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Stabilizing gelatin-based bioinks under physiological conditions by incorporation of ethylene-glycol-conjugated Fmoc-FF peptides

机译:稳定gelatin-based bioinks下生理条件的公司ethylene-glycol-conjugated Fmoc-FF肽

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摘要

Over the last decade, three-dimensional (3D) printing technologies have attracted the interest of researchers due to the possibility of fabricating tissue- and organ-like structures with similarities to the organ of interest. One of the most widely used materials for the fabrication of bioinks is gelatin (Gel) due to its excellent biocompatibility properties. However, in order to fabricate stable scaffolds under physiological conditions, the most common approach is to use gelatin methacrylate (GelMA) that allows the crosslinking and therefore the stabilization of the hydrogel through UV crosslinking. The crosslinking process can be harmful to cells thus decreasing total cell viability. To overcome the need for post-printing crosslinking, a new approach of bioink formulation was studied, incorporating the Fluorenylmethoxycarbonyl diphenylalanine (Fmoc-FF) peptide into the Gel bioink. However, although Fmoc-FF possesses excellent mechanical properties, the lack of elasticity and viscosity makes it unsuitable for 3D-printing. Here, we demonstrate that covalent conjugation of two different ethylene glycol (EG) motifs to the Fmoc-FF peptide increases the hydrophilicity and elasticity properties, which are essential for 3D-printing. This new approach for bioink formulation avoids the need for any post-printing manufacturing processes, such as chemical or UV crosslinking.
机译:在过去的十年里,三维(3 d)印刷技术已经引起了的兴趣由于的可能性的研究制作组织——和organ-like结构感兴趣的器官具有相似之处。使用最广泛的材料制造bioinks明胶(凝胶)其优良的生物相容性的属性。然而,为了制造稳定的支架在生理条件下,最常见的方法是使用明胶丙烯酸甲酯(GelMA)这允许交联,因此通过紫外线稳定的水凝胶交联。从而减少总细胞有害细胞生存能力。交联,bioink的新方法配方进行了研究,结合了Fluorenylmethoxycarbonyl diphenylalanine(Fmoc-FF)肽凝胶bioink。虽然Fmoc-FF具有优秀的机械属性,缺乏弹性和粘度使它不适合3 d打印。证明共价结合的两个不同的乙二醇(EG)的图案Fmoc-FF肽增加亲水性弹性性质,这是必不可少的3 d打印技术。制定避免了全需要任何生产过程,如化学或紫外线交联。

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