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Synthesis and Characterization of Nanoscale-Hydroxyapatite-Copper for Antimicrobial Activity Towards Bone Tissue Engineering Applications

机译:纳米级羟基磷灰石铜的合成及表征及其对骨组织工程的抗菌活性

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The bacterial infection is one of the major problems associated with implant and reconstructive surgery of bone. Hence, the aim of this study was to develop biomaterials having antibacterial activ-ity for bone tissue engineering. The hydroxyapatite nanoparticles (nHAp) improve the mechanical properties and incorporate nanotopographic features that mimic the nanostructure of natural bone. We report here for the first time the synthesis and characterization of nHAp and nHAp soaked with copper (nHAp-Cu) using SEM, AFM, FTIR and XRD. The antibacterial activity of nHAp and nHAp-Cu was determined using Gram-positive and Gram-negative bacterial strains. To have accel-erated antibacterial activity, polyethylene glycol 400 (PEG 400), a synthetic biodegradable polymer was also added along with nHAp-Cu. The nHAp-Cu/PEG 400 had increased antibacterial activity towards Gram-positive than Gram-negative bacterial strains. The cytotoxicity of nHAp-Cu/PEG 400 was determined using MTT assay with rat primary osteoprogenitor cells and these biomaterials were found to be non-toxic. Hence, based on these results we suggest that the biomaterials containing nHAp-Cu/PEG 400 can be used as antibacterial materials in bone implant and bone regenerative medicine.
机译:细菌感染是与骨的植入和重建手术有关的主要问题之一。因此,本研究的目的是开发具有抗菌活性的生物材料用于骨组织工程。羟基磷灰石纳米颗粒(nHAp)改善了机械性能,并具有模仿天然骨骼纳米结构的纳米形貌特征。我们在这里首次报告使用SEM,AFM,FTIR和XRD合成并表征了被铜(nHAp-Cu)浸透的nHAp和nHAp。使用革兰氏阳性和革兰氏阴性细菌菌株测定nHAp和nHAp-Cu的抗菌活性。为了具有加速的抗菌活性,还添加了合成的可生物降解聚合物聚乙二醇400(PEG 400)和nHAp-Cu。与革兰氏阴性细菌菌株相比,nHAp-Cu / PEG 400对革兰氏阳性细菌的抗菌活性增强。使用大鼠原代骨祖细胞的MTT测定法确定nHAp-Cu / PEG 400的细胞毒性,发现这些生物材料无毒。因此,基于这些结果,我们建议包含nHAp-Cu / PEG 400的生物材料可用作骨植入物和骨再生医学中的抗菌材料。

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