自愈水凝胶
明胶
黄原胶
生物相容性
3D生物打印
细胞包封
材料科学
生物相容性材料
三维细胞培养
组织工程
肿胀 的
生物医学工程
戊二醛
脚手架
化学
高分子化学
复合材料
细胞
色谱法
生物化学
医学
流变学
冶金
作者
Beatrice Piola,Maurizio Sabbatini,Sarah Gino,Marco Invernizzi,Filippo Renò
摘要
In recent years, bioprinting has attracted much attention as a potential tool for generating complex 3D biological constructs capable of mimicking the native tissue microenvironment and promoting physiologically relevant cell-cell and cell-matrix interactions. The aim of the present study was to develop a crosslinked 3D printable hydrogel based on biocompatible natural polymers, gelatin and xanthan gum at different percentages to be used both as a scaffold for cell growth and as a wound dressing. The CellInk Inkredible 3D printer was used for the 3D printing of hydrogels, and a glutaraldehyde solution was tested for the crosslinking process. We were able to obtain two kinds of printable hydrogels with different porosity, swelling and degradation time. Subsequently, the printed hydrogels were characterized from the point of view of biocompatibility. Our results showed that gelatin/xanthan-gum bioprinted hydrogels were biocompatible materials, as they allowed both human keratinocyte and fibroblast in vitro growth for 14 days. These two bioprintable hydrogels could be also used as a helpful dressing material.
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