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Degradable Poly(ether-ester-urethane)s Based on Well-Defined Aliphatic Diurethane Diisocyanate with Excellent Shape Recovery Properties at Body Temperature for Biomedical Application

机译:基于定义明确的脂肪族二氨基甲酸酯二异氰酸酯的可降解聚(醚酯-氨基甲酸酯)在体温下具有优异的形状恢复性能可用于生物医学应用

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摘要

The aim of this study is to offer a new class of degradable shape-memory poly(ether-ester-urethane)s (SMPEEUs) based on poly(ether-ester) (PECL) and well-defined aliphatic diurethane diisocyanate (HBH) for further biomedical application. The prepolymers of PECLs were synthesized through bulk ring-opening polymerization using ε-caprolactone as the monomer and poly(ethylene glycol) as the initiator. By chain extension of PECL with HBH, SMPEEUs with varying PEG content were prepared. The chemical structures of the prepolymers and products were characterized by GPC, 1H NMR, and FT-IR, and the effect of PEG content on the physicochemical properties (especially the shape recovery properties) of SMPEEUs was studied. The microsphase-separated structures of the SMPEEUs were demonstrated by DSC and XRD. The SMPEEU films exhibited good tensile properties with the strain at a break of 483%–956% and an ultimate stress of 23.1–9.0 MPa. Hydrolytic degradation in vitro studies indicated that the time of the SMPEEU films becoming fragments was 4–12 weeks and the introduction of PEG facilitates the degradation rate of the films. The shape memory properties studies found that SMPEEU films with a PEG content of 23.4 wt % displayed excellent recovery properties with a recovery ratio of 99.8% and a recovery time of 3.9 s at body temperature. In addition, the relative growth rates of the SMPEEU films were greater than 75% after incubation for 72 h, indicating good cytocompatibility in vitro. The SMPEEUs, which possess not only satisfactory tensile properties, degradability, nontoxic degradation products, and cytocompatibility, but also excellent shape recovery properties at body temperature, promised to be an excellent candidate for medical device applications.
机译:这项研究的目的是提供一种基于聚醚酯(PECL)和定义明确的脂肪族二氨基甲酸酯二异氰酸酯(HBH)的新型可降解形状记忆聚醚醚酯氨基甲酸酯(SMPEEU)。进一步的生物医学应用。 PECLs的预聚物是使用ε-己内酯作为单体,聚乙二醇作为引发剂,通过本体开环聚合反应合成的。通过PECL与HBH的扩链,制备了具有不同PEG含量的SMPEEU。通过GPC, 1 H NMR和FT-IR表征了预聚物和产物的化学结构,并研究了PEG含量对SMPEEUs的理化性质(尤其是形状恢复性质)的影响。 。 DSC和XRD证明了SMPEEU的微相分离结构。 SMPEEU膜表现出良好的拉伸性能,其断裂应变为483%–956%,极限应力为23.1–9.0 MPa。体外水解降解研究表明,SMPEEU薄膜变成碎片的时间为4至12周,而PEG的引入促进了薄膜的降解速度。形状记忆性能研究发现,PEG含量为23.4 wt%的SMPEEU薄膜在体温下显示出优异的恢复性能,恢复率为99.8%,恢复时间为3.9 s。另外,孵育72小时后,SMPEEU膜的相对生长速率大于75%,表明其具有良好的体外细胞相容性。 SMPEEUs不仅具有令人满意的拉伸性能,可降解性,无毒降解产物和细胞相容性,而且在体温下还具有出色的形状恢复性能,有望成为医疗器械应用的理想选择。

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