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Low O_2 tensions and the prevention of differentiation of hES cells

机译:低O_2张力和防止hES细胞分化

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Early-stage mammalian embryos develop in a low O_2 environment (hypoxia). hES cells, however, are generally cultured under an atmosphere of 21% O_2 (normoxia), under which conditions they tend to differentiate spontaneously. Such conditions may not be the most suitable, therefore, for hES cell propagation. Here we have tested two hypotheses. The first hypothesis was that hES cells would grow as well under hypoxic as under normoxic conditions. The second hypothesis was that hypoxic culture would reduce the amount of spontaneous cell differentiation that occurs in hES colonies. Both hypotheses proved to be correct. Cells proliferated as well under 3% and 5% O_2 as they did under 21% O_2, and growth was only slightly reduced at 1% O_2. The appearance of differentiated regions as assessed morphologically, biochemically (by the production of human chorionic gonadotropin and progesterone), and immunohistochemically (by the loss of stage-specific embryonic antigen-4 and Oct-4 and gain of stage-specific embryonic antigen-1 marker expression) was markedly reduced under hypoxic conditions. In addition, hES cell growth under hypoxia provided enhanced formation of embryoid bodies. Hypoxic culture would appear to be necessary to maintain full pluripotency of hES cells.
机译:早期哺乳动物胚胎在低O_2环境下(缺氧)发育。然而,hES细胞通常在21%O_2(常氧)气氛下培养,在这种条件下,它们倾向于自发分化。因此,这样的条件对于hES细胞繁殖可能不是最合适的。在这里,我们测试了两个假设。第一个假设是hES细胞在缺氧条件下和正常氧条件下的生长情况一样好。第二个假设是低氧培养将减少hES菌落中自发细胞分化的数量。两种假设都被证明是正确的。在3%和5%的O_2下细胞也增殖,在21%的O_2下细胞也增殖,而在1%的O_2下细胞的生长仅略有减少。通过形态,生化(通过产生人绒毛膜促性腺激素和孕酮)和免疫组化(通过丢失特定于阶段的胚胎抗原4和Oct-4以及获得特定于阶段的胚胎抗原1)进行形态学,生物化学评估的分化区域的出现标记物的表达在低氧条件下显着降低。另外,在低氧下hES细胞的生长提供了胚状体的增强形成。缺氧培养似乎对于维持hES细胞的全能是必要的。

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