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纳米羟基磷灰石和 β-磷酸三钙复合材料:理化性能、细胞毒性、形态学特性及体内试验。

Nanosized hydroxyapatite and β-tricalcium phosphate composite: Physico-chemical, cytotoxicity, morphological properties and in vivo trial.

机构信息

Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil.

Instituto Militar de Engenharia, Rio de Janeiro, Brazil.

出版信息

Sci Rep. 2019 Dec 20;9(1):19602. doi: 10.1038/s41598-019-56124-4.

Abstract

The objective of this work was to characterize the properties of a synthetic biomaterial composite with nanoparticles size (Blue Bone). This biomaterial is a composite recommended for dental and orthopedic grafting surgery, for guided bone regeneration, including maxillary sinus lift, fresh alveolus filling, and treatment of furcation lesions. The nano biomaterials surface area is from 30% to 50% higher than those with micro dimensions. Another advantage is that the alloplastic biomaterial has homogeneous properties due to the complete manufacturing control. The analyzed biomaterial composite was characterized by XRD, cytochemistry, scanning electron microscopy, porosimetry and in vivo experiments (animals). The results showed that the analyzed biomaterial composite has 78.76% hydroxyapatite [Ca(PO)(OH)] with monoclinic structure, 21.03% β-tricalcium phosphate [β -Ca(PO)] with trigonal structure and 0.19% of CaO with cubic structure, nanoparticles with homogeneous shapes, and nanoporosity. The in vivo experiments showed that the composite has null cytotoxicity, and the site of insertion biomaterials has a high level of vascularization and bone formation. The conclusion is that the synthetic biomaterial with Blue Bone designation presents characteristics suitable for use in grafting surgery applications.

摘要

本工作旨在表征具有纳米颗粒尺寸(Blue Bone)的合成生物材料复合材料的特性。该生物材料是一种推荐用于牙科和骨科移植手术的复合材料,用于引导骨再生,包括上颌窦提升、新鲜牙槽骨填充和分叉病变治疗。纳米生物材料的比表面积比具有微尺寸的比表面积高 30%至 50%。另一个优势是,由于完全的制造控制,同种异体生物材料具有均匀的特性。对分析的生物材料复合材料进行了 XRD、细胞化学、扫描电子显微镜、孔隙率和体内实验(动物)的表征。结果表明,分析的生物材料复合材料具有 78.76%的羟基磷灰石[Ca(PO)(OH)],具有单斜结构,21.03%的β-磷酸三钙[β-Ca(PO)],具有三角结构和 0.19%的 CaO,具有立方结构,纳米颗粒具有均匀的形状和纳米多孔性。体内实验表明,该复合材料无细胞毒性,插入生物材料的部位血管化和骨形成水平较高。结论是,具有 Blue Bone 标记的合成生物材料具有适合移植手术应用的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20d4/6925105/4c81c730d1fb/41598_2019_56124_Fig1_HTML.jpg

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