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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Reducing Escherichia coli growth on a composite biomaterial by a surface immobilized antimicrobial peptide
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Reducing Escherichia coli growth on a composite biomaterial by a surface immobilized antimicrobial peptide

机译:通过表面固定的抗菌肽减少大肠杆菌在复合生物材料上的生长

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摘要

A new composite bioceramic consisting of calcium aluminum oxide (CaAlO) and hydroxyapatite (HA) was functionalized with the synthetic antimicrobial peptide Inverso-CysHHC10. CaAlO is a bioceramic that can be mold cast easily and quickly at room temperature. Improved functionality was previously achieved through surface reactions. Here, composites containing 0-5% HA (by mass) were prepared and the elastic modulus and modulus of rupture were mechanically similar to non-load bearing bone. The addition of hydroxyapatite resulted in increased osteoblast attachment (>180%) and proliferation (>140%) on all composites compared to 100% CaAlO. Antimicrobial peptide (AMP) immobilization was achieved using an interfacial alkene-thiol click reaction. The linked AMP persisted on the composite (>99.6% after 24 h) and retained its activity against Escherichia coli based on N-phenylnaphthylamine uptake and bacterial turbidity tests. Overall, this simple scaffold system improves osteoblast activity and reduces bacterial activity. (C) 2016 Elsevier B.V. All rights reserved.
机译:由合成的抗菌肽Inverso-CysHHC10对由铝酸钙(CaAlO)和羟基磷灰石(HA)组成的新型复合生物陶瓷进行功能化。 CaAlO是一种生物陶瓷,可以在室温下轻松快速地模铸。先前通过表面反应实现了改进的功能。在此,制备了包含0-5%HA(按质量计)的复合材料,其弹性模量和断裂模量在力学上类似于非承重骨。与100%CaAlO相比,所有复合材料中羟基磷灰石的添加均导致成骨细胞附着增加(> 180%)和增殖(> 140%)。使用界面烯烃-巯基点击反应可实现抗菌肽(AMP)的固定化。连接的AMP在复合材料上持续存在(24小时后> 99.6%),并且根据N-苯基萘胺的吸收和细菌浊度测试,其保留了对大肠杆菌的活性。总体而言,这种简单的支架系统改善了成骨细胞的活性并降低了细菌的活性。 (C)2016 Elsevier B.V.保留所有权利。

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