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首页> 外文期刊>Molecules >An Interpenetrating Alginate/Gelatin Network for Three-Dimensional (3D) Cell Cultures and Organ Bioprinting
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An Interpenetrating Alginate/Gelatin Network for Three-Dimensional (3D) Cell Cultures and Organ Bioprinting

机译:三维(3D)细胞培养物和器官生物监测的互持藻酸盐/明胶网络

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Crosslinking is an effective way to improve the physiochemical and biochemical properties of hydrogels. In this study, we describe an interpenetrating polymer network (IPN) of alginate/gelatin hydrogels (i.e., A-G-IPN) in which cells can be encapsulated for in vitro three-dimensional (3D) cultures and organ bioprinting. A double crosslinking model, i.e., using Ca2+ to crosslink alginate molecules and transglutaminase (TG) to crosslink gelatin molecules, is exploited to improve the physiochemical, such as water holding capacity, hardness and structural integrity, and biochemical properties, such as cytocompatibility, of the alginate/gelatin hydrogels. For the sake of convenience, the individual ionic (i.e., only treatment with Ca2+) or enzymatic (i.e., only treatment with TG) crosslinked alginate/gelatin hydrogels are referred as alginate-semi-IPN (i.e., A-semi-IPN) or gelatin-semi-IPN (i.e., G-semi-IPN), respectively. Tunable physiochemical and biochemical properties of the hydrogels have been obtained by changing the crosslinking sequences and polymer concentrations. Cytocompatibilities of the obtained hydrogels are evaluated through in vitro 3D cell cultures and bioprinting. The double crosslinked A-G-IPN hydrogel is a promising candidate for a wide range of biomedical applications, including bioartificial organ manufacturing, high-throughput drug screening, and pathological mechanism analyses.
机译:交联是改善水凝胶的生理化学和生化特性的有效方法。在该研究中,我们描述了藻酸盐/明胶水凝胶(即A-G-IPN)的互持聚合物网络(IPN),其中细胞可以包封用于体外三维(3D)培养物和器官生物制版物。利用双交联模型,即使用Ca2 +与交联藻酸盐分子和转谷氨酰胺酶(Tg)进行交联明胶分子,以改善生理化学物质,例如水持有能力,硬度和结构完整性,以及生物化学性质,例如细胞栓塞,藻酸盐/明胶水凝胶。为了方便起见,各种离子(即,仅用CA2 +处理)或酶(即,仅用Tg处理)交联藻酸盐/明胶水凝胶称为藻酸盐 - 半IPN(即,A-SEMI-IPN)或明胶 - 半IPN(即G-SEMI-IPN)。通过改变交联序列和聚合物浓度来获得水凝胶的可调谐物理和生化性质。通过体外3D细胞培养物和生物印刷评估所得水凝胶的细胞胶质组分。双交联A-G-IPN水凝胶是广泛的生物医学应用的有希望的候选者,包括生物人工制造,高通量药物筛选和病理机制分析。

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