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首页> 外文期刊>Biomacromolecules >Rheology and Electrospinning of Regenerated Bombyx mori Silk Fibroin Aqueous Solutions
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Rheology and Electrospinning of Regenerated Bombyx mori Silk Fibroin Aqueous Solutions

机译:再生家蚕丝素蛋白水溶液的流变和静电纺丝

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摘要

Bombyx mori silk fibroin (BMSF) has received considerable research interest as a potential biomaterial owing to its excellent mechanical properties and benign, versatile material fabrication options, including electrospinning. Despite this, characterizations of regenerated BMSF aqueous solutions and electrospun materials resulting from them are still very limited in the literature. This report details the rheological characterization of regenerated aqueous BMSF solutions under shear and elongational deformation. Well-characterized regenerated BMSF solutions were then systematically electrospun over a range of concentrations and process parameters to determine their effects on electrospinning processing windows and fiber morphology. BMSF solutions could not be electrospun successfully if BMSF concentration was below 20 wt % or the relaxation time measured using the CaBER rheometer was below 0.001 s. Electrospun BMSF fiber diameter was found to increase with solution concentration when stable electrospinning was achieved. An upper threshold of 30 wt % BMSF solution was identified for the formation of fibers with a circular cross section. Adding small amount of high molecular weight poly(ethylene oxide) was an effective rheological modifier that greatly improved the electrospinnability of BMSF solutions. Electrospinning BMSF-PEO solutions over a range of parameters significantly altered the fiber products. Increasing voltage from 0.5 to 1 kV/cm was found to decrease fiber diameter by approximately 50% (p < 0.001). Flow rate was found to have a significant effect on fiber diameter, which decreased with spinneret height. The results presented here provide valuable guidance in the production of BMSF electrospun materials with specific properties for tissue engineering and regenerative medicine.
机译:家蚕丝素蛋白(BMSF)由于其优异的机械性能和良性多用途的材料制造选择(包括静电纺丝)而作为潜在的生物材料而受到了广泛的研究兴趣。尽管如此,文献中对再生的BMSF水溶液和由其产生的电纺丝材料的表征仍然非常有限。该报告详细介绍了再生的BMSF水溶液在剪切和伸长变形下的流变特性。然后,将表征良好的再生BMSF溶液在一系列浓度和工艺参数上进行系统电纺丝,以确定其对电纺加工窗口和纤维形态的影响。如果BMSF浓度低于20 wt%或使用CaBER流变仪测量的弛豫时间低于0.001 s,则BMSF溶液无法成功进行电纺。当实现稳定的电纺丝时,发现电纺BMSF纤维直径随溶液浓度而增加。确定了用于形成具有圆形横截面的纤维的30wt%BMSF溶液的上限。添加少量的高分子量聚环氧乙烷是一种有效的流变改性剂,可大大改善BMSF溶液的电纺丝性。在一系列参数上的静电纺BMSF-PEO解决方案极大地改变了纤维产品。发现将电压从0.5 kV / cm增加到1 kV / cm可将纤维直径减小约50%(p <0.001)。发现流速对纤维直径有显着影响,纤维直径随喷丝头高度而降低。本文介绍的结果为生产BMSF电纺材料提供了宝贵的指导,该材料具有用于组织工程和再生医学的特殊性能。

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