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小鼠相邻再生肌肉间肌肉前体细胞的运动。

The movement of muscle precursor cells between adjacent regenerating muscles in the mouse.

作者信息

Watt D J, Morgan J E, Clifford M A, Partridge T A

出版信息

Anat Embryol (Berl). 1987;175(4):527-36. doi: 10.1007/BF00309688.

Abstract

Regeneration of mature skeletal muscle fibres involves the formation of new multinucleate muscle fibres by the fusion together of mononucleate muscle precursor cells. Such precursor cells appear to be largely or entirely derived from satellite cells, located between the basement membrane and the sarcolemma of the muscle fibre. We have previously presented evidence that precursor cells which contribute to regenerating muscle in a region of muscle damage are not all locally derived but that some migrate in from exogenous sources. The present study examines the possibility that a regenerating muscle might receive muscle precursor cells from neighbouring muscles. To do this we have made whole muscle allografts in the mouse and used the two murine isoenzyme allotypes of the dimeric enzyme Glucose-6-Phosphate Isomerase (GPI) as markers to demonstrate whether there is movement of muscle precursor cells between these allografts and adjacent host muscles. In host muscles adjacent to some allografts, a "hybrid" form of GPI was detected, each molecule consisting of one donor and one host GPI subunit. Such heterodimers can form only where host and donor nuclei share a common cytoplasm: in muscles this means that mosaic host/donor muscle fibres are present. The presence of such fibres implies that muscle precursor cells must have migrated into the host muscle from the neighbouring allograft.

摘要

成熟骨骼肌纤维的再生涉及单核肌肉前体细胞融合形成新的多核肌肉纤维。这类前体细胞似乎主要或完全源自卫星细胞,卫星细胞位于肌纤维的基底膜和肌膜之间。我们之前曾提出证据表明,在肌肉损伤区域参与肌肉再生的前体细胞并非全部源自局部,而是有些从外源迁移而来。本研究探讨了再生肌肉可能从相邻肌肉接收肌肉前体细胞的可能性。为此,我们在小鼠体内进行了全肌肉同种异体移植,并使用二聚体酶葡萄糖-6-磷酸异构酶(GPI)的两种小鼠同工酶同种异型作为标记,以证明这些同种异体移植与相邻宿主肌肉之间是否存在肌肉前体细胞的移动。在一些同种异体移植相邻的宿主肌肉中,检测到一种“杂交”形式的GPI,每个分子由一个供体和一个宿主GPI亚基组成。这种异二聚体仅能在宿主和供体细胞核共享共同细胞质的地方形成:在肌肉中,这意味着存在嵌合的宿主/供体肌纤维。这类纤维的存在意味着肌肉前体细胞必定已从相邻的同种异体移植迁移至宿主肌肉。

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