首页> 外文会议>Conference on Pan American Health Care Exchanges;Conference on Global Medical Engineering Physics Exchanges >Cross-linking Effect in Bovine Gelatin and PCL Scaffolds Prepared by Sequential Electrospinning and Co-electrospinning for Potential Use as Vascular Grafts
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Cross-linking Effect in Bovine Gelatin and PCL Scaffolds Prepared by Sequential Electrospinning and Co-electrospinning for Potential Use as Vascular Grafts

机译:序贯电纺和共电纺丝制备的牛明胶和PCL支架的交联作用可能用作血管移植物

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Vascular replacement for vessels with diameter smaller than 6 mm prepared with non-biodegradable polymers present complications due to their low biocompatibility, leading to thrombotic occlusion and intimal hyperplasia. Currently, biodegradable polymeric materials of synthetic and natural origin are an alternative for the design of porous walls that provide a biological microenvironment that facilitates the development of a new tissue. Among these polymers, bovine gelatin, derived from the hydrolysis of collagen, is low cost protein which guarantees an adequate biocompatibility. Nevertheless, due to its low resistance in aqueous environments, chemical treatments are required to improve its resistance. Furthermore, glutaraldehyde (GA) cross-linking is widely used because of its high efficiency and low cost. In this study was evaluated the effect of cross-linking by GA on membranes composed of bovine gelatin and polycaprolactone (PCL), prepared by sequential electrospinning and co-electrospinning. Morphological characteristics were observed through scanning electron microscopy (SEM), wettability was determined with contact angle and strength of tubular scaffolds were circumferentially tested. The results showed that the cross-linking had a higher effect on the scaffolds that are obtained by sequential electrospinning compared to co-electrospinning due to the exposure of the bovine gelatin in each type of method.
机译:用不可生物降解的聚合物制备的直径小于6 mm的血管的血管置换由于其生物相容性低而引起并发症,导致血栓闭塞和内膜增生。当前,合成和天然来源的可生物降解的聚合物材料是多孔壁设计的替代方案,该多孔壁提供了促进新组织发育的生物微环境。在这些聚合物中,源自胶原蛋白水解的牛明胶是低成本的蛋白质,可确保足够的生物相容性。然而,由于其在水性环境中的低电阻,需要化学处理以改善其电阻。此外,戊二醛(GA)交联由于其高效和低成本而被广泛使用。在这项研究中,我们评估了GA交联对通过顺序电纺丝和共电纺丝制备的由明胶和聚己内酯(PCL)组成的膜的影响。通过扫描电子显微镜(SEM)观察形态特征,通过接触角确定润湿性,并沿周向测试管状支架的强度。结果表明,由于在每种类型的方法中牛明胶的暴露,与共电纺丝相比,交联对通过顺序电纺丝获得的支架具有更高的影响。

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