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首页> 外文期刊>RSC Advances >Two-dimensional electrospun nanofibrous membranes for promoting random skin flap survival
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Two-dimensional electrospun nanofibrous membranes for promoting random skin flap survival

机译:二维电纺纳面纤维膜促进随机皮瓣存活

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Random skin flaps are widely used for repairing and reconstructing tissue defects and local tissue loss, and efforts to improve the survival of random skin flaps are continually being developed. Biomaterial scaffolds provide a microstructure for cell growth. However, the conventional three-dimensional structure can cause large foreign body reactions in the local subcutaneous tissue leading to fibrosis in order to block the blood perfusion of the skin flap. In this study, the effect of two-dimensional electrospun nanofibrous membranes on random skin flaps survival was investigated. Both typical nanofibrous membranes of synthetic (poly( L -lactide)) and natural (gelatin) materials were fabricated and analyzed using scanning electron microscopy, uniaxial tensile and water contact angle measurements. Both kinds of membranes maintained stable fibrous structures, but the natural fiber showed a better adhesion and viability for human dermal fibroblasts (HDFs) and human umbilical vein endothelial cells (HUVECs) compared to synthetic fibers. In vivo experiments showed that natural electrospun nanofibrous membranes had faster degradation, better revascularization, and caused less inflammation, leading to an improved random skin flap survival. Therefore, electrospun fibrous membranes made of natural materials are more advantageous for random skin flap survival compared to the synthetic ones, and may be used as carrier implantation materials for improving skin flap survival rate.
机译:随机皮瓣广泛用于修复和重建组织缺陷和局部组织损失,并且不断地开发出改善随机皮瓣存活的努力。生物材料支架提供了细胞生长的微观结构。然而,常规的三维结构可导致局部皮下组织中的大异物反应导致纤维化,以阻止皮瓣的血液灌注。在这项研究中,研究了二维Electurpum纳米纤维膜对随机皮瓣存活的影响。使用扫描电子显微镜,单轴拉伸和水接触角测量来制造和分析典型的合成(聚(L-阶))和天然(明胶)材料的典型纳米纤维膜。两种膜保持稳定的纤维结构,但与合成纤维相比,天然纤维对人皮肤成纤维细胞(HDFS)和人脐静脉内皮细胞(HUVECS)的可活力表现出更好的粘附性和活力。在体内实验表明,天然电纺纳面纤维膜具有更快的降解,更好的血运重建,引起炎症较少,导致随机皮瓣生存。因此,由天然材料制成的电纺纤维膜对与合成的合成材料相比,随机皮瓣存活更有利,并且可以用作载体注入材料,用于改善皮肤瓣存活率。

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