仿生磷灰石涂层对二氧化钛支架生物行为的影响

IF 4.9 3区 计算机科学 Q1 ENGINEERING, MULTIDISCIPLINARY Journal of Bionic Engineering Pub Date : 2024-06-28 DOI:10.1007/s42235-024-00547-x
Shima Mahtabian, Seyed Mehdi Mirhadi, Nahid Hassanzadeh Nemati, Melika Sharifi, Fariborz Tavangarian
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引用次数: 0

摘要

将支架浸泡在模拟体液(10SBF)中是一种评估其生物活性的标准化方法,它模拟了在支架表面形成磷灰石沉积的体内条件,有利于骨整合并确保其适合骨植入目的,最终有助于长期植入成功。研究了磷灰石沉积对二氧化钛支架生物活性和细胞行为的影响。将支架在 10SBF 中浸泡不同的时间,使其表面形成 HAP 层。结果表明,在二氧化钛支架上形成的羟基磷灰石膜与骨细胞外基质(ECM)的矿物成分相似。XRD 测试结果表明,在 10 纳米深度存在与骨骼相似的羟基磷灰石层。通过 BET 分析,观察到比表面积(18.913 m2g- 1)、总孔体积(0.045172 cm3g- 1(p/p0 = 0.990))和平均孔直径(9.5537 nm)均有所下降,这证实了磷灰石层的形成。研究发现,具有 HAP 涂层的二氧化钛支架能促进人骨肉瘤骨细胞(MG63)的附着和生长。看来,在将支架用于骨组织工程应用之前,将其浸泡在 10SBF 中以形成 HAP 涂层可能是促进生物活性、细胞附着和植入物固定的一个好策略。
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Influence of Biomimetic Apatite Coating on the Biobehavior of TiO2 Scaffolds

Immersion of scaffolds in Simulated Body Fluid (10SBF) is a standardized method for evaluating their bioactivity, simulating in vivo conditions where apatite deposits can be formed on the surface of scaffold, facilitating bone integration and ensuring their suitability for bone implant purposes, ultimately contributing to long-term implant success. The effect of apatite deposition on bioactivity and cell behavior of TiO2 scaffolds was studied. Scaffolds were soaked in 10SBF for different durations to form HAP layer on their surface. The results proved the development of a hydroxyapatite film resembling the mineral composition of bone Extracellular Matrix (ECM) on the TiO2 scaffolds. The XRD test findings showed the presence of hydroxyapatite layer similar to bone at the depth of 10 nm. A decrease in the specific surface area (18.913 m2g− 1), the total pore volume (0.045172 cm3g− 1 (at p/p0 = 0.990)), and the mean pore diameter (9.5537 nm), were observed by BET analysis which confirmed the formation of the apatite layer. It was found that titania scaffolds with HAP coating promoted human osteosarcoma bone cell (MG63) cell attachment and growth. It seems that immersing the scaffolds in 10SBF to form HAP coating before utilizing them for bone tissue engineering applications might be a good strategy to promote bioactivity, cell attachment, and implant fixation.

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来源期刊
Journal of Bionic Engineering
Journal of Bionic Engineering 工程技术-材料科学:生物材料
CiteScore
7.10
自引率
10.00%
发文量
162
审稿时长
10.0 months
期刊介绍: The Journal of Bionic Engineering (JBE) is a peer-reviewed journal that publishes original research papers and reviews that apply the knowledge learned from nature and biological systems to solve concrete engineering problems. The topics that JBE covers include but are not limited to: Mechanisms, kinematical mechanics and control of animal locomotion, development of mobile robots with walking (running and crawling), swimming or flying abilities inspired by animal locomotion. Structures, morphologies, composition and physical properties of natural and biomaterials; fabrication of new materials mimicking the properties and functions of natural and biomaterials. Biomedical materials, artificial organs and tissue engineering for medical applications; rehabilitation equipment and devices. Development of bioinspired computation methods and artificial intelligence for engineering applications.
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