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用于伤口愈合应用的聚(1,8-辛二醇-共-柠檬酸酯)和聚(丙烯酸)纳米纤维支架的开发。

Development of poly (1,8 octanediol-co-citrate) and poly (acrylic acid) nanofibrous scaffolds for wound healing applications.

机构信息

University of Florida, Department of Materials Science and Engineering, 100 Rhines Hall, PO Box 116400, Gainesville, FL 32611, United States of America. University of Florida, Institute for Cell and Tissue Science and Engineering, 300 Weil Hall, PO Box 116550, Gainesville, FL 32611, United States of America.

出版信息

Biomed Mater. 2017 Oct 26;13(1):015002. doi: 10.1088/1748-605X/aa8439.

Abstract

Wound care is one of the leading health care problems in the United States costing billions of dollars yearly. Annually, millions of acute wounds occur due to surgical procedures or traumas such as burns and abrasions, and these wounds can become non-healing due to bacterial infection or underlying pathologies. Current wound care treatments include the use of bioinert constructs combined with topical administration of anti-bacterial agents and growth factors. However, there is a growing need for the development of bioactive wound dressing materials that are able to promote wound healing and the regeneration of healthy tissue. In this work, we evaluate and report the use of a novel electrospun polymeric scaffold consisting of poly (1,8 octanediol-co-citrate) and poly (acrylic acid) for wound healing applications. The scaffold exhibits intrinsic antibacterial activity, hydrogel-like water uptake abilities, and the ability to deliver physiologically relevant concentrations of growth factor. Additionally, the scaffold shows antibacterial function when tested with bacteria relevant to wound healing applications. Biological characterization of the electrospun scaffold shows excellent cellular adhesion, low cytotoxicity, and enhanced proliferation of skin fibroblasts. This work has potential towards the development of novel bioactive scaffolds for prevention of bacterial infiltration into the wound bed and enhanced healing.

摘要

伤口护理是美国主要的医疗保健问题之一,每年耗费数十亿美元。每年有数百万人因手术或烧伤、擦伤等创伤而发生急性伤口,这些伤口可能因细菌感染或潜在病理而无法愈合。目前的伤口护理治疗包括使用生物惰性结构与局部应用抗菌剂和生长因子相结合。然而,人们越来越需要开发能够促进伤口愈合和健康组织再生的生物活性伤口敷料材料。在这项工作中,我们评估并报告了一种新型电纺聚合物支架的使用,该支架由聚(1,8 辛二醇-柠檬酸)和聚(丙烯酸)组成,可用于伤口愈合应用。该支架具有内在的抗菌活性、水凝胶样的吸水能力以及能够输送生理相关浓度的生长因子的能力。此外,该支架在与伤口愈合应用相关的细菌测试中显示出抗菌功能。电纺支架的生物学特性表明其具有极好的细胞黏附性、低细胞毒性和皮肤成纤维细胞的增殖增强。这项工作有可能开发出用于预防细菌渗透到伤口床和增强愈合的新型生物活性支架。

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