Alashi Shaza, Alkhouri Isam, Alghoraibi Ibrahim, Kochaji Nabil, Houri Abdullah, Karkoutly Mawia
Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Damascus University, Damascus, Syrian Arab Republic.
Department of Physics, Faculty of Science, Damascus University, Damascus, Syrian Arab Republic.
Heliyon. 2024 Aug 8;10(16):e35907. doi: 10.1016/j.heliyon.2024.e35907. eCollection 2024 Aug 30.
This study aimed to evaluate morphological, chemical and biocompatible properties of nanohydroxyapatite (N-HA) synthesized from eggshells and dual-doped with Si4+ and Zn2+.
In the current study, N-HA was synthesized from chicken eggshells using the wet chemical precipitation method and doped with Si4+ and Zn2+. The physical assessment was carried out using field emission scanning electron microscopy (FE-SEM), energy dispersive X-ray (EDX) analysis, and X-ray diffraction (XRD) analysis. Crystal size was calculated using the Scherrer equation. Cytotoxicity was studied in vitro using the MTT (3-(4,5-Dimethylthiazol-2-yl)-2,5-Diphenyltetrazolium Bromide) cytotoxicity assay. The optical density (OD) of each well was obtained and recorded at 570 nm for 24 h (t1), 48 h (t2), 72 h (t3), and 5 days (t4) using a microplate reader.
The results of Si-Zn-doped HA showed a high specific surface area with an irregular nano-sized spherical particle structure. The atomic percentage provided the ratio of calcium to phosphate; for non-doped HA, the atomic Ca/P ratio was 1.6, but for Si-Zn-doped HA, where Zn+2 Ca and Si + replaced 4 substituted P, the atomic ratio (Ca + Zn)/(P + Si) was 1.76. The average crystal size of Si-Zn-doped HA was 46 nm, while for non-doped HA it was 61 nm. both samples were non-toxic and statistically significantly less viable than the control group After 5 days, the mean cell viability of Si-Zn-doped HA (79.17 ± 2.18) was higher than that of non-doped HA (76.26 ± 1.71) (P = 0.091).
The MTT assay results showed that Si-Zn-doped HA is biocompatible. In addition, it showed characteristic physiochemical properties of a large surface area with interconnected porosity.
本研究旨在评估由蛋壳合成并双掺杂Si4+和Zn2+的纳米羟基磷灰石(N-HA)的形态、化学和生物相容性特性。
在本研究中,采用湿化学沉淀法从鸡蛋壳中合成N-HA,并掺杂Si4+和Zn2+。使用场发射扫描电子显微镜(FE-SEM)、能量色散X射线(EDX)分析和X射线衍射(XRD)分析进行物理评估。使用谢乐方程计算晶体尺寸。使用MTT(3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐)细胞毒性试验在体外研究细胞毒性。使用酶标仪在570nm处获取并记录每个孔在24小时(t1)、48小时(t2)、72小时(t3)和5天(t4)的光密度(OD)。
Si-Zn掺杂HA的结果显示出具有不规则纳米尺寸球形颗粒结构的高比表面积。原子百分比提供了钙与磷的比例;对于未掺杂的HA,原子Ca/P比为1.6,但对于Si-Zn掺杂的HA,其中Zn+2 Ca和Si +取代了4个取代的P,原子比(Ca + Zn)/(P + Si)为1.76。Si-Zn掺杂HA的平均晶体尺寸为46nm,而未掺杂HA的平均晶体尺寸为61nm。两个样品均无毒且在统计学上比对照组的活力显著更低。5天后,Si-Zn掺杂HA的平均细胞活力(79.17±2.18)高于未掺杂HA的平均细胞活力(76.26±1.71)(P = 0.091)。
MTT试验结果表明Si-Zn掺杂HA具有生物相容性。此外,它显示出具有相互连通孔隙的大表面积的特征物理化学性质。