Faculty of Process and Environmental Engineering, Lodz University of Technology, 90-924 Lodz, Poland.
Molecules. 2021 Mar 31;26(7):1976. doi: 10.3390/molecules26071976.
The aim of this work was to fabricate novel bioactive composites based on chitosan and non-organic silica, reinforced with calcium β-glycerophosphate (Ca-GP), sodium β-glycerophosphate pentahydrate (Na-GP), and hydroxyapatite powder (HAp) in a range of concentrations using the sol-gel method. The effect of HAp, Na-GP, and Ca-GP contents on the mechanical properties, i.e., Young's modulus, compressive strength, and yield strain, of hybrid composites was analyzed. The microstructure of the materials obtained was visualized by SEM. Moreover, the molecular interactions according to FTIR analysis and biocompatibility of composites obtained were examined. The CS/Si/HAp/Ca-GP developed from all composites analyzed was characterized by the well-developed surface of pores of two sizes: large ones of 100 μm and many smaller pores below 10 µm, the behavior of which positively influenced cell proliferation and growth, as well as compressive strength in a range of 0.3 to 10 MPa, Young's modulus from 5.2 to 100 MPa, and volumetric shrinkage below 60%. This proved to be a promising composite for applications in tissue engineering, e.g., filling small bone defects.
本工作旨在通过溶胶-凝胶法制备新型基于壳聚糖和无定形硅的生物活性复合材料,并用不同浓度的β-甘油磷酸钙(Ca-GP)、β-甘油磷酸钠五水合物(Na-GP)和羟基磷灰石粉末(HAp)进行增强。分析了 HAp、Na-GP 和 Ca-GP 含量对混合复合材料力学性能(即杨氏模量、压缩强度和屈服应变)的影响。通过 SEM 观察了所得材料的微观结构。此外,还根据 FTIR 分析检查了复合材料的分子相互作用和生物相容性。从所有分析的复合材料中开发的 CS/Si/HAp/Ca-GP 的特点是具有两种尺寸的发达的孔表面:100μm 的大孔和许多小于 10μm 的较小孔,其行为对细胞增殖和生长以及压缩强度产生积极影响,压缩强度范围为 0.3 至 10MPa,杨氏模量为 5.2 至 100MPa,体积收缩率低于 60%。这被证明是一种有前途的复合材料,可用于组织工程,例如填充小的骨缺损。