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Stress response in mesoangioblast stem cells.

机译:中成血管细胞干细胞的应激反应。

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Stem cells are presumed to survive various stresses, since they are recruited to areas of tissue damage and regeneration, where inflammatory cytokines and cytotoxic cells may result in severe cell injury. We explored the ability of mesoangioblasts to respond to different cell stresses such as heat, heavy metals and osmotic stress, by analyzing heat shock protein (HSP)70 synthesis as a stress indicator. We found that the A6 mesoangioblast stem cells constitutively synthesize HSP70 in a heat shock transcription factor (HSF)-independent way. However, A6 respond to heat shock and cadmium treatment by synthesizing HSP70 over the constitutive expression and this synthesis is HSF1 dependent. The exposure of A6 to copper or to a hypertonic medium does neither induce HSP70 synthesis nor activation of HSF1, while a constitutive binding of constitutive heat shock element binding factor was found. Together, these data suggest that mesoangioblasts constitutively express HSP70 as an 'a priori' activation mechanism, while they maintain the ability to respond to stress stimuli.
机译:由于干细胞被募集到组织损伤和再生区域,炎性细胞因子和细胞毒性细胞可能导致严重的细胞损伤,因此干细胞被认为可以抵抗各种压力。我们通过分析热激蛋白(HSP)70合成作为应激指标,探索了中成血管细胞对不同细胞应激(如热,重金属和渗透压)的反应能力。我们发现,A6中成血管细胞干细胞以独立于热激转录因子(HSF)的方式组成性地合成HSP70。但是,A6通过在组成型表达上合成HSP70来响应热休克和镉处理,并且该合成是HSF1依赖性的。 A6暴露于铜或高渗介质既不会诱导HSP70合成也不会激活HSF1,而发现了组成性热激元件结合因子的组成性结合。总之,这些数据表明中成血管细胞将HSP70组成性表达为“先验”激活机制,同时它们保持了对应激刺激的反应能力。

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