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首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Dicer inactivation stimulates limb regeneration ability in Xenopus laevis Xenopus laevis
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Dicer inactivation stimulates limb regeneration ability in Xenopus laevis Xenopus laevis

机译:帽子失活刺激肢体再生能力在非洲爪蟾蜍光滑的非洲爪蟾蜍光滑的

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Abstract The ontogenetic decline of regeneration capacity in the anuran amphibian Xenopus makes it an excellent model for regeneration studies. However, the cause of the regeneration ability decline is not fully understood. MicroRNAs regulate animal development and have been indicated in various regeneration situations. However, little is known about the role of microRNAs during limb regeneration in Xenopus . This study investigates the effect of Dicer, an enzyme responsible for microRNA maturation, on limb development and regeneration in Xenopus . Dicer is expressed in the developing Xenopus limbs and is up‐regulated after limb amputation during both regeneration‐competent and regeneration‐deficient stages of tadpole development. Inactivation of Dicer in early (NF stage 53) tadpole limb buds leads to shorter tibulare/fibulare formation but does not affect limb regeneration. However, in late‐stage, regeneration‐deficient tadpole limbs (NF stage 57), Dicer inactivation restores the regeneration blastema and stimulates limb regeneration. Thus, our results demonstrated that Xenopus limb regeneration can be stimulated by the inactivation of Dicer in nonregenerating tadpoles, indicating that microRNAs present in late‐stage tadpole limbs may be involved in the ontogenetic decline of limb regeneration in Xenopus .
机译:摘要再生的个体发生的下降能力在无尾类的两栖动物非洲爪蟾蜍一个优秀的模型再生研究。然而,再生能力的原因衰落并不完全理解。调节动物发展和表示在不同的再生情况。然而,鲜为人知的作用小分子核糖核酸在非洲爪蟾蜍肢体再生过程中。本研究调查的影响小礼帽,一个酶负责microRNA成熟,非洲爪蟾蜍肢体发育和再生。帽子被表达在发展中非洲爪蟾蜍截肢后四肢,是监管在主管和再生蝌蚪的再生量不足的阶段发展。阶段53)蝌蚪肢芽导致短tibulare / fibulare形成但不影响肢体再生。再生量不足蝌蚪四肢(NF阶段57),帽子失活恢复再生肢体再生芽和刺激。我们的研究结果表明,非洲爪蟾蜍肢体可以刺激的再生失活nonregenerating的帽子蝌蚪,表明小分子核糖核酸中出现后期阶段蝌蚪四肢可能参与个体发生的肢体再生的下降非洲爪蟾蜍。

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