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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Preparation and cytocompatibility of PLGA scaffolds with controllable fiber morphology and diameter using electrospinning method.
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Preparation and cytocompatibility of PLGA scaffolds with controllable fiber morphology and diameter using electrospinning method.

机译:采用静电纺丝法制备可控纤维形态和直径的PLGA支架的制备和细胞锁定性。

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摘要

Poly(lactide-co-glycolide) (PLGA) scaffolds prepared by the electrospinning technology were paid more attention in tissue engineering, but detailed investigation on the influence of process parameters on scaffold morphology and fiber diameters as well as distribution remains to be conducted. In the current study, PLGA concentration, electric field strength, and feeding rate were varied to prepare different PLGA scaffolds. It was shown that with the varying of the above parameters, the electrospun porous PLGA scaffolds exhibited fibrous morphology either with/out beads or bead-fiber string. The diameter of nanofibers increased with the PLGA concentration and feeding rate, whereas the electric field strength exerted only minor effects on the average diameter of the nanofibers. The cytocompatibility of the scaffold prepared from optimizing fabrication parameters was evaluated using human fibroblasts. Good cell attachment, fast proliferation rate, characteristic fibroblast morphology with homogeneous distribution was observed on the scaffold. As a whole, this study demonstrated that the fiber morphology and diameter of the electrospun PLGA scaffolds could be tailored by controlling fabrication parameters. And nanofibrous PLGA could act as a biologically preferred scaffold for fibroblasts growth with maintenance of characteristic morphology.
机译:通过静电纺丝技术制备的聚(丙交酯 - 共乙酰胺)(PLGA)支架在组织工程中得到更多关注,但详细研究了工艺参数对支架形态和纤维直径的影响以及分布仍有待进行的。在目前的研究中,改变了PLGA浓度,电场强度和进料速率以制备不同的PLGA支架。结果表明,随着上述参数的变化,电纺多孔PLGA支架具有/输出珠粒或珠纤维串具有纤维形态。纳米纤维的直径随PLGA浓度和进料速率而增加,而电场强度仅对纳米纤维的平均直径仅施加微小影响。使用人的成纤维细胞评估由优化制造参数制备的支架的细胞相容性。在支架上观察到良好的细胞附着,快速增殖率,具有均匀分布的特征成纤维细胞形态。作为一个整体,本研究证明,通过控制制造参数可以根据静电纺器PLGA支架的纤维形态和直径。纳米纤维PLGA可以作为成纤维细胞生长的生物学上优选的支架,维持特征形态。

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