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负载氧化钨纳米颗粒的羟基磷灰石:新型抗菌复合材料

Hydroxyapatite Decorated with Tungsten Oxide Nanoparticles: New Composite Materials against Bacterial Growth.

作者信息

Silingardi Francesca, Bonvicini Francesca, Cassani Maria Cristina, Mazzaro Raffaello, Rubini Katia, Gentilomi Giovanna Angela, Bigi Adriana, Boanini Elisa

机构信息

Department of Chemistry ''Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.

Department of Pharmacy and Biotechnology, University of Bologna, Via Massarenti 9, 40138 Bologna, Italy.

出版信息

J Funct Biomater. 2022 Jun 24;13(3):88. doi: 10.3390/jfb13030088.

Abstract

The availability of biomaterials able to counteract bacterial colonization is one of the main requirements of functional implants and medical devices. Herein, we functionalized hydroxyapatite (HA) with tungsten oxide (WO) nanoparticles in the aim to obtain composite materials with improved biological performance. To this purpose, we used HA, as well as HA functionalized with polyacrilic acid (HAPAA) or poly(ethylenimine) (HAPEI), as supports and polyvinylpyrrolidone (PVP) as stabilizing agent for WO nanoparticles. The number of nanoparticles loaded on the substrates was determined through Molecular Plasma-Atomic Emission Spectroscopy and is quite small, so it cannot be detected through X-ray diffraction analysis. It increases from HAPAA, to HA, to HAPEI, in agreement with the different values of zeta potential of the different substrates. HRTEM and STEM images show the dimensions of the nanoparticles are very small, less than 1 nm. In physiological solution HA support displays a greater tungsten cumulative release than HAPEI, despite its smaller loaded amount. Indeed, WO nanoparticles-functionalized HA exhibits a remarkable antibacterial activity against the Gram-positive in absence of cytotoxicity, which could be usefully exploited in the biomedical field.

摘要

能够抵抗细菌定植的生物材料的可用性是功能性植入物和医疗设备的主要要求之一。在此,我们用氧化钨(WO)纳米颗粒对羟基磷灰石(HA)进行功能化处理,旨在获得具有改善生物学性能的复合材料。为此,我们使用HA以及用聚丙烯酸(HAPAA)或聚乙烯亚胺(HAPEI)功能化的HA作为载体,并使用聚乙烯吡咯烷酮(PVP)作为WO纳米颗粒的稳定剂。通过分子等离子体原子发射光谱法测定了负载在基材上的纳米颗粒数量,其数量相当少,因此无法通过X射线衍射分析检测到。其数量从HAPAA到HA再到HAPEI逐渐增加,这与不同基材的不同zeta电位值一致。高分辨率透射电子显微镜(HRTEM)和扫描透射电子显微镜(STEM)图像显示纳米颗粒的尺寸非常小,小于1纳米。在生理溶液中,尽管HA载体负载量较小,但其钨的累积释放量比HAPEI更大。实际上,WO纳米颗粒功能化的HA在无细胞毒性的情况下对革兰氏阳性菌表现出显著的抗菌活性,这在生物医学领域可能会得到有效应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3340/9326691/641d17dd8a1c/jfb-13-00088-g001.jpg

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