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亚微米形貌的脊和槽对骨髓间充质干细胞成骨分化的调控。

Modulation of osteogenic differentiation in hMSCs cells by submicron topographically-patterned ridges and grooves.

机构信息

Department of Surgical and Radiological Sciences, School of Veterinary Medicine, University of California Davis, Davis, CA 95616, USA.

出版信息

Biomaterials. 2012 Jan;33(1):128-36. doi: 10.1016/j.biomaterials.2011.09.058. Epub 2011 Oct 7.

Abstract

Recent studies have shown that nanoscale and submicron topographic cues modulate a menu of fundamental cell behaviors, and the use of topographic cues is an expanding area of study in tissue engineering. We used topographically-patterned substrates containing anisotropically ordered ridges and grooves to investigate the effects of topographic cues on mesenchymal stem cell morphology, proliferation, and osteogenic differentiation. We found that human mesenchymal stem cells cultured on 1400 or 4000 nm pitches showed greater elongation and alignment relative to 400 nm pitch or planar control. Cells cultured on 400 nm pitch demonstrated significant increases in RUNX2 and BGLAP expression relative to cells cultured on 1400 or 4000 nm pitch or planar control. Four-hundred nanometer pitch enhanced extracellular calcium deposition. Cells cultured in osteoinductive medium revealed combinatory effects of topography and chemical cues on 400 nm pitch as well as up-regulation of expression of ID1, a target of the BMP pathway. Our data demonstrate that a specific size scale of topographic cue promotes osteogenic differentiation with or without osteogenic agents. These data demonstrate that the integration of topographic cues may be useful for the fabrication of orthopedic implants.

摘要

最近的研究表明,纳米级和亚微米级形貌线索调节了一系列基本的细胞行为,而利用形貌线索是组织工程学中一个不断发展的研究领域。我们使用具有各向异性有序脊和槽的图案化基底来研究形貌线索对间充质干细胞形态、增殖和成骨分化的影响。我们发现,与 400nm 间距或平面对照相比,在 1400nm 或 4000nm 间距的基底上培养的人骨髓间充质干细胞表现出更大的伸长和排列。与在 1400nm 或 4000nm 间距或平面对照上培养的细胞相比,在 400nm 间距上培养的细胞显示出 RUNX2 和 BGLAP 表达的显著增加。400nm 间距促进细胞外钙沉积。在成骨诱导培养基中培养的细胞显示出形貌和化学线索在 400nm 间距上的组合效应,以及 BMP 途径靶标 ID1 的表达上调。我们的数据表明,特定大小范围的形貌线索促进成骨分化,无论是否有成骨剂。这些数据表明,形貌线索的整合可能有助于骨科植入物的制造。

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