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采用立体光固化成型技术制备具有合成生物材料和水凝胶的杂化支架。

Development of a hybrid scaffold with synthetic biomaterials and hydrogel using solid freeform fabrication technology.

机构信息

Department of Mechanical Engineering, POSTECH, Korea.

出版信息

Biofabrication. 2011 Sep;3(3):034102. doi: 10.1088/1758-5082/3/3/034102. Epub 2011 Jul 1.

Abstract

Natural biomaterials such as hyaluronic acid, gelatin and collagen provide excellent environments for tissue regeneration. Furthermore, gel-state natural biomaterials are advantageous for encapsulating cells and growth factors. In cell printing technology, hydrogel which contains cells was printed directly to form three-dimensional (3D) structures for tissue or organ regeneration using various types of printers. However, maintaining the 3D shape of the printed structure, which is made only of the hydrogel, is very difficult due to its weak mechanical properties. In this study, we developed a hybrid scaffold consisting of synthetic biomaterials and natural hydrogel using a multi-head deposition system, which is useful in solid freeform fabrication technology. The hydrogel was intentionally infused into the space between the lines of a synthetic biomaterial-based scaffold. The cellular efficacy of the hybrid scaffold was validated using rat primary hepatocytes and a mouse pre-osteoblast MC3T3-E1 cell line. In addition, the collagen hydrogel, which encapsulates cells, was dispensed and the viability of the cells observed. We demonstrated superior effects of the hybrid scaffold on cell adhesion and proliferation and showed the high viability of dispensed cells.

摘要

天然生物材料,如透明质酸、明胶和胶原,为组织再生提供了极好的环境。此外,凝胶状天然生物材料有利于包封细胞和生长因子。在细胞打印技术中,含有细胞的水凝胶直接打印以使用各种类型的打印机形成用于组织或器官再生的三维(3D)结构。然而,由于其机械性能较弱,仅由水凝胶制成的打印结构的 3D 形状很难维持。在这项研究中,我们使用多头沉积系统开发了一种由合成生物材料和天然水凝胶组成的混合支架,该支架在立体光固化成型技术中很有用。水凝胶被有意地注入到基于合成生物材料的支架的线之间的空间中。使用大鼠原代肝细胞和小鼠前成骨细胞 MC3T3-E1 细胞系验证了混合支架的细胞功效。此外,还分配了包封细胞的胶原水凝胶并观察了细胞的活力。我们证明了混合支架对细胞黏附和增殖具有更好的效果,并显示了分配细胞的高活力。

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