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首页> 外文期刊>Development Growth and Differentiation >Ex vivo generation of a functional and regenerative wound epithelium from axolotl (Ambystoma mexicanum) skin
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Ex vivo generation of a functional and regenerative wound epithelium from axolotl (Ambystoma mexicanum) skin

机译:从a皮(Axbystoma mexicanum)皮肤离体产生功能性和再生伤口上皮

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摘要

Urodele amphibians (salamanders) are unique among adult vertebrates in their ability to regenerate structurally complete and fully functional limbs. Regeneration is a stepwise process that requires interactions between keratinocytes, nerves and fibroblasts. The formation of a wound epithelium covering the amputation site is an early and necessary event in the process but the molecular mechanisms that underlie the role of the wound epithelium in regeneration remain unclear. We have developed an ex vivo model that recapitulates many features of in vivo wound healing. The model comprises a circular explant of axolotl (Ambystoma mexicanum) limb skin with a central circular, full thickness wound. Re-epithelialization of the wound area is rapid (typically < 11 h) and is dependent on metalloproteinase activity. The ex vivo wound epithelium is viable, responds to neuronal signals and is able to participate in ectopic blastema formation and limb regeneration. This ex vivo model provides a reproducible and tractable system in which to study the cellular and molecular events that underlie wound healing and regeneration.
机译:在成年脊椎动物中,Urodele两栖动物(salamanders)是独特的,因为它们具有再生结构完整和功能齐全的肢体的能力。再生是一个逐步的过程,需要角质形成细胞,神经和成纤维细胞之间的相互作用。覆盖截肢部位的伤口上皮的形成是该过程中的早期和必要事件,但是尚不清楚伤口上皮在再生中的作用的分子机制。我们已经开发了一个体外模型,概括了体内伤口愈合的许多特征。该模型包括一个带有中央圆形完整厚度伤口的腋生圆形外植体(Ambystoma mexicanum)。伤口区域的上皮再形成很快(通常<11小时),并且取决于金属蛋白酶的活性。离体伤口上皮是可行的,对神经元信号作出反应并且能够参与异位胚层形成和肢体再生。这种离体模型提供了可重现和易于处理的系统,可在其中研究构成伤口愈合和再生基础的细胞和分子事件。

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