Motamedi Asma S, Mirzadeh Hamid, Hajiesmaeilbaigi Fereshteh, Bagheri-Khoulenjani Shadab, Shokrgozar Mohammad A
Biomedical Engineering Department, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Polymer and Color Engineering Department, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
J Biomed Mater Res A. 2017 Jul;105(7):1984-1993. doi: 10.1002/jbm.a.36050. Epub 2017 Apr 12.
In this study, gold nanoparticles/Polyvinylidenefluoride (PVDF) composite electrospun mat with enhanced piezoelectricity were fabricated and characterized. Gold colloidal nanoparticles (Au NPs) were prepared via laser ablation of metallic targets in liquid media. The active Q-switched Nd:YAG laser was used as an irradiation source. Then, PVDF was dissolved in Au NPs colloidal solution at 30% wt for the synthesis of Au NPs/PVDF composite nanofibers by electrospinning. The optical absorbance spectra of Au NPS and the polymeric solutions were obtained by the UV-Visible spectroscopy. Moreover, the morphology of Au NPS, nanostructures of fibers and diameter size distribution of nanofibers were analyzed by Scanning Electron Microscopy, Field Emission Scanning Electron Microscopy, and Transmitted Electron Microscopy methods. The crystallinity and piezoelectricity of PVDF and Au NPs/PVDF composite nanofibers mats were measured by X-Ray Diffraction and Fourier Transform Infrared methods. Subsequently, in vitro cytocompatibility was evaluated by MTT assay and the attachment and morphology of PC-12 cells cultured on scaffolds were studied. It was found that laser ablated Au NPs can be used in electrospun nanofibers of PVDF with adequate structural properties and increase piezoelectricity of nanofibers which might be suitable for applying as nerve tissue engineering scaffolds. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 1984-1993, 2017.
在本研究中,制备并表征了具有增强压电性的金纳米颗粒/聚偏二氟乙烯(PVDF)复合电纺垫。通过在液体介质中激光烧蚀金属靶材制备金胶体纳米颗粒(Au NPs)。使用主动调Q Nd:YAG激光作为辐照源。然后,将PVDF以30%重量比溶解在Au NPs胶体溶液中,通过电纺丝合成Au NPs/PVDF复合纳米纤维。通过紫外可见光谱获得Au NPs和聚合物溶液的吸光光谱。此外,通过扫描电子显微镜、场发射扫描电子显微镜和透射电子显微镜方法分析Au NPs的形态、纤维的纳米结构和纳米纤维的直径尺寸分布。通过X射线衍射和傅里叶变换红外方法测量PVDF和Au NPs/PVDF复合纳米纤维垫的结晶度和压电性。随后,通过MTT法评估体外细胞相容性,并研究在支架上培养的PC-12细胞的附着和形态。发现激光烧蚀的Au NPs可用于具有适当结构性能的PVDF电纺纳米纤维中,并增加纳米纤维的压电性,这可能适用于作为神经组织工程支架。© 2016威利期刊公司。《生物医学材料研究杂志》A部分:105A: 1984 - 1993,2017。