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Retrodifferentiation--a mechanism for cellular regeneration?

机译:逆分化-细胞再生的机制吗?

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Cellular differentiation can be characterized by the acquisition of specified properties during several steps of development whereby the original stem- or precursor-like populations can finally obtain a certain phenotype with highly specific cell functions. The continuing maturation process can be paralleled by progressively reduced proliferative capacity in various cell types functioning as postmitotic tissues. Conversely, other cell populations (e.g., distinct immune cells) may carry out their specific function upon stimulation of proliferation. While these differentiated phenotypes perform their appropriate specific duties throughout the functioning organism, nature may provide an interesting alternative within this concept of life: sometimes, differentiation steps appear to be reversible. Thus, retrograde differentiation--also termed retrodifferentiation--and accordingly rejuvenation may occur when differentiated cells lose their specific properties acquired during previous steps of maturation. Consequently, retrodifferentiation and rejuvenation could provide enormous potential for tissue repair and cell renewal; however, regulatory dysfunctions within these retrograde developments may also involve the risk of tumor promotion.
机译:细胞分化的特征可以是在几个发育步骤中获得特定的特性,从而原始的茎样或前体样群体最终可以得到具有高度特异性细胞功能的某种表型。持续的成熟过程可以通过逐渐减少有丝分裂后组织功能的各种细胞中的增殖能力来实现。相反,其他细胞群体(例如,不同的免疫细胞)可以在刺激增殖后执行其特定功能。尽管这些分化的表型在整个功能有机体中履行其适当的特定职责,但自然可能在这种生命概念内提供了一种有趣的替代方法:有时,分化步骤似乎是可逆的。因此,当分化的细胞失去在先前的成熟步骤中获得的特定特性时,可能会发生逆行分化(也称为逆分化),因此可能会发生年轻化。因此,反分化和复兴可以为组织修复和细胞更新提供巨大的潜力。然而,这些逆行发展过程中的调节功能障碍也可能涉及促进肿瘤的风险。

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