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Morphology, Porosity, and Biodegradation of PVA/CS/PEG/HAp Nanofiber Composites as Scaffold in Bone Tissue Engineering

机译:PVA / CS / PEG / HAP纳米纤维复合材料的形态学,孔隙度和生物降解为骨组织工程中的支架

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Hydroxyapatite (HAp) is a bioceramic that can be applied for bone tissue regeneration. The hydroxyapatite scaffold has poor biodegradation. To increase the biodegradation of HAp, we composited it with PVA, Chitosan, and PEG polymers, which have faster biodegradation properties. PVA/CS/PEG/HAp composites nanofibers as a scaffold in bone tissue engineering were prepared by electro spinning. The composition of HAp varied 0, 2, 3, 4, 5, and 6%. HAp was synthesized from natural deposits and characterized using X-Ray Diffraction (XRD) to obtain phase, crystallinity, and crystal size. Surface morphology and porosity of nanofiber composites were characterized by SEM-EDX. Previous studies without the addition of PEG produced less homogeneous nanofibers. Increasing the concentration of HAp and adding PEG could increase the average diameter of the nanofiber and reduce porosity. Composite biodegradation of PVA/CS/PEG/HAp was also evaluated. Biodegradation test was carried out by immersing the sample in Krebs solution prepared for 1-4 weeks, and the fastest mass reduction occurred in HAp (0%) and decreased with increasing concentration of HAp. This nanofiber HAp/CS/PEG/HAp composite can be applied as a scaffold in bone tissue engineering.
机译:羟基磷灰石(HAP)是一种可用于骨组织再生的生物陶瓷。羟基磷灰石支架具有较差的生物降解。为了增加HAP的生物降解,我们将其与PVA,壳聚糖和PEG聚合物一起进行,具有更快的生物降解性能。通过电纺织纺丝制备PVA / CS / PEG / HAP复合材料纳米纤维作为骨组织工程中的支架。 HAP的组成变化0,2,3,4,5和6%。 Hap由天然沉积物合成,并使用X射线衍射(XRD)来表征以获得相,结晶度和晶体尺寸。通过SEM-EDX表征纳米纤维复合材料的表面形态和孔隙率。以前的研究没有添加PEG产生的均匀纳米纤维。增加HAP和添加PEG的浓度可以增加纳米纤维的平均直径并降低孔隙率。还评估了PVA / CS / PEG / HAP的复合生物降解。通过将样品浸入制备1-4周的克雷布溶液中的样品来进行生物降解试验,并且在Hap(0%)中发生最快的质量,并随着HAP浓度的增加而降低。该纳米纤维HAP / CS / PEG / HAP复合材料可作为骨组织工程中的支架应用。

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