State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Advanced Materials Laboratory, Fudan University, Shanghai 200433, China.
Biomaterials. 2012 Sep;33(26):6008-19. doi: 10.1016/j.biomaterials.2012.05.010. Epub 2012 Jun 7.
Herein we examined an adipogenic or osteogenic induction of rat bone marrow mesenchymal stem cells (MSCs) in the corresponding media and a co-induction in a 1:1 mixed medium. The cell size effect and cell-cell contact effect were employed as two demonstrations to check the similarity or difference of the effects under these two induction ways. We seeded cells on a micropatterned surface with cell-adhesive microislands on poly(ethylene glycol) hydrogels. MSCs were well localized on the microislands separated by the strong and persistent non-fouling background, which enabled the observations of individual cells of varied sizes and numbers. We made statistics of adipogenic and osteogenic differentiations of single MSCs of different sizes (170-5600 μm(2)) and also of cell clusters of different aggregation numbers (1, 2, 4 and 8 etc.) with small, medium or large cell sizes. Both sole induction and co-induction led to monotonic cell size effects: small cells favored the adipogenic differentiation, and large cells preferred to the osteogenic differentiation. The effects of cell-cell contact were, however, rather complicated: the aggregation among cells was beneficial for both adipogenic and osteogenic differentiations, as revealed from the sole inductions; but under the co-induction culture in the mixed medium, the inherent enhancement of differentiation by the cell-cell contact encountered competition between the adipogenic and osteogenic commitments. We also examined the effects of cell density, which involved both size and contact effects, and thus exhibited different behaviors under sole induction and co-induction as well. We revealed that the density effect reflected the cooperation (for adipogenic differentiation) or competition (for osteogenic differentiation) between cell size and cell-cell contact effects.
在此,我们研究了大鼠骨髓间充质干细胞(MSCs)在相应培养基中的成脂诱导和成骨诱导,以及在 1:1 混合培养基中的共诱导。我们采用细胞大小效应和细胞-细胞接触效应作为两种演示方法,来检查这两种诱导方式下效应的相似性或差异性。我们将细胞接种在具有聚乙二醇水凝胶上的细胞黏附微岛的微图案表面上。MSCs 很好地定位于由强且持久的非固着背景分离的微岛上,这使我们能够观察到不同大小和数量的单个细胞。我们对不同大小(170-5600 μm(2))的单个 MSCs 和不同聚集数(1、2、4 和 8 等)的细胞簇的成脂和成骨分化进行了统计,这些细胞簇的细胞大小较小、中等或较大。单独诱导和共诱导均导致了细胞大小效应的单调变化:小细胞有利于成脂分化,而大细胞则倾向于成骨分化。然而,细胞-细胞接触的效应却相当复杂:细胞间的聚集有利于成脂和成骨分化,这是从单独诱导中得出的;但在混合培养基中的共诱导培养中,细胞-细胞接触对分化的固有增强作用受到成脂和成骨分化之间的竞争的影响。我们还检查了细胞密度的影响,其中涉及到大小和接触效应,因此在单独诱导和共诱导下表现出不同的行为。我们揭示了密度效应反映了细胞大小和细胞-细胞接触效应之间的合作(对于成脂分化)或竞争(对于成骨分化)。