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用于骨再生的烧结羟基磷灰石/钛酸钡纳米复合材料的物理化学、机械、介电和生物学性能。

Physicochemical, mechanical, dielectric, and biological properties of sintered hydroxyapatite/barium titanate nanocomposites for bone regeneration.

机构信息

Department of Physics and Astronomy, National Institute of Technology Rourkela, Odisha 769008, India.

School of Chemical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Republic of Korea.

出版信息

Biomed Mater. 2023 Feb 16;18(2). doi: 10.1088/1748-605X/acb8f1.

Abstract

Bone implants fabricated using nanocomposites containing hydroxyapatite (HA) and barium titanate (BT) show osteoconductive, osteoinductive, osteointegration, and piezoelectricity properties for bone regeneration applications. In our present study, HA and BT nanopowders were synthesized using high-energy ball-milling-assisted solid-state reaction with precursors of calcium carbonate and ammonium dihydrogen phosphate, and barium carbonate and titanium oxide powder mixtures, respectively. Hexagonal HA and tetragonal BT phases were formed after calcination at 700 and 1000 °C, respectively. Subsequently, hydroxyapatite/barium titanate (HA/BT) nanocomposites with different weight percentages of HA and BT were prepared by ball-milling, then compacted and sintered at two different temperatures to endow these bioceramics with better mechanical, dielectric, and biological properties for bone regeneration. Microstructure, crystal phases, and molecular structure characterizations of these sintered HA/BT nanocomposite compacts (SHBNCs) were performed using field-emission scanning electron microscopy, x-ray diffraction, and Fourier-transform infrared spectroscopy, respectively. Bulk density was evaluated using the Archimedes method. HA/BT nanocomposites with increased BT content showed enhanced dielectric properties, and the dielectric constant () value for 5HA/95BT was ∼182 at 100 Hz. Mechanical properties such as Vicker's hardness, fracture toughness, yield strength, and diametral tensile strength were also investigated. The hemolysis assay of SHBNCs exhibited hemocompatibility. The effect of these SHBNCs as implants on thecytocompatibility and cell viability of MG-63 osteoblast-like cells was assessed by MTT assay and live/dead staining, respectively. 15HA/85BT showed increased metabolic activity with a higher number of live cells than BT after the culture period. Overall, the SHBNCs can be used as orthopedic implants for bone regeneration applications.

摘要

使用含有羟基磷灰石 (HA) 和钛酸钡 (BT) 的纳米复合材料制造的骨植入物具有骨传导性、骨诱导性、骨整合性和压电性,可用于骨再生应用。在我们目前的研究中,使用高能球磨辅助固相反应用前驱体碳酸钙和磷酸二氢铵以及碳酸钡和氧化钛粉末混合物分别合成了 HA 和 BT 纳米粉末。煅烧在 700 和 1000°C 下分别形成六方相 HA 和四方相 BT。随后,通过球磨制备了具有不同 HA 和 BT 重量百分比的羟基磷灰石/钛酸钡 (HA/BT) 纳米复合材料,然后压实并在两个不同温度下烧结,以使这些生物陶瓷具有更好的机械、介电和生物性能,从而促进骨再生。使用场发射扫描电子显微镜、X 射线衍射和傅里叶变换红外光谱分别对这些烧结的 HA/BT 纳米复合材料压坯 (SHBNCs) 的微观结构、晶体相和分子结构进行了表征。使用阿基米德法评估了体密度。随着 BT 含量的增加,HA/BT 纳米复合材料表现出增强的介电性能,5HA/95BT 的介电常数 () 值在 100 Hz 时约为 182。还研究了机械性能,如维氏硬度、断裂韧性、屈服强度和直径拉伸强度。SHBNCs 的溶血试验表现出良好的血液相容性。通过 MTT 测定和死活染色分别评估了这些 SHBNCs 作为植入物对 MG-63 成骨样细胞的细胞相容性和细胞活力的影响。在培养期后,15HA/85BT 显示出更高的代谢活性,活细胞数量也高于 BT。总的来说,SHBNCs 可用作骨再生应用的骨科植入物。

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