Predoi Daniela, Iconaru Simona Liliana, Predoi Mihai Valentin, Motelica-Heino Mikael, Guegan Regis, Buton Nicolas
National Institute of Materials Physics, 405A Atomistilor Street, P.O. Box MG7, 077125 Magurele, Romania.
University Politehnica of Bucharest, BN 002, 313 Splaiul Independentei, Sector 6, 060042 Bucharest, Romania.
Nanomaterials (Basel). 2019 Apr 2;9(4):515. doi: 10.3390/nano9040515.
This study proves that the new developed zinc-doped hydroxyapatite (ZnHAp) colloids by an adapted sol-gel method can be widely used in the pharmaceutical, medical, and environmental industries. ZnHAp nanoparticles were stabilized in an aqueous solution, and their colloidal dispersions have been characterized by different techniques. Scanning Electron Microscopy (SEM) was used to get information on the morphology and composition of the investigated samples. Energy-dispersive X-ray spectroscopy (EDX) analysis confirmed the elemental compositions of ZnHAp colloidal dispersions. The homogeneous and uniform distribution of constituent elements (zinc, calcium, phosphorus, oxygen) was highlighted by the obtained elemental mapping results. The X-ray diffraction (XRD) results of the obtained samples showed a single phase corresponding to the hexagonal hydroxyapatite. The characteristic bands of the hydroxyapatite structure were also evidenced by Fourier-transform infrared spectroscopy (FTIR) analysis. For a stability assessment of the colloidal system, ζ-potential for the ZnHAp dispersions was estimated. Dynamic light scattering (DLS) was used to determine particles dispersion and hydrodynamic diameter (D). The goal of this study was to provide for the first time information on the stability of ZnHAp particles in solutions evaluated by non-destructive ultrasound-based technique. In this work, the influence of the ZnHAp colloidal solutions stability on the development of bacteria, such as () and (), was also established for the first time. The antimicrobial activity of ZnHAp solutions was strongly influenced by both the stability of the solutions and the amount of Zn.
本研究证明,通过改进的溶胶-凝胶法新开发的锌掺杂羟基磷灰石(ZnHAp)胶体可广泛应用于制药、医疗和环境行业。ZnHAp纳米颗粒在水溶液中稳定,其胶体分散体已通过不同技术进行了表征。扫描电子显微镜(SEM)用于获取有关所研究样品的形态和组成的信息。能量色散X射线光谱(EDX)分析证实了ZnHAp胶体分散体的元素组成。所得元素映射结果突出了组成元素(锌、钙、磷、氧)的均匀分布。所得样品的X射线衍射(XRD)结果显示出与六方羟基磷灰石相对应的单相。傅里叶变换红外光谱(FTIR)分析也证实了羟基磷灰石结构的特征带。为了评估胶体系统的稳定性,估计了ZnHAp分散体的ζ电位。动态光散射(DLS)用于确定颗粒分散度和流体动力学直径(D)。本研究的目的是首次提供通过基于无损超声技术评估的ZnHAp颗粒在溶液中的稳定性信息。在这项工作中,还首次确定了ZnHAp胶体溶液稳定性对诸如()和()等细菌生长的影响。ZnHAp溶液的抗菌活性受到溶液稳定性和锌含量的强烈影响。