Elloumi Hannachi Imen, Itoga Kazuyoshi, Kumashiro Yoshikazu, Kobayashi Jun, Yamato Masayuki, Okano Teruo
Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo 162-8666, Japan.
Biomaterials. 2009 Oct;30(29):5427-32. doi: 10.1016/j.biomaterials.2009.06.033. Epub 2009 Jul 16.
The purpose of the present study is to develop a novel method for the fabrication of transferable micropatterned cell sheets for tissue engineering. To achieve this development, microcontact printing of fibronectin on commercially available temperature-responsive dishes was employed. Primary rat hepatocytes were seeded on the dish surfaces printed with fibronectin. Under serum-free conditions, hepatocytes were attached onto fibronectin domains selectively. Then, a second cell type of endothelial cells was seeded in the presence of serum. Double fluorescent staining revealed that endothelial cells successfully adhered to the intervals of hepatocyte domains. Finally, all the cells were harvested as a single contiguous micropatterned cell sheet upon temperature-reduction. With a cell sheet manipulator having a gelatin layer for the support of harvested cell sheets, harvested micropatterned cell sheets were transferred to new dish surfaces. This technique would be useful for the fabrication of thick tissue constructs having a complex microarchitecture.
本研究的目的是开发一种用于组织工程的可转移微图案化细胞片制造的新方法。为实现这一目标,采用了在市售温度响应培养皿上微接触印刷纤连蛋白的方法。将原代大鼠肝细胞接种在印刷有纤连蛋白的培养皿表面。在无血清条件下,肝细胞选择性地附着在纤连蛋白区域上。然后,在有血清的情况下接种第二种细胞类型即内皮细胞。双重荧光染色显示内皮细胞成功地粘附在肝细胞区域的间隙处。最后,降温后所有细胞作为单个连续的微图案化细胞片被收获。借助具有明胶层以支撑收获的细胞片的细胞片操纵器,将收获的微图案化细胞片转移到新的培养皿表面。该技术将有助于制造具有复杂微结构的厚组织构建体。