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首页> 外文期刊>Journal of Materials Science >Tuning the mechanical, microstructural, and cell adhesion properties of electrospun epsilon-polycaprolactone microfibers by doping selenium-containing carbonated hydroxyapatite as a reinforcing agent with magnesium ions
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Tuning the mechanical, microstructural, and cell adhesion properties of electrospun epsilon-polycaprolactone microfibers by doping selenium-containing carbonated hydroxyapatite as a reinforcing agent with magnesium ions

机译:通过用镁离子掺杂含硒的碳酸羟基磷灰石作为掺杂硒碳酸盐羟基磷灰石的机械,微观结构和细胞粘附性能。用镁离子掺杂

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The flexible lattice of hydroxyapatite (HAP) allows for doping with ions widely varying in size and charge and these ions can impart a range of properties that could be harnessed for high technology applications. However, incorporation of combinations of ions, each of which endows HAP with different properties, has rarely been explored, let alone in combination with polymers. Carbonated hydroxyapatite (CHAP) dually doped with magnesium and selenite ions (Mg-Se-CHAP) was synthesized at different contents of the Mg2+ dopant and integrated within electrospun epsilon-polycaprolactone (PCL) microfibers. The formula MgxCa represented the ceramic component of Mg-Se-CHAP/PCL fibers, whose properties were studied for different values of the stoichiometric parameter x in the 0.0 <= x <= 0.5 range. The structural investigation indicated that the lattice parameter a decreased with the addition of Mg2+ from x = 0 to x = 0.3, at which point it reached its minimal value of 9.414 angstrom, while the lattice parameter c increased with the addition of Mg2+ from x = 0 to x = 0.3, at which point it reached its maximal value of 7.050 angstrom. The morphological properties depended strongly on the Mg2+ content, as the fibrous scaffolds became more networked, rougher on the surface, and less porous with the addition of Mg2+. All of these surface properties affected the human fibroblastic HFB4 cell response to these materials. While the cell viability tests indicated a perfectly safe response toward the cells after 3 days of exposure, the cell adhesion, and proliferation improved upon the addition of Mg2+ to the Se-CHAP phase, and infiltration into surface pores varied, again as a function of the Mg2+ content. The mechanical properties were also strongly affected by the Mg2+ concentration, with tensile strength, fracture toughness and elastic modulus all recording their highest values for the x = 0.2 composition, typically being a dozen times higher than the values recorded for the Mg2+-fr
机译:柔性羟基磷灰石(HAP)允许掺杂各大变化的尺寸和电荷,并且这些离子可以赋予一系列可以利用高科技应用的性能。然而,掺入离子的组合,每种各自赋予不同性质的HAP,很少被探索,更不用说与聚合物组合。在MG2 +掺杂剂的不同含量下合成碳酸羟基磷灰石(CHAP)用镁和硒离子(Mg-Se-Chap)合成,并集成在Electrom epsilon-polycaprolactone(PCL)微纤维内。式MGXCA表示Mg-Se-Chap / PCL纤维的陶瓷组分,其在0.0 <= x <= 0.5范围内的化学计量参数X的不同值研究其性质。结构调查表明,晶格参数A从x = 0到x = 0.3的加入mg2 +减少,此时它达到其最小值为9.414埃,而晶格参数c随来自x =的mg2 +增加而增加。 0到x = 0.3,此时它达到其最大值为7.050埃。形态学性能强烈依赖于Mg2 +含量,因为纤维支架变得更加联系,表面粗糙,并且在添加Mg2 +的情况下较少。所有这些表面性质影响了对这些材料的人的成纤维细胞HFB4细胞反应。虽然细胞活力试验表明在暴露3天后对细胞进行完全安全的反应,但在加入Mg2 +到Se-Chap阶段时,细胞粘附和增殖改善,并且浸入表面孔隙变化,再次作为一个函数mg2 +内容。机械性能也受Mg2 +浓度的强烈影响,具有拉伸强度,断裂韧性和弹性模量,所有记录它们的x = 0.2组合物的最高值,通常比为Mg2 + -FR记录的值高十几倍

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