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Regulation of dermal fibroblast dedifferentiation and redifferentiation during wound healing and limb regeneration in the Axolotl

机译:x伤口愈合和肢体再生过程中真皮成纤维细胞去分化和再分化的调控

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摘要

Adult urodeles (salamanders) are unique in their ability to regenerate complex organs perfectly. The Accessory Limb Model (ALM) in the axolotl allows for the identification of signals from the wound epidermis, nerves and dermal fibroblasts that interact to regenerate a limb. In the present study, we have used the ALM to identity the axolotl (Ambystoma mexicanum) orthologue of Twist (AmTwist), a basic helix-loop-helix transcription factor that is involved in the regeneration of the dermis during limb regeneration. AmTwist is expressed during the blastema stages in regeneration, but is inhibited by signals from the nerve during the early stages when dermal fibroblasts dedifferentiate to form blastema cells. As the dermis regenerates, AmTwist is expressed in association with the synthesis of type I collagen in the proximal region of the blastema. Exogenous bone morphogenetic protein-2 leads to an increase in AmTwist expression, and therefore may function as an endogenous regulator of AmTwist expression and dermis regeneration. The nerve appears to have a dual function in regeneration by coordinately regulating dedifferentiation and redifferentiation of dermal fibroblasts.
机译:成年尾乌贼(salamander)在完美地再生复杂器官方面具有独特的能力。 x的附件肢体模型(ALM)可以识别来自伤口表皮,神经和真皮成纤维细胞的信号,这些信号相互作用可以再生肢体。在本研究中,我们已使用ALM鉴定了扭转(AmTwist)的轴突(Ambystoma mexicanum)直系同源物,这是一种基本的螺旋-环-螺旋转录因子,参与肢体再生过程中真皮的再生。 AmTwist在再生的胚泡阶段表达,但在真皮成纤维细胞去分化形成胚泡细胞的早期,受到神经信号的抑制。随着真皮的再生,AmTwist的表达与胚泡近端区域中I型胶原蛋白的合成有关。外源性骨形态发生蛋白2导致AmTwist表达增加,因此可作为AmTwist表达和真皮再生的内源调节剂。通过协调调节真皮成纤维细胞的去分化和再分化,神经在再生中似乎具有双重功能。

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