Department of Chemistry, Birla Institute of Technology, Mesra, Ranchi, Jharkhand, 835215, India.
J Mater Sci Mater Med. 2023 Apr 28;34(5):22. doi: 10.1007/s10856-023-06725-3.
It is imperative to investigate the effect of addition of different size metallic ions in HAp and study the changes in biocompatibility and mechanical properties. Silver and magnesium ions are two vital ions needed in our body. Silver ions are known to inhibit the microbes, while magnesium ions are known to increase the mechanical properties. The present study reports the comparative properties of MgHAp and AgHAp synthesised by sol-gel wet chemical method. Changes in the morphology, phase analysis, corrosion resistance, dielectric properties, hardness and the thrombus behaviour of HAp doped Ag and Mg ions has been investigated. In this work, we have presented a comparative study of both the metal doped ionsto find which of the ions and which weight percent of the ions can be best suited to be incorporated into the HAp matrix for hard tissue implants. All wt% AgHAp showed the better corrosion resistance than all the MgHAp samples. However, MgHAp showed higher value of hardness in comparison to AgHAp samples. The mechanical strength was found to increase with the increase in Mg wt% in MgHAp but for AgHAp the hardness value decreased with increase in the concentration. The impedance and dielectric loss decreased with increasing frequency for both the samples. Both the ion doped hydroxyapatite showed moderate clotting behaviour as compared to pure HAp. But 2 wt% MgHAp and 4 wt% AgHAp showed better thrombogenic behaviour. It is imperative to investigate the effect of addition of different size metallic ions in HAp and study the changes in biocompatibility and mechanical properties. Silver and magnesium ions are two vital ions needed in our body. Silver ions are known to inhibit the microbes, while magnesium ions are known to increase the mechanical properties. The present study reports the comparative properties of MgHAp and AgHAp synthesised by sol-gel wet chemical method. Changes in the morphology, phase analysis, corrosion resistance, dielectric properties, hardness and the thrombus behaviour of HAp doped Ag and Mg ions has been investigated. In this work we have presented a comparative study of both the metal doped ions to find which of the ions and which weight percent of the ions can be best suited to be incorporated into the HAp matrix for hard tissue implants. All wt% AgHAp showed the better corrosion resistance than all the MgHAp samples. However, MgHAp showed higher value of hardness in comparison to AgHAp samples. The mechanical strength was found to increase with the increase in Mg wt% in MgHAp but for AgHAp the hardness value decreased with increase in the concentration. The impedance and dielectric loss decreased with increasing frequency for both the samples. Both the ion doped hydroxyapatite showed moderate clotting behaviour as compared to pure HAp. But 2 wt% MgHAp and 4 wt% AgHAp showed better thrombogenic behaviour.
研究在 HAp 中添加不同尺寸的金属离子的效果,并研究其生物相容性和力学性能的变化是至关重要的。银离子和镁离子是我们体内所需的两种重要离子。银离子已知具有抑制微生物的作用,而镁离子已知可以提高机械性能。本研究报告了通过溶胶-凝胶湿法化学合成的 MgHAp 和 AgHAp 的比较性能。研究了掺杂 Ag 和 Mg 离子的 HAp 的形貌、相分析、耐腐蚀性、介电性能、硬度和血栓行为的变化。在这项工作中,我们对两种金属掺杂离子进行了比较研究,以确定哪种离子以及哪种离子的重量百分比最适合掺入 HAp 基质中用于硬组织植入物。所有 wt%AgHAp 的耐腐蚀性均优于所有 MgHAp 样品。然而,MgHAp 的硬度值比 AgHAp 样品高。机械强度随着 MgHAp 中 Mgwt%的增加而增加,但对于 AgHAp,硬度值随着浓度的增加而降低。两种掺杂离子的羟基磷灰石的阻抗和介电损耗均随频率的增加而降低。与纯 HAp 相比,两种掺杂离子的羟基磷灰石都表现出中等的凝血行为。但是 2wt%MgHAp 和 4wt%AgHAp 表现出更好的血栓形成行为。研究在 HAp 中添加不同尺寸的金属离子的效果,并研究其生物相容性和力学性能的变化是至关重要的。银离子和镁离子是我们体内所需的两种重要离子。银离子已知具有抑制微生物的作用,而镁离子已知可以提高机械性能。本研究报告了通过溶胶-凝胶湿法化学合成的 MgHAp 和 AgHAp 的比较性能。研究了掺杂 Ag 和 Mg 离子的 HAp 的形貌、相分析、耐腐蚀性、介电性能、硬度和血栓行为的变化。在这项工作中,我们对两种金属掺杂离子进行了比较研究,以确定哪种离子以及哪种离子的重量百分比最适合掺入 HAp 基质中用于硬组织植入物。所有 wt%AgHAp 的耐腐蚀性均优于所有 MgHAp 样品。然而,MgHAp 的硬度值比 AgHAp 样品高。机械强度随着 MgHAp 中 Mgwt%的增加而增加,但对于 AgHAp,硬度值随着浓度的增加而降低。两种掺杂离子的羟基磷灰石的阻抗和介电损耗均随频率的增加而降低。与纯 HAp 相比,两种掺杂离子的羟基磷灰石都表现出中等的凝血行为。但是 2wt%MgHAp 和 4wt%AgHAp 表现出更好的血栓形成行为。