首页> 外文期刊>Journal of biomedical materials research, Part A >Electrospinning and biocompatibility evaluation of biodegradable polyurethanes based on L-lysine diisocyanate and L-lysine chain extender.
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Electrospinning and biocompatibility evaluation of biodegradable polyurethanes based on L-lysine diisocyanate and L-lysine chain extender.

机译:基于L-赖氨酸二异氰酸酯和L-赖氨酸链增量剂的可生物降解聚氨酯的静电纺丝和生物相容性评价。

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摘要

A series of biodegradable polyurethanes (PUs) were synthesized using poly(epsilon-caprolactone) diol (PCL) to react with L-lysine ethyl ester diisocyanate (LDI) chain extend with L-lysine ethyl ester (LEE) in solution of DMF. The structure was characterized by gel permeation chromatography, (1)H-NMR, Fourier transform infrared, and DSC analyses. Mechanical property testing showed that their tensile strength rose with increasing the hard segment content with a maximum tensile strength of 34.43 +/- 1.73 MPa. The average mass loss for the hydrolytic degradation was only about 13 % in 56 days while this value for the enzymatic degradation was around 95 % in 30 days. The morphological and biomechanical characters of the tubular scaffolds electrospun from the as-prepared PUs were also examined. As the solution concentration was varied from 10 to 18% (w/v), the fiber diameter was progressively increased, and the scaffold tensile strength was enhanced from 2.82 +/- 0.16 MPa to 7.07 +/- 0.44 MPa, the suture retention strength from 2.48 +/- 0.33 to 8.38 +/- 0.35 N, and the burst pressure strength from 72 +/- 2 to 172 +/- 2 kPa, all higher than those of native blood vessels. At the same time, the L-929 mouse fibroblasts (L-929) and human umbilical vein endothelial cells were used in cytotoxicity and cell-adhesion evaluations toward the electrospun scaffolds. The level of toxicity is less than level 1, and cells were found to attach well to and remain viable on the scaffolds.
机译:使用聚(ε-己内酯)二醇(PCL)合成一系列可生物降解的聚氨酯(PU)以与L-赖氨酸乙酯二异氰酸酯(LDI)链反应,用L-赖氨酸乙酯(LEE)在DMF的溶液中延伸。该结构的特征在于凝胶渗透色谱法,(1)H-NMR,傅里叶变换红外和DSC分析。机械性能试验表明,它们的拉伸强度随着34.43 +/- 1.73 MPa的最大拉伸强度的增加而增加。水解降解的平均质量损失在56天内仅为约13%,而酶降解的该值在30天内约为95%。还检查了从制备的脓液管肌肌肌肌肌纺的形态学和生物力学特性。随着溶液浓度的变化从10-18%(w / v)变化,纤维直径逐渐增加,并且支架拉伸强度从2.82 +/- 0.16MPa增强至7.07 +/- 0.44MPa,缝合潴留强度从2.48 +/- 0.33到8.38 +/- 0.35 n,以及72 +/- 2至172 +/- 2kPa的爆破压力强度,全部高于原生血管。同时,将L-929小鼠成纤维细胞(L-929)和人脐静脉内皮细胞用于细胞毒性和细胞 - 粘附评估朝向电纺支架。毒性水平小于1级,并且发现细胞连接良好并保持在支架上的可行性。

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