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首页> 外文期刊>Developmental biology >FGF and BMP derived from dorsal root ganglia regulate blastema induction in limb regeneration in Ambystoma mexicanum
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FGF and BMP derived from dorsal root ganglia regulate blastema induction in limb regeneration in Ambystoma mexicanum

机译:FGF和BMP源于背根神经节调节Ambystoma Mexicanum的肢体再生中的Blastema诱导

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Urodele amphibians have a remarkable organ regeneration ability that is regulated by neural inputs. The identification of these neural inputs has been a challenge. Recently, Fibroblast growth factor (Fgf) and Bone morphogenic protein (Bmp) were shown to substitute for nerve functions in limb and tail regeneration in urodele amphibians. However, direct evidence of Fgf and Bmp being secreted from nerve endings and regulating regeneration has not yet been shown. Thus, it remained uncertain whether they were the nerve factors responsible for successful limb regeneration. To gather experimental evidence, the technical difficulties involved in the usage of axolotls had to be overcome. We achieved this by modifying the electroporation method. When Fgf8-AcGFP or Bmp7-AcGFP was electroporated into the axolotl dorsal root ganglia (DRG), GFP signals were detectable in the regenerating limb region. This suggested that Fgf8 and Bmp7 synthesized in neural cells in the DRG were delivered to the limbs through the long axons. Further knockdown experiments with double-stranded RNA interference resulted in impaired limb regeneration ability. These results strongly suggest that Fgf and Bmp are the major neural inputs that control the organ regeneration ability. (C) 2016 Elsevier Inc. All rights reserved.
机译:尿精两栖动物具有卓越的器官再生能力,由神经投入调节。这些神经投入的识别是一项挑战。最近,被证明了成纤维细胞生长因子(FGF)和骨形态发生蛋白(BMP)替代尿精两栖动物中肢体中的神经功能和尾部再生。但是,尚未显示来自神经末梢和调节再生的FGF和BMP的直接证据。因此,它仍然不确定它们是否是负责成功的肢体再生的神经因子。为了收集实验证据,必须克服腋窝使用的使用的技术困难。通过修改电穿孔方法,我们实现了这一点。当FGF8-ACGFP或BMP7-ACGFP电穿孔时,在再生肢区域中可以检测到GFP信号。这表明在DRG中的神经细胞中合成的FGF8和BMP7通过长轴送到肢体。通过双链RNA干扰的进一步敲低实验导致肢体再生能力受损。这些结果强烈表明FGF和BMP是控制器官再生能力的主要神经输入。 (c)2016 Elsevier Inc.保留所有权利。

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