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静息膜电位的持续去极化调节肌肉祖细胞的生长并维持体外干细胞特性。

Sustained Depolarization of the Resting Membrane Potential Regulates Muscle Progenitor Cell Growth and Maintains Stem Cell Properties In Vitro.

机构信息

Wake Forest Institute for Regenerative Medicine, Winston-Salem, NC, USA.

Wake Forest School of Medicine, Winston-Salem, NC, USA.

出版信息

Stem Cell Rev Rep. 2016 Dec;12(6):634-644. doi: 10.1007/s12015-016-9687-z.

Abstract

It is important to maintain the myogenic properties of muscle progenitor cells (MPCs) during in vitro expansion for stem cell therapies and tissue engineering applications. Controlling cell fate for biomedical interventions will require insight on all aspects that influence cellular properties. The resting membrane potential (Vmem) has proven to be a key parameter involved in cell proliferation, migration and differentiation. This current work is focused on elucidating the impact of sustained depolarization on MPC growth and differentiation in vitro. Cultures were treated with either potassium gluconate or the sodium-potassium pump blocker ouabain and evaluated for proliferation, DNA content using propidum iodide staining, and differentiation. Cell proliferation measurements showed a modest stimulatory effect at certain concentration ranges for each agent, but higher concentrations of potassium gluconate strongly inhibited growth in a dose dependent manner. Cell cycle analysis with flow cytometry demonstrated an increase in the number of cells in S phase, but increasing concentrations of potassium gluconate arrested cells at G. Immunostaining, Western blot analysis and light microscopy revealed that potassium gluconate exposure delayed cell fusion and maintained a higher population of cells expressing the muscle stem cell marker Pax7. The impairment on cell fusion was transient and myotube formation recovered after the treatments were removed. Taken together, this work suggests that transmembrane voltage gradients can be used as a powerful regulator of MPC properties in vitro. Examination of how these physiological parameters modulate cell behavior will reveal a new set of tools that can be capitalized on in tissue engineering and regenerative medicine.

摘要

维持肌肉祖细胞(MPC)在体外扩增过程中的成肌特性对于干细胞治疗和组织工程应用非常重要。控制用于生物医学干预的细胞命运将需要全面了解影响细胞特性的所有方面。静息膜电位(Vmem)已被证明是参与细胞增殖、迁移和分化的关键参数。本研究重点阐明持续去极化对体外 MPC 生长和分化的影响。用葡萄糖酸钾或钠钾泵阻滞剂哇巴因处理培养物,并通过碘化丙啶染色评估增殖、DNA 含量,以及分化情况。细胞增殖测量结果表明,每种试剂在一定浓度范围内都具有适度的刺激作用,但葡萄糖酸钾的高浓度强烈地以剂量依赖的方式抑制生长。流式细胞术的细胞周期分析显示 S 期细胞数量增加,但葡萄糖酸钾浓度的增加使细胞在 G 期停滞。免疫染色、Western blot 分析和荧光显微镜观察表明,葡萄糖酸钾暴露延迟了细胞融合,并维持了更高比例表达肌肉干细胞标志物 Pax7 的细胞。细胞融合的损伤是短暂的,并且在去除处理后肌管形成得到恢复。总之,这项工作表明,跨膜电压梯度可用作体外 MPC 特性的强大调节剂。研究这些生理参数如何调节细胞行为将揭示一组新的工具,可用于组织工程和再生医学。

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