Takahashi Yoshitake, Tabata Yasuhiko
Tissue Engineering, Department of Biomaterials, Institute for Frontier Medical Sciences, Kyoto University, Kyoto, Japan.
Tissue Eng. 2003 Oct;9(5):931-8. doi: 10.1089/107632703322495574.
Mesenchymal stem cells (MSCs) were isolated from the bone marrow of rats and seeded into a nonwoven fabric of polyethylene terephtalate (PET) by agitation and static methods. MSC attachment was investigated in terms of the number of cells attached to the fabric, their distribution inside the fabric, and cell damage. The number of MSCs attached was greater for the agitation seeding method than for the static seeding method. The higher the rotating speed in the agitation seeding method, the greater the number of cells attached. When the cell suspension was seeded into the fabric in culture medium volumes of 50 and 200 microL per well of the culture plate or per culture tube, the best cell attachment was observed for the tube culture group at the larger volume. These cells attached more homogeneously throughout the fabric in greater numbers than was the case for the other culture groups. It is possible that agitation of the cell suspension allows cells to infiltrate uniformly inside the fabric, resulting in a homogeneous distribution of the cells in the fabric. A biochemical study revealed that neither the agitation nor static seeding method damaged cells, irrespective of the medium volume and the type of culture vessel. We conclude that the agitation seeding method is a promising method by which to formulate a homogeneous construct of fabric and MSCs.
从大鼠骨髓中分离间充质干细胞(MSCs),并通过搅拌和静置方法将其接种到聚对苯二甲酸乙二酯(PET)无纺布上。从附着在织物上的细胞数量、它们在织物内的分布以及细胞损伤方面研究了MSC的附着情况。搅拌接种法附着的MSCs数量比静置接种法多。搅拌接种法中转速越高,附着的细胞数量越多。当将细胞悬液以每孔培养板或每个培养管50微升和200微升的培养基体积接种到织物中时,在较大体积下,管培养组观察到最佳的细胞附着效果。与其他培养组相比,这些细胞以更多数量更均匀地附着在整个织物上。细胞悬液的搅拌可能使细胞均匀地渗透到织物内部,从而使细胞在织物中均匀分布。生化研究表明,无论培养基体积和培养容器类型如何,搅拌接种法和静置接种法均不会损伤细胞。我们得出结论,搅拌接种法是一种很有前景的方法,可用于构建织物和MSCs的均匀结构体。