Shimizu Kazunori, Ito Akira, Yoshida Tatsuro, Yamada Yoichi, Ueda Minoru, Honda Hiroyuki
Department of Biotechnology, School of Engineering, Nagoya University, Nagoya 4648603, Japan.
J Biomed Mater Res B Appl Biomater. 2007 Aug;82(2):471-80. doi: 10.1002/jbm.b.30752.
An in vitro reconstruction of three-dimensional (3D) tissues without the use of scaffolds may be an alternative strategy for tissue engineering. We have developed a novel tissue engineering strategy, termed magnetic force-based tissue engineering (Mag-TE), in which magnetite cationic liposomes (MCLs) with a positive charge at the liposomal surface, and magnetic force were used to construct 3D tissue without scaffolds. In this study, human mesenchymal stem cells (MSCs) magnetically labeled with MCLs were seeded onto an ultra-low attachment culture surface, and a magnet (4000 G) was placed on the reverse side. The MSCs formed multilayered sheet-like structures after a 24-h culture period. MSCs in the sheets constructed by Mag-TE maintained an in vitro ability to differentiate into osteoblasts, adipocytes, or chondrocytes after a 21-day culture period using each induction medium. Using an electromagnet, MSC sheets constructed by Mag-TE were harvested and transplanted into the bone defect in the crania of nude rats. Histological observation revealed that new bone surrounded by osteoblast-like cells was formed in the defect area 14 days after transplantation with MSC sheets, whereas no bone formation was observed in control rats without the transplant. These results indicated that Mag-TE could be used for the transplantation of MSC sheets using magnetite nanoparticles and magnetic force, providing novel methodology for bone tissue engineering.
不使用支架进行三维(3D)组织的体外重建可能是组织工程的一种替代策略。我们开发了一种新型的组织工程策略,称为基于磁力的组织工程(Mag-TE),其中脂质体表面带正电荷的磁铁矿阳离子脂质体(MCLs)和磁力被用于构建无支架的3D组织。在本研究中,用MCLs进行磁性标记的人间充质干细胞(MSCs)被接种到超低附着培养表面,并在背面放置一块磁铁(4000 G)。培养24小时后,MSCs形成了多层片状结构。使用每种诱导培养基培养21天后,通过Mag-TE构建的片中的MSCs在体外仍保持分化为成骨细胞、脂肪细胞或软骨细胞的能力。使用电磁铁,收获通过Mag-TE构建的MSC片并将其移植到裸鼠颅骨的骨缺损处。组织学观察显示,移植MSC片14天后,缺损区域形成了由成骨样细胞包围的新骨,而未移植的对照大鼠未观察到骨形成。这些结果表明,Mag-TE可用于使用磁铁矿纳米颗粒和磁力移植MSC片,为骨组织工程提供了新的方法。