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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Nanobiostructure of fibrous-like alumina functionalized with an analog of the BP100 peptide: Synthesis, characterization and biological applications
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Nanobiostructure of fibrous-like alumina functionalized with an analog of the BP100 peptide: Synthesis, characterization and biological applications

机译:用BP100肽的类似物官能化的纤维状氧化铝的纳米能结构:合成,表征和生物应用

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摘要

The functionalization of alumina nanoparticles of specific morphology with antimicrobial peptides (AMP) can be a promising strategy for modeling medical deviCes and packaging materials for cosmetics, medicines or food, since the contamination by pathogens could be reduced. In this paper, we show the synthesis of a fibrous-like alumina nanobiostructure, as well as its functionalization with the peptide EAAA-BP100, an analog of the antimicrobial peptide BP100. The antibacterial activity of the obtained material against some bacterial strains' is also investigated. The covalent binding of the peptide to the nanoparticles was promoted by a reaction between the carboxyl group of the glutamate side chain (El) of the peptide and the amino groups of the alumina nanoparticles, previously modified by reaction with 3-aminopropyltrietoxysilane (APTES). The functionalized nanoparticles were characterized by zeta potential measurements, Fourier transform infrared spectroscopy, and other physicochemical techniques. Although the obtained alumina nanobiostructure shows a relatively low degree of substitution with EAAA-BP100, antibacterial activities against Escherichia coli and Salmonella typhimurium strains are appreciably higher than the activities of the free peptide. The obtained results can affect the design of new hybrid nanobiomaterials based on nanoparticles functionalized with AMP. (C) 2018 Published by Elsevier B.V.
机译:与抗微生物肽(AMP)的特定形态的氧化铝纳米粒子的官能化可以是用于对化妆品,药​​物或食物进行化妆品和包装材料的有希望的策略,因为可以降低病原体的污染。在本文中,我们展示了纤维状氧化铝纳米能结构的合成,以及其与肽EAA-BP100的官能化,抗微生物肽BP100的类似物。还研究了所得材料对一些细菌菌株的抗菌活性。通过肽侧链(EL)的羧基和氧化铝纳米粒子的氨基之间的反应,通过与3-氨基丙基三氧基硅烷(Aptes)反应改性的氨基纳米粒子的氨基之间的反应来促进肽与纳米颗粒的共价结合。通过Zeta电位测量,傅里叶变换红外光谱和其他物理化学技术表征官能化纳米颗粒。虽然所得氧化铝纳米积皮结构显示eAAA-BP100的相对较低程度的取代,但对来自大肠杆菌和沙门氏菌的抗菌活性明显高于游离肽的活性。得到的结果可以影响基于纳米型纳米颗粒的新杂化纳米材料的设计。 (c)2018由elsevier b.v发布。

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