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蝾螈侧线区附肢诱导及其肌肉调控

Accessory limb induction on flank region and its muscle regulation in axolotl.

机构信息

Okayama University, Graduate School of Natural Science and Technology, Tsushimanaka, Kita-ku, Okayama, Japan.

出版信息

Dev Dyn. 2013 Aug;242(8):932-40. doi: 10.1002/dvdy.23984. Epub 2013 Jun 11.

Abstract

BACKGROUND

Urodele amphibians have high regeneration capability that has been studied for a long time. Recently, a new experimental system called the accessory limb model was developed and becomes alternative choice for amphibian limb regeneration study. Although the accessory limb model has many advantages, an improvement was needed for some specific analysis, such as studying muscle origin. For that purpose, an accessory limb induction on nonlimb regions was attempted.

RESULTS

Accessory limb induction on a nonlimb region (flank) was possible by nerve deviation and limb skin grafting. Retinoic acid injections improved the induction rate. The induced limb possessed the same tissue context as a normal limb. Muscle cells were also abundantly observed. It is speculated that the muscle cells are derived from flank muscle tissues, because limb muscle cells are a migratory cell population and the accessory limb was induced apart from the original limb. We also found that migration of the muscle cells was regulated by Hgf/cMet signaling as in other vertebrates.

CONCLUSIONS

Accessory limb induction was possible even in the nonlimb flank region. The flank-induced limb would be useful for further analysis of limb regeneration, especially for migratory cell populations such as muscle cells.

摘要

背景

有尾两栖动物具有很强的再生能力,这一特性已经被研究了很长时间。最近,一种新的实验系统——附肢模型被开发出来,并成为研究两栖动物肢体再生的另一种选择。尽管附肢模型有许多优点,但在某些特定的分析中,如研究肌肉起源,仍需要改进。为此,我们尝试在非附肢区域诱导附肢。

结果

通过神经偏离和肢体皮肤移植,在非附肢区域(体侧)诱导附肢是可能的。维甲酸注射可提高诱导率。诱导的附肢具有与正常附肢相同的组织背景。也观察到大量的肌肉细胞。据推测,这些肌肉细胞来自体侧肌肉组织,因为肢体肌肉细胞是一个迁移细胞群体,而诱导的附肢与原始肢体分离。我们还发现,肌肉细胞的迁移受 Hgf/cMet 信号的调节,就像在其他脊椎动物中一样。

结论

即使在非附肢的体侧区域也可以诱导出附肢。这种诱导出的附肢将有助于进一步分析肢体再生,特别是对于肌肉细胞等迁移细胞群体。

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