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首页> 外文期刊>ACS Omega >Dramatic Improvement of the Mechanical Strength of Silane-Modified Hydroxyapatite–Gelatin Composites via Processing with Cosolvent
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Dramatic Improvement of the Mechanical Strength of Silane-Modified Hydroxyapatite–Gelatin Composites via Processing with Cosolvent

机译:助溶剂处理显着提高硅烷改性羟基磷灰石-明胶复合材料的机械强度

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摘要

Bone tissue engineering (BTE) requires a sturdy biomaterial for scaffolds for restoration of large bone defects. Ideally, the scaffold should have a mechanical strength comparable to the natural bone in the implanted site. We show that adding cosolvent during the processing of our previously developed composite of hydroxyapatite–gelatin with a silane cross-linker can significantly affect its mechanical strength. When processed with tetrahydrofuran (THF) as the cosolvent, the new hydroxyapatite–gelatin composite can demonstrate almost twice the compressive strength (97 vs 195 MPa) and biaxial flexural strength (222 vs 431 MPa) of the previously developed hydroxyapatite–gelatin composite (i.e., processed without THF), respectively. We further confirm that this mechanical strength improvement is due to the improved morphology of both the enTMOS network and the composite. Furthermore, the addition of cosolvents does not appear to negatively impact the cell viability. Finally, the porous scaffold can be easily fabricated, and its compressive strength is around 11 MPa under dry conditions. All these results indicate that this new hydroxyapatite–gelatin composite is a promising material for BTE application.
机译:骨组织工程(BTE)需要坚固的生物材料用于脚手架,以修复大的骨缺损。理想地,支架应具有与植入部位的天然骨相当的机械强度。我们表明,在我们先前开发的具有硅烷交联剂的羟基磷灰石-明胶复合材料的加工过程中添加助溶剂会显着影响其机械强度。当用四氢呋喃(THF)作为助溶剂处理时,新的羟基磷灰石-明胶复合物的抗压强度(97 vs 195 MPa)和双轴弯曲强度(222 vs 431 MPa)几乎是以前开发的羟基磷灰石-明胶复合物(即,分别在没有THF的情况下处理)。我们进一步证实,这种机械强度的提高归因于enTMOS网络和复合材料的形态改善。此外,助溶剂的添加似乎不会对细胞活力产生负面影响。最后,可以容易地制造多孔支架,并且在干燥条件下其抗压强度为约11MPa。所有这些结果表明,这种新型的羟基磷灰石-明胶复合材料是BTE应用的有前途的材料。

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