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Electrospun PCL/PLA/HA Based Nanofibers as Scaffold for Osteoblast-Like Cells

机译:电纺基于PCL / PLA / HA的纳米纤维作为成骨细胞样细胞的支架

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Polycaprolactone (PCL), poly (lactic acid) (PLA) and hydroxyapatite (HA) are frequently used as materials for tissue engineering. In this study, PCL/PLA/HA nanofiber mats with different weight ratio were prepared using electrospinning. Their structure and morphology were studied by FTIR and FESEM. FTIR results demonstrated that the HA particles were successfully incorporated into the PCL/PLA nanofibers. The FESEM images showed that the surface of fibers became coarser with the introduction of HA nanoparticles into PCL/PLA system. Furthermore, the addition of HA led to the decreasing of fiber diameter. The average diameters of PCL/PLA/HA nanofiber were in the range of 300-600 nm, while that of PCL/PLA was 776±15.4 nm. The effect of nanofiber composition on the osteoblast-like MC3T3-E1 cell adhesion and proliferation were investigated as the preliminary biological evaluation of the scaffold. The MC3T3-E1 cell could be attached actively on all the scaffolds. The MTT assay revealed that PCL/PLA/HA scaffold shows significantly higher cell proliferation than PCL/PLA scaffolds. After 15 days of culture, mineral particles on the surface of the cells was appeared on PCL/PLA/HA nanofibers while normal cell spreading morphology on PCL/PLA nanofibers. These results manifested that electrospun PCL/PLA/HA scaffolds could enhance bone regeneration, showing their marvelous prospect as scaffolds for bone tissue engineering.
机译:聚己内酯(PCL),聚乳酸(PLA)和羟磷灰石(HA)经常用作组织工程的材料。在这项研究中,使用静电纺丝制备了具有不同重量比的PCL / PLA / HA纳米纤维毡。通过FTIR和FESEM研究了它们的结构和形态。 FTIR结果表明HA颗粒已成功掺入PCL / PLA纳米纤维中。 FESEM图像显示,随着HA纳米颗粒引入PCL / PLA系统,纤维表面变得更粗糙。此外,HA的加入导致纤维直径的减小。 PCL / PLA / HA纳米纤维的平均直径为300-600 nm,而PCL / PLA的平均直径为776±15.4 nm。作为支架的初步生物学评估,研究了纳米纤维组合物对成骨样MC3T3-E1细胞粘附和增殖的影响。 MC3T3-E1细胞可以主动附着在所有支架上。 MTT分析显示,PCL / PLA / HA支架比PCL / PLA支架显示出明显更高的细胞增殖。培养15天后,PCL / PLA / HA纳米纤维上出现了细胞表面的矿物质颗粒,而PCL / PLA纳米纤维上则出现了正常的细胞扩散形态。这些结果表明,电纺PCL / PLA / HA支架可以增强骨再生,显示出它们作为骨组织工程支架的奇妙前景。

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