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一种简便且经济高效的方法,用于制备具有有序脂肪族硬段的可生物降解聚(酯-聚氨酯),有望作为长期植入物用于医学应用。

A Facile and Cost-Effective Method to Prepare Biodegradable Poly(ester urethane)s with Ordered Aliphatic Hard-Segments for Promising Medical Application as Long-Term Implants.

作者信息

Bi Jingjing, Liu Yifan, Liu Jiaxu

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan 250014, China.

出版信息

Polymers (Basel). 2022 Apr 20;14(9):1674. doi: 10.3390/polym14091674.

Abstract

The article below describes a simple methodology to prepare cost-effective biodegradable poly(ester urethane)s (PEUs) with ordered hard segments (OHS) for medical application as long-term implants. A low-cost diurethane diol (1,4-butanediol-hexanediisocyanate-1,4-butanediol, BHB) was first designed and synthesized. Consequently, the BHB was employed as a chain extender to react with NCO-terminated poly(-caprolactone) to obtain PEUs. The molecular structural formats for BHB and PEUs were defined through NMR, FT-IR, and MS together with GPC, while the influence of OHS content on physical/chemical features for casted PEU films was investigated. The introduction of OHS could contribute to forming denser hydrogen-bonds, and consequently produce a compact network structure, resulting in great tensile capacity, low water absorption, and slow hydrolytic degradation rate by PEU films. PEU-2.0 films, which possessed the highest OHS content within PEUs, exhibited 40.6 MPa tensile strength together with 477% elongation at break, 4.3 wt % equilibrium water absorption and only 29.5% weight loss post-12 months' degradation. In addition, cytotoxicity analysis of film extracts indicated that the cell viability of all PEUs containing OHS exceeded 75%, indicating good cytocompatibility. Due to outstanding tensile features, high biostability, nontoxic and absorbable degradation products and acceptable cytocompatibility, the cost-effective materials exhibited promising applications in the field of long-term implants.

摘要

下面这篇文章描述了一种简单的方法,用于制备具有有序硬段(OHS)的具有成本效益的可生物降解聚(酯-聚氨酯)(PEU),用于作为长期植入物的医学应用。首先设计并合成了一种低成本的二异氰酸酯二醇(1,4-丁二醇-己二异氰酸酯-1,4-丁二醇,BHB)。随后,将BHB用作扩链剂与NCO封端的聚(ε-己内酯)反应以获得PEU。通过核磁共振(NMR)、傅里叶变换红外光谱(FT-IR)、质谱(MS)以及凝胶渗透色谱(GPC)确定了BHB和PEU的分子结构形式,同时研究了OHS含量对浇铸PEU薄膜物理/化学特性的影响。OHS的引入有助于形成更致密的氢键,从而产生紧密的网络结构,使PEU薄膜具有高拉伸能力、低吸水性和缓慢的水解降解速率。PEU-2.0薄膜在PEU中具有最高的OHS含量,其拉伸强度为40.6MPa,断裂伸长率为477%,平衡吸水率为4.3wt%,降解12个月后重量损失仅为29.5%。此外,薄膜提取物的细胞毒性分析表明,所有含OHS的PEU的细胞活力均超过75%,表明具有良好的细胞相容性。由于具有出色的拉伸特性、高生物稳定性、无毒且可吸收的降解产物以及可接受的细胞相容性,这些具有成本效益的材料在长期植入物领域展现出了广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94e7/9100535/f1de3e3f4b38/polymers-14-01674-g001.jpg

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