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Silver substituted nanosized calcium deficient hydroxyapatite

机译:银取代的纳米钙缺乏羟基磷灰石

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Nanosized calcium deficient hydroxyapatite (CDHA) and nanosized calcium deficient hydroxyapatite with silver substitution (SCDHA) of three different silver concentrations were produced by a rapid microwave assisted synthesis method, which is a time saving and energy efficient technique. The effects of the microwave processing parameters and heat treatment on decomposition behaviour, formed phases, crystallite size and particle size and morphology of the powders were investigated. It was found that the crystallite size of the produced powder may be controlled by varying the microwave processing parameters. It was determined that the applied microwave power had a greater effect than the duration of the microwave treatment on crystallite sizes. The CDHA was found to be stable during calcinations, whereas silver addition was found to result in β-tricalcium phosphate formation by decreasing the thermal stability of the powders. The antibacterial effect of silver substitution was investigated. The SCDHA powder showed good antibacterial activity against Escherichia coli and Staphylococcus aureus bacteria. The produced antibacterial SCDHA powder has potential usage in medical applications as a raw material for bone grafts and coating material for metallic implants. It can prevent bacterial infection without use of antibiotics, avoiding antibiotic related complications, and minimise potential risks due to bacterial infection, thus increasing patient satisfaction and decreasing hospitalisation times and medical costs.
机译:通过快速微波辅助合成方法生产了三种不同银浓度的纳米级缺钙羟基磷灰石(CDHA)和纳米级缺银羟基磷灰石(SCDHA),这是一种省时又节能的技术。研究了微波工艺参数和热处理对粉末分解行为,形成相,微晶尺寸,粒度和形貌的影响。发现可以通过改变微波加工参数来控制所生产粉末的微晶尺寸。已确定所施加的微波功率比微波处理的持续时间对微晶尺寸具有更大的影响。发现CDHA在煅烧期间是稳定的,而发现添加银可通过降低粉末的热稳定性而导致形成β-磷酸三钙。研究了银取代的抗菌作用。 SCDHA粉末对大肠杆菌和金黄色葡萄球菌具有良好的抗菌活性。所生产的抗菌SCDHA粉末在医疗应用中具有潜在用途,可作为骨移植物的原材料和金属植入物的涂层材料。它可以在不使用抗生素的情况下预防细菌感染,避免了与抗生素相关的并发症,并将细菌感染引起的潜在风险降至最低,从而提高了患者满意度,并减少了住院时间和医疗费用。

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