Hosseinkhani Hossein, Inatsugu Yasuyuki, Hiraoka Yosuke, Inoue Sachiko, Shimokawa Hitoyata, Tabata Yasuhiko
Department of Biomaterials, Field of Tissue Engineering, Institute for Frontier Medical Sciences, Kyoto University, Kyoto, Japan.
Tissue Eng. 2005 Sep-Oct;11(9-10):1459-75. doi: 10.1089/ten.2005.11.1459.
This article describes the development of an in vitro culture system to enhance the expression of a plasmid DNA for mesenchymal stem cells (MSCs) by a combination of plasmid DNA impregnation into three-dimensional cell scaffolds and culture methods. Gelatin was cationized by introducing spermine to the carboxyl groups for complexation with the plasmid DNA. As the MSC scaffold, poly(glycolic acid) (PGA) fiber fabrics, collagen sponges, and collagen sponges reinforced by incorporation of PGA fibers were used. A complex of cationized gelatin and plasmid DNA encoding bone morphogenetic protein 2 (BMP-2) was impregnated into the scaffolds. Plasmid DNA was released from PGA-reinforced collagen sponge for longer than from the other scaffolds. MCS were seeded into each type of scaffold and cultured by static, stirring, and perfusion methods. When MSCs were cultured in PGA-reinforced sponge, the level of BMP-2 expression was significantly enhanced by perfusion culture compared with the other culture methods, and the time of expression was prolonged. Irrespective of the culture method, the expression level was significantly higher from plasmid DNA impregnated in scaffold than by plasmid DNA in medium. The alkaline phosphatase activity and osteocalcin content of MSCs cultured in PGA-reinforced sponge by the perfusion method were significantly higher compared with those of other methods, and a significantly higher amount of plasmid DNA internalized into MSCs was observed. We conclude that a combination of plasmid DNA-impregnated PGA-reinforced sponge and the perfusion method was promising to promote in vitro gene expression for MSCs.
本文描述了一种体外培养系统的开发,该系统通过将质粒DNA浸渍到三维细胞支架中并结合培养方法,来增强间充质干细胞(MSC)中质粒DNA的表达。通过将精胺引入羧基使其阳离子化,以便与质粒DNA络合。作为MSC支架,使用了聚乙醇酸(PGA)纤维织物、胶原海绵以及通过掺入PGA纤维增强的胶原海绵。将阳离子化明胶与编码骨形态发生蛋白2(BMP-2)的质粒DNA的复合物浸渍到支架中。与其他支架相比,质粒DNA从PGA增强的胶原海绵中释放的时间更长。将MSC接种到每种类型的支架中,并通过静态、搅拌和灌注方法进行培养。当MSC在PGA增强的海绵中培养时,与其他培养方法相比,灌注培养显著提高了BMP-2的表达水平,并且延长了表达时间。无论采用何种培养方法,浸渍在支架中的质粒DNA的表达水平均显著高于培养基中的质粒DNA。与其他方法相比,通过灌注法在PGA增强的海绵中培养的MSC的碱性磷酸酶活性和骨钙素含量显著更高,并且观察到内化到MSC中的质粒DNA量显著增加。我们得出结论,质粒DNA浸渍的PGA增强海绵与灌注法相结合有望促进MSC的体外基因表达。