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Selenium-Enriched Brushite: A Novel Biomaterial for Potential Use in Bone Tissue Engineering

机译:富硒透钙磷石:一种新型的生物材料,可用于骨组织工程

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摘要

In this study, a novel biomaterial, i.e., brushite containing 0.67 wt% of selenium (Se-Bru) was synthesized via a wet precipitation method. Pure, unsubstituted brushite (Bru) was synthesized via the same method and used as a reference material. Different techniques of instrumental analysis were applied to investigate and compare physicochemical properties of both materials. Fourier-Transform Infrared Spectroscopy confirmed the chemical identity of both materials. Scanning Electron Microscopy (SEM) was used to study the morphology and indicated that both samples (Bru and Se-Bru) consisted of plate-like microcrystals. Powder X-ray Diffraction (PXRD) showed that Bru, as well as Se-Bru were crystallographically homogenous. What is more, the data obtained from PXRD studies revealed that the substitution of selenite ions into the crystal structure of the material had clearly affected its lattice parameters. The incorporation of selenium was also confirmed by solid-state 1H→31P CP MAS kinetics experiments. Additionally, studies on the release kinetics of the elements forming Se-Bru and preliminary cytotoxicity tests were conducted. This preliminary research will favor a better understanding of ionic substitution in calcium phosphates and may be a starting point for the development of selenium-doped brushite cements for potential use in bone tissue impairments treatment.
机译:在这项研究中,通过湿式沉淀法合成了一种新型的生物材料,即含有0.67 wt%的硒(Se-Bru)的透钙磷石。通过相同的方法合成纯的,未取代的透钙磷石(Bru),并用作参考材料。应用了不同的仪器分析技术来研究和比较两种材料的理化性质。傅里叶变换红外光谱证实了这两种材料的化学特性。使用扫描电子显微镜(SEM)来研究形态,并表明两个样品(Bru和Se-Bru)均由板状微晶组成。粉末X射线衍射(PXRD)表明,Bru以及Se-Bru在晶体学上是同质的。此外,从PXRD研究获得的数据表明,亚硒酸根离子替代材料的晶体结构明显影响了其晶格参数。固态 1 H→ 31 P CP MAS动力学实验也证实了硒的掺入。此外,还对形成Se-Bru的元素的释放动力学和初步的细胞毒性试验进行了研究。这项初步研究将有助于更好地理解磷酸钙中的离子取代,并且可能是开发硒掺杂的透钙磷石胶粘剂的起点,该胶结剂可能用于骨组织损伤治疗。

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