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煅烧和离子取代改善纳米羟基磷灰石的理化和生物学性能,用于骨组织工程应用。

Calcination and ion substitution improve physicochemical and biological properties of nanohydroxyapatite for bone tissue engineering applications.

机构信息

Łukasiewicz Research Network, Institute of Ceramics and Building Materials, Cementowa 8 St., 31-983, Kraków, Poland.

Department of Immunology and Infectious Biology, Faculty of Biology and Environmental Protection, University of Lodz, 12/16 Banacha St., 90-237, Lodz, Poland.

出版信息

Sci Rep. 2023 Sep 16;13(1):15384. doi: 10.1038/s41598-023-42271-2.

Abstract

Nanohydroxyapatite (nanoHAP) is widely used in bone regeneration, but there is a need to enhance its properties to provide stimuli for cell commitment and osteoconduction. This study examines the effect of calcination at 1200 °C on the physicochemical and biological properties of nanoHAP doped with magnesium (Mg), strontium (Sr), and zinc (Zn). A synergistic effect of dual modification on nanoHAP biological properties was investigated. The materials were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), BET analysis, Fourier-transform spectroscopy, and thermal analysis methods. Furthermore, ion release tests and in vitro biological characterization, including cytocompatibility, reactive oxygen species production, osteoconductive potential and cell proliferation, were performed. The XRD results indicate that the ion substitution of nanoHAP has no effect on the apatite structure, and after calcination, β-tricalcium phosphate (β-TCP) is formed as an additional phase. SEM analysis showed that calcination induces the agglomeration of particles and changes in surface morphology. A decrease in the specific surface area and in the ion release rate was observed. Combining calcination and nanoHAP ion modification is beneficial for cell proliferation and osteoblast response and provide additional stimuli for cell commitment in bone regeneration.

摘要

纳米羟基磷灰石(nanoHAP)广泛应用于骨再生,但需要增强其性能以提供细胞定向和骨传导的刺激。本研究考察了在 1200°C 下煅烧掺杂镁(Mg)、锶(Sr)和锌(Zn)的纳米 HAP 的物理化学和生物学性质。研究了双重修饰对纳米 HAP 生物学性质的协同作用。采用 X 射线衍射(XRD)、扫描电子显微镜(SEM)、BET 分析、傅里叶变换光谱和热分析方法对材料进行了表征。此外,还进行了离子释放试验和体外生物学特性研究,包括细胞相容性、活性氧产生、骨传导潜能和细胞增殖。XRD 结果表明,纳米 HAP 的离子取代对磷灰石结构没有影响,煅烧后形成 β-磷酸三钙(β-TCP)作为附加相。SEM 分析表明,煅烧导致颗粒团聚和表面形貌发生变化。比表面积和离子释放速率降低。煅烧和纳米 HAP 离子修饰的结合有利于细胞增殖和成骨细胞反应,并为骨再生中的细胞定向提供额外的刺激。

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