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Modular bioink for 3D printing of biocompatible hydrogels: sol–gel polymerization of hybrid peptides and polymers

机译:用于生物相容性水凝胶的3D打印的模块化生物墨水:杂合肽和聚合物的溶胶-凝胶聚合

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An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft sol–gel inorganic polymerization is presented. Hybrid silylated inorganic/bioorganic blocks are mixed in biological buffer in an appropriate ratio, to yield a multicomponent bioink that can be printed as a hydrogel without using any photochemical or organic reagent. Hydrolysis and condensation of the silylated precursors occur during the printing process and result in a covalent network in which molecules are linked through siloxane bonds. The viscosity of the colloidal solution used as bioink was monitored in order to set up the optimal conditions for extrusion printing. Grid-patterned hydrogel scaffolds containing a hybrid integrin ligand were printed using a pressure-driven rapid prototyping machine. Finally, they were seeded with mesenchymal stem cells, demonstrating their suitability for cell culture. The versatility of the sol–gel process and its biocompatibility makes this approach highly promising for the preparation of tailor-made cell-laden scaffolds.
机译:介绍了一种前所未有的通用系统,该系统允许通过软溶胶-凝胶无机聚合对肽官能化水凝胶进行3D打印。将杂化的甲硅烷基化的无机/生物有机嵌段以适当的比例在生物缓冲液中混合,以产生可以以水凝胶形式印刷而不使用任何光化学或有机试剂的多组分生物墨水。甲硅烷基化前体的水解和缩合在印刷过程中发生,并导致共价网络,其中分子通过硅氧烷键连接。监测用作生物墨水的胶体溶液的粘度,以便为挤出印刷建立最佳条件。使用压力驱动的快速成型机印刷包含杂化整联蛋白配体的网格图案水凝胶支架。最后,将它们植入间充质干细胞,证明它们适用于细胞培养。溶胶-凝胶工艺的多功能性及其生物相容性使这种方法在制备定制的载有细胞的支架方面极有希望。

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