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脊椎动物机械感受器相关干细胞的起源与再生潜能

Origin and regenerative potential of vertebrate mechanoreceptor-associated stem cells.

作者信息

Widera Darius, Hauser Stefan, Kaltschmidt Christian, Kaltschmidt Barbara

机构信息

Department of Cell Biology, University of Bielefeld, Universitätsstraße 25, 33501 Bielefeld, Germany.

出版信息

Anat Res Int. 2012;2012:837626. doi: 10.1155/2012/837626. Epub 2012 Oct 2.

Abstract

Meissner corpuscles and Merkel cell neurite complexes are highly specialized mechanoreceptors present in the hairy and glabrous skin, as well as in different types of mucosa. Several reports suggest that after injury, such as after nerve crush, freeze injury, or dissection of the nerve, they are able to regenerate, particularly including reinnervation and repopulation of the mechanoreceptors by Schwann cells. However, little is known about mammalian cells responsible for these regenerative processes. Here we review cellular origin of this plasticity in the light of newly described adult neural crest-derived stem cell populations. We also discuss further potential multipotent stem cell populations with the ability to regenerate disrupted innervation and to functionally recover the mechanoreceptors. These capabilities are discussed as in context to cellularly reprogrammed Schwann cells and tissue resident adult mesenchymal stem cells.

摘要

迈斯纳小体和默克尔细胞神经突复合体是存在于有毛皮肤和无毛皮肤以及不同类型黏膜中的高度特化的机械感受器。多项报告表明,在诸如神经挤压、冷冻损伤或神经解剖等损伤后,它们能够再生,特别是包括雪旺细胞对机械感受器的重新支配和重新聚集。然而,对于负责这些再生过程的哺乳动物细胞知之甚少。在此,我们根据新描述的成年神经嵴衍生干细胞群体来综述这种可塑性的细胞起源。我们还讨论了具有再生中断的神经支配和使机械感受器功能恢复能力的其他潜在多能干细胞群体。这些能力将结合细胞重编程的雪旺细胞和组织驻留成年间充质干细胞进行讨论。

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