝 聚乙二醇 拉伸试验 化学工程 纳米纤维 聚合物 PEG比率 高分子化学 复合材料 化学 生物化学 工程类 经济 财务
作者
Shyh‐Yuan Lee,Sheng-Chien Wu,Hsuan Chen,Lo-Lin Tsai,Jy-Jiunn Tzeng,Chih‐Hsin Lin,Yuan‐Min Lin
出处
期刊:BioMed Research International [Hindawi Publishing Corporation]
卷期号:2018: 1-13 被引量:43
标识
DOI:10.1155/2018/3240571
摘要

The aim of this research is to synthesize polycaprolactone-based polyurethanes (PCL-based PUs) that can be further used for the fabrication of guided bone regeneration (GBR) membranes with higher tensile strength and elongation at break than collagen and PTFE membranes. The PCL-based PUs were prepared by the polymerization of polycaprolactone (PCL) diol with 1,6-hexamethylene diisocyanate (HDI) at different ratios using either polyethylene glycol (PEG) or ethylenediamine (EDA) as chain extenders. The chemical, mechanical, and thermal properties of the synthesized polymers were determined using NMR, FTIR, GPC, DSC, and tensile tester. The PCL and polyurethanes were fabricated as nanofiber membranes by electrospinning, and their mechanical properties and SEM morphology were also investigated. In vitro tests, including WST-1 assay, SEM of cells, and phalloidin cytoskeleton staining, were also performed. It was shown that electrospun membranes made of PCL and PCL-HDI-PEG (2 : 3 : 1) possessed tensile strength of 19.84 MPa and 11.72 MPa and elongation at break of 627% and 362%, respectively. These numbers are equivalent or higher than most of the commercially available collagen and PTFE membrane. As a result, these membranes may have potential for future GBR applications.
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