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首页> 外文期刊>Materials science & engineering >Highly porous polycaprolactone scaffolds doped with calcium silicate and dicalcium phosphate dihydrate designed for bone regeneration
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Highly porous polycaprolactone scaffolds doped with calcium silicate and dicalcium phosphate dihydrate designed for bone regeneration

机译:掺有硅酸钙和二水合磷酸氢钙的高多孔性聚己内酯支架,用于骨骼再生

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摘要

Polycaprolactone (PCL), dicalcium phosphate dihydrate (DCPD) and/or calcium silicates (CaSi) have been used to prepare highly porous scaffolds by thermally induced phase separation technique (TIPS). Three experimental mineral-doped formulations were prepared (PCL-10CaSi, PCL-5CaSi-5DCPD, PCL-10CaSi-10DCPD); pure PCL scaffolds constituted the control group.Scaffolds were tested for their chemical-physical and biological properties, namely thermal properties by differential scanning calorimetry (DSC), mechanical properties by quasi-static parallel-plates compression testing, porosity by a standard water-absorption method calcium release, alkalinizing activity, surface microchemistry and micromorphology by Environmental Scanning electronic Microscopy (ESEM), apatite-forming ability in Hank Balanced Saline Solution (HBSS) by Energy Dispersive X-ray Spectroscopy (EDX) and micro Raman, and direct contact cytotoxicity.All mineral-doped scaffolds released calcium and alkalinized the soaking medium, which may favor a good biological (osteogenic) response.ESEM surface micromorphology analyses after soaking in HBSS revealed: pure PCL, PCL-10CaSi and PCL-10CaSi-10DCPD kept similar surface porosity percentages but different pore shape modifications. PCL-5CaSi5DCPD revealed a significant surface porosity increase despite calcium phosphates nucleation (p 0.05).Micro-Raman spectroscopy detected the formation of a B-type carbonated apatite (Ap) layer on the surface of PCL-10CaSi-10DCPD aged for 28 days in HBSS; a similar phase (but of lower thickness) formed also on PCL-5CaSi-5DCPD and PCL; the deposit formed on PCL-10CaSi was mainly composed of calcite.All PCL showed bulk open porosity higher than 94%; however, no relevant brittleness was observed in the materials, which retained the possibility to be handled without collapsing.The thermo-mechanical properties showed that the reinforcing and nucleating action of the inorganic fillers CaSi and DCPD improved viscoelastic properties of the scaffolds, as confirmed by the increased value of storage modulus and the slight increase in the crystallization temperature for all the biomaterials.A detrimental effect on the mechanical properties was observed in samples with the highest amount of inorganic particles (PCL-10CaSi-10DCPD).All the scaffolds showed absence of toxicity, in particular PCL-10CaSi-10DCPD.The designed scaffolds are biointeractive (release biologically relevant ions), nucleate apatite, possess high surface and internal open porosity and can be colonized by cells, creating a bone forming osteoblastic micro environment and appearing interesting materials for bone regeneration purposes.
机译:聚己内酯(PCL),磷酸二钙二水合物(DCPD)和/或硅酸钙(CaSi)已用于通过热诱导相分离技术(TIPS)制备高度多孔的支架。制备了三种实验性矿物掺杂配方(PCL-10CaSi,PCL-5CaSi-5DCPD,PCL-10CaSi-10DCPD);纯PCL脚手架为对照组。脚手架的化学物理和生物学特性进行了测试,即通过差示扫描量热法(DSC)的热性能,通过准静态平行板压缩测试的机械性能,通过标准吸水率的孔隙率扫描电子显微镜(ESEM)的方法释放钙,碱化活性,表面微观化学和微观形貌,能量色散X射线光谱(EDX)和显微拉曼光谱分析在汉克平衡盐溶液(HBSS)中形成磷灰石的能力以及直接接触细胞毒性所有矿物掺杂的支架均释放钙并碱化浸泡介质,这可能有利于良好的生物学(成骨反应).HBSS浸泡后的ESEM表面微观形态分析表明:纯PCL,PCL-10CaSi和PCL-10CaSi-10DCPD保持相似的表面孔隙率百分比,但不同的孔形变化。尽管磷酸钙成核,PCL-5CaSi5DCPD仍显示出显着的表面孔隙率增加(p <0.05)。微拉曼光谱法检测到老化28天的PCL-10CaSi-10DCPD表面形成了B型碳磷灰石(Ap)层。在HBSS中;在PCL-5CaSi-5DCPD和PCL上也形成了相似的相(但厚度较小); PCL-10CaSi上形成的沉积物主要由方解石组成。所有PCL的整体开孔率均高于94%。然而,在材料中没有观察到相关的脆性,这保留了不塌陷处理的可能性。热力学性能表明,无机填料CaSi和DCPD的增强和成核作用改善了脚手架的粘弹性,如所有生物材料的储能模量增加值和结晶温度略有增加。在无机颗粒含量最高的样品(PCL-10CaSi-10DCPD)中观察到对机械性能的有害影响。设计的支架具有生物相互作用(释放与生物相关的离子),成核的磷灰石,具有高的表面和内部开放孔隙率,并且可以被细胞定居,从而形成成骨的成骨细胞微环境,并且看起来很有趣,其毒性特别是PCL-10CaSi-10DCPD。用于骨骼再生的材料。

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