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首页> 外文期刊>Journal de la Societe de biologie >Entre homeostasie et developpement, quelles strategies pour regenerer ?
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Entre homeostasie et developpement, quelles strategies pour regenerer ?

机译:在动态平衡与发育之间,有哪些再生策略?

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Between homeostasis and development, which strategies to regenerate? The Hydra model system is well suited to decipher the mechanisms underlying adult regeneration, specifically those that were robust enough to be maintained across evolution. After mid-gastric bissection head regeneration in Hydra relies on apoptosis-induced compensatory proliferation via the release of Wnt3 by the apoptotic interstitial cells and activation of the beta-catenin pathway in the surrounding cycling interstitial cells. As apoptosis-induced compensatory proliferation is also at work in Drosophila regenerating imaginal discs, Xenopus tadpole regenerating their tail and mice regenerating their skin or their liver, this mechanism might represent an evolutionarily-conserved way to launch a regenerative response. However after decapitation, the analysis of the activation of the canonical Wnt pathway in decapitated Hydra showed that apoptosis-induced compensatory proliferation does not take place in this context. Given that the proportion of interstitial stem cells is significantly higher in the middle part than in the upper part of the body column, this suggested that the route taken to regenerate a structure as complex as the head dramatically varies according to the homeostatic status of the tissue at the time of injury. From these observations, we propose a tri-modular model for animal regeneration where the first module or "wound healing module" is followed by a transient module named "inducing module of regeneration" that allows the recruitment of the third module named "re-development module", necessary for repatterning the missing structure. We claim that among these three modules, the inducing module of regeneration is the most drastically constrained by the homeostatic conditions of any given tissue or organ at the time of injury and therefore the most variable.
机译:在动态平衡与发育之间,应再生哪些策略? Hydra模型系统非常适合破译成人再生的机制,特别是那些足够健壮以至于在整个进化过程中都能维持的机制。胃中部二等分后,Hydra的头部再生依赖于凋亡诱导的代偿性增生,其通过凋亡间质细胞释放Wnt3以及周围循环的间质细胞激活β-catenin途径。由于果蝇诱导的视盘中凋亡诱导的补偿性增殖也在起作用,非洲爪蟾t的尾巴再生,小鼠的皮肤或肝脏再生,这种机制可能代表了一种进化上保守的方式来发起再生反应。但是,在断头之后,对断头的九头蛇中经典Wnt途径的激活进行的分析表明,在这种情况下不会发生凋亡诱导的代偿性增生。鉴于间质干细胞在中部的比例明显高于在体柱上部的比例,这表明根据头部的体内平衡状态,使复杂的头部再生结构所采用的途径大为不同在受伤时。从这些观察中,我们提出了一种用于动物再生的三模块模型,其中第一个模块或“伤口愈合模块”后面是一个名为“再生诱导模块”的瞬态模块,该模块允许募集名为“再开发”的第三个模块模块”,这是重新排列丢失的结构所必需的。我们声称,在这三个模块中,再生的诱导模块受损伤时任何给定组织或器官的稳态条件的影响最大,因此变化最大。

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