Central Metallurgical Research and Development Institute (CMRDI), PO Box 87, Helwan, Cairo, 11421, Egypt.
Chemistry Department, Faculty of Science, Ain Shams University, Abbassia, Cairo, 11566, Egypt.
Sci Rep. 2024 Nov 2;14(1):26426. doi: 10.1038/s41598-024-76088-4.
Hydroxyapatite (HAp) and hydroxyapatite-based materials show promising potential in the healthcare sector due to their distinctive properties such as biocompatibility, antimicrobial efficacy, non-toxicity, and robust mechanical characteristics. This makes HAp materials play an important role in hindering infection spreading in healthcare provider institutions. This study assesses the antimicrobial efficacy of the developed hydroxyapatite-based composites incorporating copper, zinc, and silver nanoparticles. The synthesized HAp and its modified composite variants (Cu/HAp, Zn/HAp, and Ag/HAp) with varying ratios ranging from 0 to 15% (wt) were characterized using XRD, XPS, SEM, and TEM analyses. Furthermore, the antibacterial and antifungal properties of the synthesized HAp and HAp-based composites were evaluated. The antibacterial effectiveness of the HAp and its composites was evaluated using a modified disc diffusion test, where the resulting inhibition zones on the agar surface were observed. All the HAp and HAp-based composites (HAp, Cu/HAp, Zn/HAp, and Ag/HAp materials) elicited in the formation of inhibitory zones. The most substantial inhibition values were observed for the 5% Ag/HAp formulation, with values of 19.7 and 13.8, against E. coli and S. aureus, respectively. The 5% Ag/HAp concentration may strike an ideal balance, providing high antimicrobial activity without adverse effects on biocompatibility or material stability. These findings underscore the recommendation of the proposed HAp-based composites for infection control measures through their application on medical instruments, textiles, healthcare personnel attire, and patient garments.
羟基磷灰石(HAp)及其基于羟基磷灰石的材料由于其独特的特性,如生物相容性、抗菌功效、无毒和坚固的机械特性,在医疗保健领域显示出了巨大的应用潜力。这使得 HAp 材料在阻止医疗机构中感染传播方面发挥了重要作用。本研究评估了掺入铜、锌和银纳米粒子的新型羟基磷灰石基复合材料的抗菌功效。采用 XRD、XPS、SEM 和 TEM 分析对合成的 HAp 及其改性复合变体(Cu/HAp、Zn/HAp 和 Ag/HAp)进行了表征,这些变体的比例范围从 0 到 15%(wt)。此外,还评估了合成的 HAp 和 HAp 基复合材料的抗菌和抗真菌性能。采用改良的圆盘扩散试验评估了 HAp 及其复合材料的抗菌效果,观察琼脂表面形成的抑菌圈。所有的 HAp 和 HAp 基复合材料(HAp、Cu/HAp、Zn/HAp 和 Ag/HAp 材料)都在琼脂表面形成了抑菌圈。在所有 HAp 和 HAp 基复合材料中,Ag/HAp 复合材料的抑菌效果最为显著,对大肠杆菌和金黄色葡萄球菌的抑菌值分别为 19.7 和 13.8。Ag/HAp 的 5%浓度可能达到了理想的平衡,既提供了高抗菌活性,又不会对生物相容性或材料稳定性产生不利影响。这些发现强调了建议使用基于 HAp 的复合材料来控制感染,例如将其应用于医疗器械、纺织品、医护人员的服装和患者的衣物上。