Synthesis of novel nanostructured bredigite–amoxicillin scaffolds for bone defect treatment: cytocompatibility and antibacterial activity

被引:0
|
作者
H. R. Bakhsheshi-Rad
E. Hamzah
N. Abbasizadeh
A. Najafinezhad
M. Kashefian
机构
[1] Islamic Azad University,Advanced Materials Research Center, Department of Materials Engineering, Najafabad Branch
[2] Universiti Teknologi Malaysia,Department of Materials, Manufacturing and Industrial Engineering, Faculty of Mechanical Engineering
[3] University of Tehran,Biomaterials Group, Faculty of New Science and Technologies
来源
Journal of Sol-Gel Science and Technology | 2018年 / 86卷
关键词
Bredigite scaffold; Amoxicillin; Cytocompatibility; Drug release; Antimicrobial activity;
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学科分类号
摘要
Bone infections in human beings are an essentially destructive problem with crucial clinical and economic effects; thus, incorporation of antibiotics such as amoxicillin (AMX) into the scaffold was developed as an effective treatment for bone infections. In this respect, we develop new nanostructured bredigite (Bre; Ca7MgSi4O16)–amoxicillin (AMX; α-amino-hydroxybenzyl-penicillin) scaffolds containing different concentrations of amoxicillin (0, 3, 5, and 10%) by using space holder method to assure bactericidal properties. The result depicted that the Bre–AMX scaffolds possess porosity of 80–82% with high compressive strength of 1.2–1.4 MPa and controlled antibiotic release for prevention of infection. Bre–(3–10%)AMX scaffolds were able to destroy Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli) bacteria, as well as effectively inhibit the growth of bacterial cells; in addition, the antibacterial activity of the AMX-loaded scaffolds augmented with the increase of the AMX concentration. Sustained drug release was detected from Bre–AMX scaffolds accompanied by initial burst release of 20% for 8 h, followed by a sustained release, which is favorable for bone infection treatment. These new Bre–(3–5%)AMX scaffolds possess excellent mechanical properties and antibacterial activity with no cytotoxicity suggested as an appropriate alternative for bone infection treatment.
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页码:83 / 93
页数:10
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