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Optimization, characterization and evaluation of ZnO/polyvinylidene fluoride nanocomposites for orthopedic applications: improved antibacterial ability and promoted osteoblast growth

机译:锆/聚偏二氟乙烯纳米复合材料对整形外科应用的优化,表征和评价:提高抗菌能力和促进成骨细胞生长

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Herein, electrospun zinc oxide nanoparticle/poly (vinylidene fluoride) (ZnONP/PVDF) composite fiber membranes were designed, fabricated, and tested for improved orthopedic applications. A single factor screening study was conducted to determine the optimal ZnONP/PVDF formulation based on osteoblast (bone forming cells) proliferation and antibacterial properties. Further, ZnONP/PVDF materials were characterized for their morphology, crystallinity, roughness, piezoelectric properties, and chemistry to understand such cell results. The optimal concentration of high molecular weight PVDF (18%, w/v) and a low concentration of ZnONPs (1?mg/ml) were identified for electrospinning at room temperature in order to inhibit bacterial colonization (without resorting to antibiotic use) and promote osteoblast proliferation. Compared to no ZnO/PVDF scaffold without Piezo-excited group,the study showed that on the 1?mg/ml ZnO/PVDF scaffolds with piezo-excitation, the density of SA and E.coli decreased by 68% and 56%.The density of osteoblasts doubled within three days(compared to the control). In summary, ZnONP/PVDF composite fiber membranes were formulated by electrospinning showing an exceptional ability to eliminate bacteria colonization while at the same time promote osteoblast functions and, thus, they should be further studied for a wide range of orthopedic applications.
机译:这里,设计,制造,制造,制造和测试耐电纺氧化锌纳米颗粒/聚(偏二氟乙烯)(ZnONP / PVDF)复合纤维膜。进行单一因素筛选研究以确定基于成骨细胞(骨形成细胞)增殖和抗菌性质的最佳ZnONP / PVDF制剂。此外,ZnONP / PVDF材料的特征在于它们的形态,结晶度,粗糙度,压电性能和化学来理解这种细胞结果。在室温下鉴定高分子量PVDF(18%,W / v)和低浓度的ZnOnps(1·mg / ml)的最佳浓度,以抑制细菌殖民(不诉诸抗生素使用)和促进成骨细胞增殖。与没有压电兴奋的组的ZnO / PVDF支架相比,该研究表明,在1?Mg / ml ZnO / PVDF支架上,具有压电激发,SA和E.COLI的密度降低了68%和56%。成骨细胞的密度在三天内加倍(与对照相比)。总之,通过静电纺丝制备ZnOnP / PVDF复合纤维膜,显示出消除细菌定植的特殊能力,同时促进成骨细胞功能,因此,应进一步研究各种整形外科应用。

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