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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Small diameter electrospun silk fibroin vascular grafts: Mechanical properties, in vitro biodegradability, and in vivo biocompatibility
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Small diameter electrospun silk fibroin vascular grafts: Mechanical properties, in vitro biodegradability, and in vivo biocompatibility

机译:小直径静电纺丝素蛋白血管移植物:机械性能,体外生物降解性和体内生物相容性

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To overcome the drawbacks of autologous grafts currently used in clinical practice, vascular tissue engineering represents an alternative approach for the replacement of small diameter blood vessels. In the present work, the production and characterization of small diameter tubular matrices (inner diameter (ID) = 4.5 and 1.5 mm), obtained by electrospinning (ES) of Bombyx mori silk fibroin (SF), have been considered. ES-SF tubular scaffolds with ID = 1.5 mm are original, and can be used as vascular grafts in pediatrics or in hand microsurgery. Axial and circumferential tensile tests on ES-SF tubes showed appropriate properties for the specific application. The burst pressure and the compliance of ES-SF tubes were estimated using the Laplace's law. Specifically, the estimated burst pressure was higher than the physiological pressures and the estimated compliance was similar or higher than that of native rat aorta and Goretex prosthesis. Enzymatic in vitro degradation tests demonstrated a decrease of order and crystallinity of the SF outer surface as a consequence of the enzyme activity. The in vitro cytocompatibility of the ES-SF tubes was confirmed by the adhesion and growth of primary porcine smooth muscle cells. The in vivo subcutaneous implant into the rat dorsal tissue indicated that ES-SF matrices caused a mild host reaction. Thus, the results of this investigation, in which comprehensive morphological and mechanical aspects, in vitro degradation and in vitro and in vivo biocompatibility were considered, indicate the potential suitability of these ES-SF tubular matrices as scaffolds for the regeneration of small diameter blood vessels. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了克服当前在临床实践中使用的自体移植物的弊端,血管组织工程学是替代小直径血管的替代方法。在当前工作中,已经考虑了通过家蚕丝素蛋白(SF)的电纺丝(ES)获得的小直径管状基质(内径(ID)= 4.5和1.5 mm)的生产和表征。具有ID = 1.5 mm的ES-SF管状支架是原始的,可在儿科或手部显微外科手术中用作血管移植物。在ES-SF管上进行的轴向和周向拉伸测试显示了适合特定应用的性能。使用拉普拉斯定律估算爆破压力和ES-SF管的顺应性。具体而言,估计的爆裂压力高于生理压力,估计的顺应性与天然大鼠主动脉和Goretex假体相似或更高。酶促体外降解测试表明,由于酶活性,SF外表面的有序性和结晶性降低。通过原代猪平滑肌细胞的粘附和生长证实了ES-SF管的体外细胞相容性。体内皮下植入大鼠背部组织表明,ES-SF基质引起轻度宿主反应。因此,该研究的结果综合了形态学和力学方面,体外降解以及体外和体内生物相容性,表明这些ES-SF管状基质作为支架可用于小直径血管的再生。 。 (C)2015 Elsevier B.V.保留所有权利。

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