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人骨髓间充质干细胞在胶原基质中的成骨分化:单轴循环拉伸应变对骨形态发生蛋白(BMP - 2)mRNA表达的影响。

Osteogenic differentiation of human mesenchymal stem cells in collagen matrices: effect of uniaxial cyclic tensile strain on bone morphogenetic protein (BMP-2) mRNA expression.

作者信息

Sumanasinghe Ruwan D, Bernacki Susan H, Loboa Elizabeth G

机构信息

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Raleigh, North Carolina 27695-7115, USA.

出版信息

Tissue Eng. 2006 Dec;12(12):3459-65. doi: 10.1089/ten.2006.12.3459.

Abstract

Human mesenchymal stem cells (hMSCs) differentiate down an osteogenic pathway with appropriate mechanical and/or chemical stimuli. This study describes the successful culture of hMSCs in 3D collagen matrices under mechanical strain. Bone marrow-derived hMSCs were seeded in linear 3D type I collagen matrices and subjected to 0%, 10%, or 12% uniaxial cyclic tensile strain at 1 Hz for 4 h/day for 7 or 14 days. Cell viability studies indicated that hMSCs remained viable throughout the culture period irrespective of the applied strain level. Real-time RT-PCR studies indicated a significant increase in BMP-2 mRNA expression levels in hMSCs strained at 10% compared to the same day unstrained controls after both 7 and 14 days. An increase in BMP-2 was also observed in hMSCs subjected to 12% strain, but the increase was significant only in the 14-day sample. This is the first report of the culture of bone marrow-derived hMSCs in 3D collagen matrices under cyclic strain, and the first demonstration that strain alone can induce osteogenic differentiation without the addition of osteogenic supplements. Induction of bone differentiation in 3D culture is a critical step in the creation of bioengineered bone constructs.

摘要

人间充质干细胞(hMSCs)在适当的机械和/或化学刺激下会沿着成骨途径分化。本研究描述了在机械应变下hMSCs在3D胶原基质中的成功培养。将骨髓来源的hMSCs接种到线性3D I型胶原基质中,并在1Hz下施加0%、10%或12%的单轴循环拉伸应变,每天4小时,持续7天或14天。细胞活力研究表明,无论施加的应变水平如何,hMSCs在整个培养期间均保持活力。实时RT-PCR研究表明,与7天和14天后未受应变的同一天对照相比,10%应变的hMSCs中BMP-2 mRNA表达水平显著增加。在12%应变的hMSCs中也观察到BMP-2增加,但仅在14天的样本中增加显著。这是关于骨髓来源的hMSCs在循环应变下在3D胶原基质中培养的首次报道,也是首次证明仅应变就能在不添加成骨补充剂的情况下诱导成骨分化。在3D培养中诱导骨分化是创建生物工程骨构建体的关键步骤。

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