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首页> 外文期刊>Journal of materials science >Biofabrication of vessel-like structures with alginate di-aldehyde-gelatin (ADA-GEL) bioink
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Biofabrication of vessel-like structures with alginate di-aldehyde-gelatin (ADA-GEL) bioink

机译:藻酸盐二醛-明胶(ADA-GEL)生物墨水对血管状结构的生物制造

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摘要

One of the key challenges in the field of blood vessel engineering is the in vitro production of small and large diameter vessels. Considering that a combination of alginate di-aldehyde and gelatin (ADA-GEL) has been successfully applied for different biofabrication approaches, the aim of this study was to exploit ADA-GEL for the fabrication of vessel structures with diameters up to 4mm. To explore plotting possibilities and to study the swelling behaviour, a library of vessel-like constructs with different diameters made from 2, 3 and 4% (w/v) alginate was created by using various hand-crafted double-needle extrusion systems. Vessel diameters were varied through changes of the double-needle core and outer diameters. A straightforward model for the production of vessel of different diameters from a variety of double-needle systems was established and vessel-constructs with diameters of up to 3.7mm could be created. It was successfully demonstrated that an artificial vessel, consisting of an outer layer of 7.5% ADA50-GEL50 and an inner core of 3% gelatin, can support the proliferation and migration of an immobilized co-culture containing fibroblast (NHDF) and endothelial (HUVEC) cells. The openness and tightness of the hollow ADA-GEL structures were further confirmed by a dye injection test. Nanoindentation was performed to determine the Young's modulus of the used materials. Cell vitality was proved after 1, 2 and 3 weeks of incubation. The results showed a nearly twofold increase of viable cells per week. Fluorescent images confirmed cell migration during the whole incubation time.[GRAPHICS].
机译:血管工程领域的关键挑战之一是小直径和大直径血管的体外生产。考虑到藻酸二醛和明胶(ADA-GEL)的组合已成功应用于不同的生物制造方法,本研究的目的是利用ADA-GEL来制造直径最大为4mm的血管结构。为了探索绘制可能性并研究溶胀行为,通过使用各种手工制作的双针挤压系统,创建了一个由2%,3%和4%(w / v)藻酸盐制成的不同直径的容器样构造物库。容器直径通过双针芯和外径的变化而变化。建立了从各种双针系统生产不同直径血管的简单模型,可以创建直径最大为3.7mm的血管结构。已成功证明,由7.5%ADA50-GEL50的外层和3%的明胶的内层组成的人造血管可以支持包含成纤维细胞(NHDF)和内皮(HUVEC)的固定化共培养物的增殖和迁移。 ) 细胞。空心ADA-GEL结构的开放性和紧密性通过染料注入测试进一步证实。进行纳米压痕以确定所用材料的杨氏模量。孵育1、2和3周后证明细胞活力。结果表明,每周存活细胞增加了近两倍。荧光图像证实了整个孵育时间内的细胞迁移。[GRAPHICS]。

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