三层颅骨骨仿生支架的建模与组织工程研究

F. Hosseinnejad, A. I. Imani Fooladi, F. Hafezi, S. M. Mafi, Afsaneh Amiri, M. Nourani
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引用次数: 5

摘要

本研究对新西兰兔顶骨进行横切,利用Imagej软件对其整体厚度、致密层厚度、海绵层厚度等参数进行形态学测量。分析了松质表的孔隙大小,建立了颅骨骨模型。基于骨修复的自然模型,以生物玻璃和明胶(BG)为主要成分,设计了一种纳米结构支架。采用层溶剂型铸造技术,结合冻干、分层等常用技术制备支架。结果表明,纳米颗粒含量为10%和30%的纳米颗粒结构与致密骨和海绵状骨相似。为了模拟天然骨的组成和结构,我们制作了三层板层支架,外层两层致密层,中间一层海绵层。评估这种支架的化学、物理和生物测试(包括细胞在支架上播种和MTT试验)检查了其促进骨修复的能力。骨支架植入兔颅骨及骨修复的x线评价。这种模拟BG支架可能是合成颅骨骨移植物的理想选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Tissue Engineering of Three Layers of Calvarial Bone as a Biomimetic Scaffold
In this Study, a New Zealand Rabbit Parietal Bone Was Cross-Sectioned, and Parameters such as Entire Thickness and the Thicknesses of the Compact and Spongy Tables Were Morphometrically Measured by Imagej Software. the Pore Size of the Cancellous Table Was Also Analysed, and a Calvarial Bone Model Was Created. Based upon a Natural Model for Bone Repair, a Nano-Structured Scaffold Was Designed Using Bioglass and Gelatin (BG) as its Main Components. the Scaffold Was Prepared Using Layer Solvent Casting Combined with Freeze-Drying, Layering Techniques, and other Commonly Used Techniques. the Fabricated BG Scaffolds Were Made with Different Percentages of Nanoparticles, and the 10% and 30% Constructions Were Found to Be Respectively Similar to Compact and Spongy Bone. we Fabricated Three Lamellar Scaffolds with Two Compact Layers on the outside and One Spongy Layer in the Middle to Mimic the Composition and Structure of Natural Bone. the Chemical, Physical, and Biological Tests (including Cell Seeding on Scaffold and MTT Assay) that Evaluated this Scaffold Examined its Capacity to Promote Bone Repair. Fabricated Scaffolds Implanted in Rabbit Calvaria and Evaluated the Bone Repair by X-Ray. this Mimetic BG Scaffold Could Be an Excellent Candidate for a Synthetic Calvarial Bone Graft.
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