灌注影响人骨髓间充质干细胞在三维支架中的组织发育模式。

Perfusion affects the tissue developmental patterns of human mesenchymal stem cells in 3D scaffolds.

作者信息

Zhao Feng, Grayson Warren L, Ma Teng, Irsigler Andre

机构信息

Department of Chemical and Biomedical Engineering, Florida State University, Tallahassee, Florida 32310, USA.

出版信息

J Cell Physiol. 2009 May;219(2):421-9. doi: 10.1002/jcp.21688.

Abstract

Human mesenchymal stem cells (hMSCs) developed in three-dimensional (3D) scaffolds are significantly affected by culture conditions. We hypothesized that the hydrodynamic forces generated in perfusion bioreactors significantly affected hMSC functionality in 3D scaffolds by shaping the extracellular matrix (ECM) proteins. In this study, hMSCs were grown in 3D poly(ethylene terephthalate) (PET) scaffolds in static and a parallel perfusion system under similar initial conditions for up to 35 days. Results demonstrated that even at very low media velocities (O [10(-4) cm/sec]), perfusion cultures affected the ability of hMSCs to form an organized ECM network as illustrated by the immunostaining of collagen I and laminin fibrous structure. The change in the ECM microenvironment consequently influenced the nuclear shape. The hMSCs grown at the lower surface of static culture displayed a 15.2 times higher nuclear elongation than those at the upper surface, whereas cells grown in the perfusion bioreactor displayed uniform spherical nuclei on both surfaces. The difference in ECM organization and nuclear morphology associated with gene expression and differentiation characteristics of hMSCs. The cells exhibited lower CFU-F colony forming ability and decreased expressions of stem-cell genes of Rex-1 and Oct-4, implying a less primitive stem-cell phenotype was maintained in the perfusion culture relative to the static culture conditions. The significantly higher expression level of osteonectin gene in the perfusion culture at day 28 indicated an upregulation of osteogenic ability of hMSCs. The study highlights the critical role of dynamic culture conditions on 3D hMSC construct development and properties.

摘要

在三维(3D)支架中培养的人间充质干细胞(hMSCs)会受到培养条件的显著影响。我们推测,灌注生物反应器中产生的流体动力通过塑造细胞外基质(ECM)蛋白,显著影响了3D支架中hMSC的功能。在本研究中,hMSCs在3D聚对苯二甲酸乙二酯(PET)支架中,于静态和类似初始条件下的平行灌注系统中培养长达35天。结果表明,即使在非常低的培养基流速(约[10(-4)厘米/秒])下,灌注培养也会影响hMSCs形成有组织的ECM网络的能力,这通过胶原蛋白I和层粘连蛋白纤维结构的免疫染色得以体现。ECM微环境的变化进而影响了细胞核的形状。在静态培养下表面生长的hMSCs的核伸长率比上表面的高15.2倍,而在灌注生物反应器中生长的细胞在两个表面均呈现均匀的球形细胞核。ECM组织和核形态的差异与hMSCs的基因表达和分化特征相关。这些细胞表现出较低的CFU-F集落形成能力以及干细胞基因Rex-1和Oct-4表达的降低,这意味着相对于静态培养条件,灌注培养中维持的干细胞表型不太原始。在第28天的灌注培养中骨连接蛋白基因的表达水平显著更高,表明hMSCs的成骨能力上调。该研究突出了动态培养条件对3D hMSC构建体发育和特性的关键作用。

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