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用于生物绘图的藻酸盐-明胶交联水凝胶的评估。

Evaluation of an alginate-gelatine crosslinked hydrogel for bioplotting.

作者信息

Zehnder Tobias, Sarker Bapi, Boccaccini Aldo R, Detsch Rainer

机构信息

Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Cauerstr. 6, D-91058 Erlangen, Germany.

出版信息

Biofabrication. 2015 Apr 8;7(2):025001. doi: 10.1088/1758-5090/7/2/025001.

Abstract

Using additive manufacturing to create hydrogel scaffolds which incorporate homogeneously distributed, immobilized cells in the context of biofabrication approaches represents an emerging and expanding field in tissue engineering. Applying hydrogels for additive manufacturing must consider the material processing properties as well as their influence on the immobilized cells. In this work alginate-dialdehyde (ADA), a partially oxidized alginate, was used as a basic material to improve the physico-chemical properties of the hydrogel for cell immobilization. At first, the processing ability of the gel using a bioplotter and the compatibility of the process with MG-63 osteoblast like cells were investigated. The metabolic and mitochondrial activities increased at the beginning of the incubation period and they balanced at a relatively high level after 14-28 days of incubation. During this incubation period the release of vascular endothelial growth factor-A also increased. After 28 days of incubation the cell morphology showed a spreading morphology and cells were seen to move out of the scaffold struts covering the whole scaffold structure. The reproducible processing capability of alginate-gelatine (ADA-GEL) and the compatibility with MG-63 cells were proven, thus the ADA-GEL material is highlighted as a promising matrix for applications in biofabrication.

摘要

在生物制造方法的背景下,利用增材制造来创建包含均匀分布、固定化细胞的水凝胶支架是组织工程中一个新兴且不断发展的领域。将水凝胶应用于增材制造时,必须考虑材料的加工特性及其对固定化细胞的影响。在这项工作中,部分氧化的海藻酸盐——海藻酸二醛(ADA)被用作基础材料,以改善用于细胞固定化的水凝胶的物理化学性质。首先,研究了使用生物绘图仪对该凝胶的加工能力以及该工艺与MG - 63成骨样细胞的相容性。在孵育期开始时,代谢和线粒体活性增加,在孵育14 - 28天后,它们在相对较高的水平达到平衡。在此孵育期间,血管内皮生长因子 - A的释放也增加。孵育28天后,细胞形态呈现出铺展形态,并且可以看到细胞从支架支柱中移出,覆盖了整个支架结构。海藻酸盐 - 明胶(ADA - GEL)的可重复加工能力以及与MG - 63细胞的相容性得到了证实,因此ADA - GEL材料被视为生物制造应用中有前景的基质。

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