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在聚氨酯泡沫的孔隙中体外重建三维小鼠造血微环境。

In vitro reconstruction of a three-dimensional mouse hematopoietic microenvironment in the pore of polyurethane foam.

机构信息

Department of Chemical Engineering, Faculty of Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka, Japan,

出版信息

Cytotechnology. 2010 Dec;62(6):531-7. doi: 10.1007/s10616-010-9302-0. Epub 2010 Sep 26.

Abstract

Hematopoietic stem cells exist in specific niches in the bone marrow, and generate either more stem cells or differentiated hematopoietic progeny. In such microenvironments, cell-cell and cell-matrix interactions are as important as soluble factors such as cytokines. To provide a similar environment for in vitro studies, a three-dimensional culture technique is necessary. In this manuscript, we report the development of a three-dimensional culture system for murine bone marrow mononuclear cells (mBMMNCs) using polyurethane foam (PUF) as a scaffold. The mBMMNCs were inoculated into two kinds of PUF disks with different surface properties, and cultured without exogenous growth factors. After seeding the inside of the PUF pores with mBMMNCs, PUF disks were capable of supporting adherent cell growth and continuous cell production for up to 90 days. On days 21-24, most nonadherent cells were CD45 positive, and some of the cells were of the erythroid type. From comparisons of the cell growth in each PUF material, the mBMMNC culture in PUF-W1 produced more cells than the PUF-R4 culture. However, the mBMMNC culture in PUF-W1 had no advantages over PUF-R4 with regard to the maintenance of immature hematopoietic cells. The results of scanning electron microscopy and colony-forming assays confirmed the value of the different three dimensional cultures.

摘要

造血干细胞存在于骨髓的特定龛位中,它们可以生成更多的干细胞或分化的造血祖细胞。在这样的微环境中,细胞-细胞和细胞-基质相互作用与细胞因子等可溶性因子同样重要。为了在体外研究中提供类似的环境,需要使用三维培养技术。在本手稿中,我们报告了一种使用聚氨酯泡沫(PUF)作为支架的用于培养鼠骨髓单核细胞(mBMMNC)的三维培养系统的开发。将 mBMMNC 接种到两种具有不同表面特性的 PUF 盘上,并在没有外源性生长因子的情况下进行培养。在 PUF 孔内接种 mBMMNC 后,PUF 盘能够支持贴壁细胞生长和连续细胞生成,最长可达 90 天。在第 21-24 天,大多数非贴壁细胞为 CD45 阳性,并且一些细胞为红细胞类型。从每种 PUF 材料中的细胞生长比较来看,在 PUF-W1 中培养的 mBMMNC 比在 PUF-R4 中培养的细胞产生更多。然而,在维持未成熟造血细胞方面,mBMMNC 在 PUF-W1 中的培养并没有比在 PUF-R4 中培养更具优势。扫描电子显微镜和集落形成测定的结果证实了不同三维培养的价值。

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