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具有抗菌活性的氧化铝-羟基磷灰石-银球体

Alumina-Hydroxyapatite-Silver Spheres With Antibacterial Activity.

作者信息

Silva-Holguín Pamela Nair, Reyes-López Simón Yobanny

机构信息

Instituto de Ciencias Biomédicas, Universidad Autónoma de Ciudad Juárez, Ciudad Juárez, Chihuahua, México.

出版信息

Dose Response. 2021 May 21;19(2):15593258211011337. doi: 10.1177/15593258211011337. eCollection 2021 Apr-Jun.

Abstract

Researchers are currently looking for materials that are stable, functional, aesthetic, and biocompatible without infections. Therefore, there is a great interest in obtaining a material that has a balance between aesthetic, biological, mechanical, and functional factors, which can be used as an infection control material. The addition of hydroxyapatite to alumina make highly bioactive scaffolds with mechanical strength. Biomedical applications require antibacterial properties; therefore, this idea leads to great interest in the development of new synthetic routes of ceramic biomaterials that allow the release of nanoparticles or metal ions. This investigation presents the obtention of alumina-hydroxyapatite spheres doped with silver nanoparticles with antibacterial effect against various Gram-positive and negative bacteria related to drug-resistance infections. The microstructural and spectroscopic studies demonstrate that the spheres exhibit a homogeneous structure and crystal hydroxyapatite and silver nanoparticles are observed on the surface. The antimicrobial susceptibility was verified with the agar diffusion and turbidimetry methods in Gram-negative ( and ) and Gram-positive ( and ) bacteria. All bacteria used were susceptible to the alumina-hydroxyapatite-silver spheres even at lower silver concentration. The composites have a higher possibility for medical applications focused on the control of drug-resistance microorganisms.

摘要

研究人员目前正在寻找稳定、功能良好、美观且生物相容且无感染的材料。因此,人们对获得一种在美学、生物学、机械和功能因素之间取得平衡的材料非常感兴趣,这种材料可作为感染控制材料。向氧化铝中添加羟基磷灰石可制成具有机械强度的高生物活性支架。生物医学应用需要抗菌性能;因此,这一想法引发了人们对开发能够释放纳米颗粒或金属离子的陶瓷生物材料新合成路线的极大兴趣。本研究展示了获得掺杂有银纳米颗粒的氧化铝 - 羟基磷灰石球体,其对与耐药性感染相关的各种革兰氏阳性和阴性细菌具有抗菌作用。微观结构和光谱研究表明,球体呈现出均匀的结构,并且在表面观察到了晶体羟基磷灰石和银纳米颗粒。通过琼脂扩散法和比浊法在革兰氏阴性(和)及革兰氏阳性(和)细菌中验证了抗菌敏感性。即使在较低的银浓度下,所有使用的细菌对氧化铝 - 羟基磷灰石 - 银球体都敏感。这些复合材料在针对耐药微生物控制的医学应用方面具有更高的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fa5/8851142/7e358ce1a272/10.1177_15593258211011337-fig1.jpg

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