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首页> 外文期刊>Journal of biomedical materials research, Part A >Electrospun scaffolds from silk fibroin and their cellular compatibility
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Electrospun scaffolds from silk fibroin and their cellular compatibility

机译:丝素蛋白的电纺支架及其细胞相容性

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Electrospinning offers an attractive opportunity for producing silk fibroin (SF) nano/micro fibrous scaffolds with potential for tissue regeneration and repair. Electrospun scaffolds of silk fibroin were fabricated as a biomimetic scaffold for tissue engineering. The morphology of the electrospun scaffolds was investigated with SEM and AFM. The SEM images indicated that electrospun SF fibers were ribbon-shaped and the average width increased with increasing SF concentrations. The AFM images revealed that, after treated with methanol, there was a groove on the surface of fiber, which is conducive to cell attachment. The structure of electrospun SF fibers was characterized by NMR, WAXD, and DSC. The results displayed that SF in electrospun fibers was present in a random coil conformation, SF conformation transformed from random coil to b-sheet when treated with methanol. Cell attachment and proliferation studies with pig iliac endothelial cells (PIECs) demonstrated that electrospun SF scaffolds significantly promoted cell attachment and proliferation in comparison with cast SF films. These results suggest electrospun SF scaffolds may be potential candidates for cardiovascular tissue engineering.
机译:电纺为生产具有组织再生和修复潜力的丝素蛋白(SF)纳米/微纤维支架提供了诱人的机会。丝素蛋白的静电纺丝支架被制造为用于组织工程的仿生支架。用SEM和AFM研究了电纺支架的形态。 SEM图像表明,电纺SF纤维呈带状,平均宽度随SF浓度的增加而增加。原子力显微镜图像显示,用甲醇处理后,纤维表面有一个沟槽,这有利于细胞附着。通过NMR,WAXD和DSC对静电纺SF纤维的结构进行了表征。结果表明,电纺纤维中的SF以无规卷曲构象存在,当用甲醇处理时,SF构象从无规卷曲转变为b-片。猪内皮细胞(PIECs)的细胞附着和增殖研究表明,与流延SF膜相比,电纺SF支架显着促进了细胞附着和增殖。这些结果表明,静电纺丝SF支架可能是心血管组织工程的潜在候选者。

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