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脂肪来源干细胞的成骨系定向是由微图案化表面上三维细胞堆积预先确定的。

Osteogenic Lineage Commitment of Adipose-Derived Stem Cells Is Predetermined by Three-Dimensional Cell Accumulation on Micropatterned Surface.

机构信息

Department of Computational Biology and Medical Sciences, Graduate School of Frontier Sciences, The University of Tokyo , Shirokanedai 4-6-1, Minato-ku, Tokyo 108-8639, Japan.

出版信息

ACS Appl Mater Interfaces. 2017 Mar 22;9(11):9339-9347. doi: 10.1021/acsami.6b15688. Epub 2017 Mar 9.

Abstract

Lineage commitment of stem cells is mainly regulated by their microenvironments, which comprise soluble growth factors, extracellular matrix, mechanical forces, and cell density. Although numerous studies have investigated stem cell response to these factors in two-dimensional (2D) culture, little is known about that in 3D culture. Here, we studied effects of 3D cell accumulation levels on the differentiation behavior of mesenchymal stem cells (MSCs) by using a micropatterned surface. After induction of 3D-cultured MSCs on the surface, their osteogenic differentiation was significantly promoted, while adipogenic differentiation was not. This differentiation behavior of densely packed MSCs in 3D culture is unlike that in 2D culture. Moreover, to determine the contributing factor of this commitment, the relationship between 3D cell accumulation levels and their differentiation potential was studied before differentiation induction. A series of MSCs with varied 3D accumulation levels were constructed on the micropatterned surface, where the accumulated MSCs were not in hypoxic environment. Interestingly, with increasing 3D accumulation levels, MSCs enhanced their osteogenic potential but repressed adipogenic potential in the gene expression level. These results suggest that preconditioned 3D microenvironments with high cell accumulation levels promote osteogenic differentiation of MSCs and their accumulation levels help in regulating MSC differentiation.

摘要

干细胞的谱系分化主要受其微环境调控,这些微环境包括可溶性生长因子、细胞外基质、机械力和细胞密度。尽管许多研究已经在二维(2D)培养中研究了干细胞对这些因素的反应,但对三维(3D)培养中的情况知之甚少。在这里,我们通过使用微图案化表面研究了 3D 细胞堆积水平对间充质干细胞(MSCs)分化行为的影响。在表面诱导 3D 培养的 MSC 后,它们的成骨分化明显增强,而脂肪生成分化没有增强。这种在 3D 培养中高密度 MSC 的分化行为与 2D 培养中的行为不同。此外,为了确定这种分化的决定因素,在诱导分化之前研究了 3D 细胞堆积水平与其分化潜能之间的关系。在微图案化表面上构建了一系列具有不同 3D 堆积水平的 MSC,其中堆积的 MSC 没有处于缺氧环境中。有趣的是,随着 3D 堆积水平的增加,MSC 在基因表达水平上增强了其成骨潜能,但抑制了脂肪生成潜能。这些结果表明,具有高细胞堆积水平的预条件 3D 微环境促进 MSC 的成骨分化,并且它们的堆积水平有助于调节 MSC 分化。

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