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In vitro culture of hFOB1.19 osteoblast cells on TGF-beta 1-SF-CS three-dimensional scaffolds

机译:在TGF-beta 1-SF-CS三维支架上体外培养hFOB1.19成骨细胞

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The aim of the present study was to examine the biocompatibility of transforming growth factor-beta 1-silk fibroin-chitosan (TGF-beta 1-SF-CS) scaffolds. In order to provide an ideal scaffold for use in bone tissue engineering, TGF-beta 1 was introduced into the SF-CS scaffold in order to reconstruct a three dimensional scaffold, following which hFOB1.19 osteoblast cells were seeded onto TGF-beta 1-SF-CS and SF-CS scaffolds. On the TGF-beta 1-SF-CS and SF-CS scaffolds, the cell adhesion rate increased in a time-dependent manner. Scanning electron microscopy revealed that the cells grew actively and exhibited normal morphological features with multiple fissions, and granular and filamentous substrates were observed surrounding the cells. In addition, the cell microfilaments were closely connected with the scaffolds. The cells exhibited attached growth on the surfaces of the scaffolds, however, the growth also extended into the scaffolds. Cell Counting Kit-8 and ALP analyses revealed that TGF-beta 1 significantly promoted the growth and proliferation of the hFOB1.19 osteoblast cells in the SF-CS scaffolds, and the enhancement of osteoblast cell proliferation and activity by TGF-beta 1 occurred in a time-dependent manner. The TGF-beta 1-SF-CS composite material may offer potential as an ideal scaffold material for bone tissue engineering.
机译:本研究的目的是研究转化生长因子-β1-丝纤蛋白-壳聚糖(TGF-β1-SF-CS)支架的生物相容性。为了提供用于骨组织工程的理想支架,将TGF-beta 1引入SF-CS支架中以重建三维支架,然后将hFOB1.19成骨细胞接种到TGF-beta 1- SF-CS和SF-CS支架。在TGF-beta 1-SF-CS和SF-CS支架上,细胞粘附率以时间依赖性方式增加。扫描电子显微镜显示,细胞活跃地生长并且表现出正常的形态特征,具有多个裂变,并且在细胞周围观察到颗粒状和丝状基质。另外,细胞微丝与支架紧密连接。细胞在支架表面上表现出附着的生长,但是,该生长也延伸到支架中。 Cell Counting Kit-8和ALP分析显示,TGF-beta 1显着促进了SF-CS支架中hFOB1.19成骨细胞的生长和增殖,TGF-beta 1增强了成骨细胞的增殖和活性。与时间有关的方式。 TGF-beta 1-SF-CS复合材料可能为骨组织工程的理想支架材料提供潜力。

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