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Bioprinting three-dimensional cell-laden tissue constructs with controllable degradation

机译:可生物降解地生物打印三维细胞组织结构

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摘要

Alginate hydrogel is a popular biologically inert material that is widely used in 3D bioprinting, especially in extrusion-based printing. However, the printed cells in this hydrogel could not degrade the surrounding alginate gel matrix, causing them to remain in a poorly proliferating and non-differentiating state. Here, we report a novel study of the 3D printing of human corneal epithelial cells (HCECs)/collagen/gelatin/alginate hydrogel incubated with a medium containing sodium citrate to obtain degradation-controllable cell-laden tissue constructs. The 3D-printed hydrogel network with interconnected channels and a macroporous structure was stable and achieved high cell viability (over 90%). By altering the mole ratio of sodium citrate/sodium alginate, the degradation time of the bioprinting constructs can be controlled. Cell proliferation and specific marker protein expression results also revealed that with the help of sodium citrate degradation, the printed HCECs showed a higher proliferation rate and greater cytokeratin 3(CK3) expression, indicating that this newly developed method may help to improve the alginate bioink system for the application of 3D bioprinting in tissue engineering.
机译:藻酸盐水凝胶是一种流行的生物惰性材料,广泛用于3D生物打印,尤其是基于挤出的打印。然而,在该水凝胶中的印刷细胞不能降解周围的藻酸盐凝胶基质,导致它们保持在不良增殖和非分化状态。在这里,我们报告了人类角膜上皮细胞(HCECs)/胶原蛋白/明胶/藻酸盐水凝胶的3D打印的新型研究,该凝胶与含有柠檬酸钠的培养基一起孵育以获得可降解控制的细胞载有组织的构建体。具有互连通道和大孔结构的3D打印水凝胶网络是稳定的,并具有很高的细胞活力(超过90%)。通过改变柠檬酸钠/藻酸钠的摩尔比,可以控制生物印刷构建体的降解时间。细胞增殖和特异性标志物蛋白表达结果还表明,在柠檬酸钠降解的帮助下,印刷的HCEC显示出更高的增殖速率和更大的细胞角蛋白3(CK3)表达,表明这种新开发的方法可能有助于改善藻酸盐生物墨水系统3D生物打印在组织工程中的应用。

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