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小鼠切片肌肉在自体移植肌肉碎片后再生:一种新的肌肉前体细胞转移?

Mouse sectioned muscle regenerates following auto-grafting with muscle fragments: a new muscle precursor cells transfer?

作者信息

Biérinx Anne-Sophie, Sebille Alain

机构信息

Université Pierre et Marie Curie-Paris 6, Faculté de Médecine, Atelier de régénération neuromusculaire, 27 rue Chaligny, 75012 Paris, France.

出版信息

Neurosci Lett. 2008 Feb 6;431(3):211-4. doi: 10.1016/j.neulet.2007.11.052. Epub 2007 Dec 7.

Abstract

It was discovered fifty years ago that a minced skeletal muscle replaced in its bed is able to regenerate. This regeneration is due to the presence of quiescent muscle precursor cells so-called satellite cells in the adult muscle which proliferate and fuse to regenerate new centronucleated fibres when the muscle is damaged. These observations open therapeutic perspectives and, in this study, we attempted to test in the mouse whether fragments of minced muscle regenerate new fibres to fill the gap resulting from the trans-section and retraction of the extensor digitorum longus muscle (EDL). When untreated this gap never regenerates. In agreement with Studitsky, we observed that a minced EDL replaced in its bed regenerates fibres that are spatially disorganised. Minced fragments of abdominus rectus muscle placed in the gap resulting of the trans-section of the EDL regenerate muscle fibres in the gap with a better organisation that in the whole minced muscle. These results could have putative clinical applications, for instance in the prevention of incontinence following prostatectomy which implies removal excision of a large part of the striated urethral sphincter.

摘要

五十年前人们发现,置于原位的切碎骨骼肌能够再生。这种再生归因于成年肌肉中存在静止的肌肉前体细胞,即所谓的卫星细胞,当肌肉受损时,这些卫星细胞会增殖并融合,以再生新的有中央核的纤维。这些观察结果开启了治疗前景,在本研究中,我们试图在小鼠身上测试切碎的肌肉片段是否能再生新的纤维,以填补因趾长伸肌(EDL)横断和回缩而产生的间隙。未经治疗时,这个间隙永远不会再生。与斯图迪茨基的观点一致,我们观察到,置于原位的切碎EDL能再生出空间上无序排列的纤维。将腹直肌切碎片段置于EDL横断产生的间隙中,间隙中的肌肉纤维再生时排列比整个切碎肌肉中的更好。这些结果可能具有潜在的临床应用价值,例如在预防前列腺切除术后的尿失禁方面,前列腺切除术意味着要切除大部分横纹肌尿道括约肌。

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