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Non-bioengineered silk fibroin protein 3D scaffolds for potential biotechnological and tissue engineering applications

机译:非生物工程丝蛋白蛋白3D支架,可用于潜在的生物技术和组织工程应用

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摘要

This paper describes a new source for fabricating high-strength, non-bioengineered silk gland fibroin 3D scaffolds from Indian tropical tasar silkworm, Antheraea mylitta using SDS for dissolution. The scaffolds were fabricated by freeze drying at different prefreezing temperatures for pore size and porosity optimization. Superior mechanical properties with compressive strength in the range of 972 kPa were observed. The matrices were degraded by proteases within 28 d of incubation. Biocompatibility was assessed by feline fibroblast culture in vitro and confocal microscopy further confirmed adherence, spreading, and proliferation of primary dermal fibroblasts. Results indicate nonmulberry 3D silk gland fibroin protein as an inexpensive, high-strength, slow biodegradable, biocompatible, and alternative natural biomaterial.
机译:本文介绍了一种新的来源,该来源使用SDS进行溶出,从印度热带的塔萨尔蚕(Antheraea mylitta)制备高强度,非生物工程的丝腺纤维蛋白3D支架。通过在不同的预冷冻温度下冷冻干燥来制造支架,以优化孔径和孔隙率。观察到优异的机械性能,压缩强度在972 kPa范围内。在孵育的28天内,基质被蛋白酶降解。通过猫成纤维细胞体外培养评估了生物相容性,共聚焦显微镜进一步证实了原代皮肤成纤维细胞的粘附,扩散和增殖。结果表明,非桑树3D丝腺纤维蛋白蛋白是一种廉价,高强度,生物降解缓慢,生物相容性强的天然生物材料。

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