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首页> 外文期刊>Materials science & engineering >Silk particles, microfibres and nanofibres: A comparative study of their functions in 3D printing hydrogel scaffolds
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Silk particles, microfibres and nanofibres: A comparative study of their functions in 3D printing hydrogel scaffolds

机译:丝绸颗粒,超细纤维和纳米纤维:它们在3D打印水凝胶支架中的功能比较研究

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摘要

Silk, with highly crystalline structure and well-documented biocompatibility, is promising to be used as reinforcing material and build functionalized composite scaffolds. In the present study, we developed chitosan/silk composite scaffolds using silk particles, silk microfibres and nanofibres via 3D printing method. The three forms of silk fillers with varied shapes and dimensions were obtained via different processing methods and evaluated of their morphology, crystalline structure and thermal property. All silk fillers showed different degrees of improvement on printability in terms of ink rheology and printing shape fidelity. Different silk fillers led to different scaffold surface morphology and different roughness, while all reduced the contact angle compared to pure chitosan. Similar reinforcements were observed on compressive modulus, while oscillatory gel strength reinforcement was found to be positively correlated to the filler aspect ratio. Addition of silk introduced no cytotoxicity for that all scaffolds supported a steady cell growth using human fibroblasts. Meanwhile different cellular behaviours were observed on different scaffold surfaces, which can possibly intriguer specific application on soft tissue engineering.
机译:丝绸具有高度的晶体结构和良好的生物相容性,有望用作增强材料并构建功能化的复合支架。在本研究中,我们通过3D打印方法使用丝绸粒子,丝绸微纤维和纳米纤维开发了壳聚糖/丝绸复合支架。通过不同的加工方法获得了三种形状和尺寸各异的丝绸填料,并对其形态,晶体结构和热性能进行了评估。就油墨流变学和印刷形状保真度而言,所有丝绸填料在可印刷性方面均显示出不同程度的改善。不同的丝填料导致不同的支架表面形态和不同的粗糙度,而与纯壳聚糖相比,它们均降低了接触角。在压缩模量上观察到类似的增强,而发现振荡凝胶强度增强与填料的长径比正相关。加入蚕丝不会引起细胞毒性,因为所有支架都支持使用人类成纤维细胞的稳定细胞生长。同时,在不同的支架表面上观察到了不同的细胞行为,这可能会吸引软组织工程中的特定应用。

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