Deasy Bridget M, Lu Aiping, Tebbets Jessica C, Feduska Joseph M, Schugar Rebecca C, Pollett Jonathan B, Sun Bin, Urish Kenneth L, Gharaibeh Burhan M, Cao Baohong, Rubin Robert T, Huard Johnny
Department of Bioengineering, Stem Cell Research Center, Children's Hospital of Pittsburgh, University of Pittsburgh Medical Center, Pittsburgh, PA 15260, USA.
J Cell Biol. 2007 Apr 9;177(1):73-86. doi: 10.1083/jcb.200612094.
We have shown that muscle-derived stem cells (MDSCs) transplanted into dystrophic (mdx) mice efficiently regenerate skeletal muscle. However, MDSC populations exhibit heterogeneity in marker profiles and variability in regeneration abilities. We show here that cell sex is a variable that considerably influences MDSCs' regeneration abilities. We found that the female MDSCs (F-MDSCs) regenerated skeletal muscle more efficiently. Despite using additional isolation techniques and cell cloning, we could not obtain a male subfraction with a regeneration capacity similar to that of their female counterparts. Rather than being directly hormonal or caused by host immune response, this difference in MDSCs' regeneration potential may arise from innate sex-related differences in the cells' stress responses. In comparison with F-MDSCs, male MDSCs have increased differentiation after exposure to oxidative stress induced by hydrogen peroxide, which may lead to in vivo donor cell depletion, and a proliferative advantage for F-MDSCs that eventually increases muscle regeneration. These findings should persuade researchers to report cell sex, which is a largely unexplored variable, and consider the implications of relying on cells of one sex.
我们已经证明,移植到营养不良(mdx)小鼠体内的肌肉衍生干细胞(MDSCs)能够有效地再生骨骼肌。然而,MDSC群体在标志物谱方面表现出异质性,并且在再生能力方面存在变异性。我们在此表明,细胞性别是一个对MDSCs再生能力有显著影响的变量。我们发现雌性MDSCs(F-MDSCs)能更有效地再生骨骼肌。尽管使用了额外的分离技术和细胞克隆方法,我们仍无法获得具有与其雌性对应物相似再生能力的雄性亚群。MDSCs再生潜力的这种差异并非直接由激素或宿主免疫反应引起,可能源于细胞应激反应中固有的性别相关差异。与F-MDSCs相比,雄性MDSCs在暴露于过氧化氢诱导的氧化应激后分化增加,这可能导致体内供体细胞耗竭,而F-MDSCs具有增殖优势,最终促进肌肉再生。这些发现应促使研究人员报告细胞性别(这在很大程度上是一个未被充分探索的变量),并考虑依赖单一性别的细胞所带来的影响。