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干细胞力学世界中的结构-功能关系A:接种方案作为控制活干细胞形状和命运的一种手段。

Structure-function relationships in the stem cell's mechanical world A: seeding protocols as a means to control shape and fate of live stem cells.

作者信息

Zimmermann Joshua A, Knothe Tate Melissa L

机构信息

Department of Biomedical Engineering, Case Western Reserve University, 2071 Martin Luther King Drive, Cleveland, OH 44106-7207, USA.

出版信息

Mol Cell Biomech. 2011 Dec;8(4):275-96.

Abstract

Shape and fate are intrinsic manifestations of form and function at the cell scale. Here we hypothesize that seeding density and protocol affect the form and function of live embryonic murine mesenchymal stem cells (MSCs) and their nuclei. First, the imperative for study of live cells was demonstrated in studies showing changes in cell nucleus shape that were attributable to fixation per se. Hence, we compared live cell and nuclear volume and shape between groups of a model MSC line (C3H10T1/2) seeded at, or proliferated from 5,000 cells/cm2 to one of three target densities to achieve targeted development contexts. Cell volume was shown to be dependent on initial seeding density whereas nucleus shape was shown to depend on developmental context but not seeding density. Both smaller cell volumes and flatter nuclei were found to correlate with increased expression of markers for mesenchymal condensation as well as chondrogenic and osteogenic differentiation but a decreased expression of pre-condensation and adipogenic markers. Considering the data presented here, both seeding density and protocol significantly alter the morphology of mesenchymal stem cells even at very early stages of cell culture. Thus, these design parameters may play a critical role in the success of tissue engineering strategies seeking to recreate condensation events. However, a better understanding of how these changes in cell volume and nucleus shape relate to the differentiation of MSCs is important for prescribing precise seeding conditions necessary for the development of the desired tissue type. In a companion study (Part B, following), we address the effect of concomitant volume and shape changing stresses on spatiotemporal distribution of the cytoskeletal proteins actin and tubulin. Taken together, these studies bring us one step closer to our ultimate goal of elucidating the dynamics of nucleus and cell shape change as tissue templates grow (cell proliferation) and specialize (cell differentiation).

摘要

形态和命运是细胞尺度上形式与功能的内在表现。在此,我们假设接种密度和培养方案会影响活的胚胎小鼠间充质干细胞(MSC)及其细胞核的形式与功能。首先,在一些研究中已证明研究活细胞的必要性,这些研究表明细胞核形状的变化可归因于固定本身。因此,我们比较了以5000个细胞/cm²接种或从该密度增殖至三种目标密度之一的模型MSC系(C3H10T1/2)各组之间的活细胞和细胞核体积及形状,以实现特定的发育环境。结果显示细胞体积取决于初始接种密度,而细胞核形状取决于发育环境而非接种密度。较小的细胞体积和平扁的细胞核均与间充质凝聚以及软骨生成和成骨分化标志物的表达增加相关,但与凝聚前和成脂标志物的表达降低相关。考虑到此处呈现的数据,即使在细胞培养的非常早期阶段,接种密度和培养方案也会显著改变间充质干细胞的形态。因此,这些设计参数可能在试图重现凝聚事件的组织工程策略的成功中发挥关键作用。然而,更好地理解细胞体积和细胞核形状的这些变化如何与MSC的分化相关,对于确定所需组织类型发育所需的精确接种条件很重要。在一项配套研究(后续的B部分)中,我们探讨了伴随体积和形状变化的应力对细胞骨架蛋白肌动蛋白和微管蛋白时空分布的影响。综上所述,这些研究使我们离阐明随着组织模板生长(细胞增殖)和特化(细胞分化)细胞核和细胞形状变化动态的最终目标又近了一步。

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