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首页> 外文期刊>Tissue Engineering Part A >Modulation of Stem Cell Shape and Fate A: The Role of Density and Seeding Protocol on Nucleus Shape and Gene Expression
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Modulation of Stem Cell Shape and Fate A: The Role of Density and Seeding Protocol on Nucleus Shape and Gene Expression

机译:干细胞形状和命运的调节A:密度和接种协议对核形状和基因表达的作用

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摘要

Mesenchymal stem cell shape and fate are intrinsic manifestations of form and function at the cellular level. We hypothesize that cell seeding density and initial seeding protocol influence stem cell shape and fate. Nucleus shape and early (within days of seeding) expression of genes typical for pre-, peri-, and postcondensation events were compared between groups of cells after seeding at or proliferating to target density (low density [LD], 16,500 cells/cm2; high density [HD], 35,000 cells/cm2; very high density [VHD], 86,500 cells/cm2). Significant differences in nuclear shape could be attributed to seeding protocol in the VHD group, where nuclei from cells that proliferated to VHD were significantly rounder than nuclei from cells seeded at target VHD. Furthermore, cells that proliferated to VHD exhibited significantly rounder nuclei than nuclei from all other cell density and seeding protocol groups. In contrast, nuclei from cells that were seeded at the VHD were flatter than nuclei from cells of all other groups. Furthermore, the significant rounding of nuclei in the cells that proliferated to VHD was accompanied by a two-, six-, and ninefold increase from baseline in Runx2, Sox9, and Aggrecan (AGC) expression, markers indicative of precondensation, peri-, and post-condensation events, respectively. None of the other groups showed significant changes in gene expression over baseline. Finally, seeding at target density results in greater overlap of cells compared to groups in which cells proliferate to target density, conferring increased thickness to multicellular culture aggregates seeded at target density. These data suggest that seeding protocols can be exploited to modulate mesenchymal stem cell shape and early gene expression typical for condensation events in development, which occur over an approximately 12-h period at E11.5 in the mouse limb bud. Follow-on studies will delineate longer-term effects of density and seeding protocol on modulation of stem cell fate and cell assembly to form tissues.
机译:间充质干细胞的形状和命运是细胞水平上形式和功能的内在表现。我们假设细胞接种密度和初始接种协议会影响干细胞的形状和命运。在接种后或增殖至目标密度(低密度[LD],16,500细胞/ cm <)下,比较细胞组之间在浓缩前,浓缩前后和浓缩后事件的典型基因的核形状和早期(接种后)表达。 sup> 2 ;高密度[HD],35,000个细胞/ cm 2 ;非常高密度[VHD],86,500个细胞/ cm 2 )。核形状的显着差异可归因于VHD组的接种方案,其中增殖至VHD的细胞核比来自靶VHD的细胞核更圆。此外,与所有其他细胞密度和接种方案组的细胞相比,增殖为VHD的细胞显示出明显更圆的细胞核。相反,在VHD处接种的细胞的细胞核比所有其他组的细胞的细胞核扁平。此外,Runx2,Sox9和Aggrecan(AGC)表达中的核显着圆化,同时其基线也分别比基线增加了2倍,6倍和9倍。冷凝后事件。其他组均未显示出超过基线的基因表达显着变化。最后,与细胞增殖至靶密度的组相比,以靶密度接种的结果导致细胞的重叠更大,从而使以靶密度接种的多细胞培养物聚集体的厚度增加。这些数据表明,可以利用播种方案来调节间充质干细胞的形状和发育中凝结事件的典型早期基因表达,这些凝结事件发生在小鼠肢芽的E11.5处大约12小时的时间内。后续研究将描述密度和接种协议对干细胞命运和细胞组装形成组织的长期影响。

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  • 来源
    《Tissue Engineering Part A》 |2008年第9期|1561-1572|共12页
  • 作者单位

    Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio.;

    Department of Mechanical & Aerospace Engineering, Case Western Reserve University, Cleveland, Ohio.;

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