首页> 外文期刊>Journal of Morphology >EXPRESSION OF TYPE XII COLLAGEN BY WOUND EPITHELIAL, MESENCHYMAL, AND EPENDYMAL CELLS DURING BLASTEMA FORMATION IN REGENERATING NEWT (NOTOPHTHALMUS VIRIDESCENS) TAILS
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EXPRESSION OF TYPE XII COLLAGEN BY WOUND EPITHELIAL, MESENCHYMAL, AND EPENDYMAL CELLS DURING BLASTEMA FORMATION IN REGENERATING NEWT (NOTOPHTHALMUS VIRIDESCENS) TAILS

机译:XII型胶原蛋白在再生NEW(原噬菌体)尾芽形成过程中伤口上皮,间充质和上皮细胞的表达

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Previously we showed that type XII collagen (col XII) is highly upregulated in the regenerating newt (Notophthalmus viridescens) forelimb. Here, using immunohistochemistry and in situ hybridization, we studied the pattern of expression of col XII during early stages of adult newt tail regeneration. The results show that immunoreactivity of col XII is first seen as a thin layer beneath the wound epithelium (WE) at 3 days after amputation. Reactivity associated with the mesenchyme becomes obvious at day 4 and increases considerably between days 6 and 7 after amputation. In situ hybridization indicates that the early WE-associated reactivity and later mesenchymal reactivity are due to increased col XII gene expression by the WE and mesenchyme, respectively. At 7 days after tail amputation both wound epithelial and mesenchymal cells exhibit a strong riboprobe signal. Interestingly, a distinct riboprobe signal is also seen in the cells of the outgrowing ependymal tube at day 7 but little if any col XII immunoreactivity is present. The spatial pattern of col XII gene expression changes by day 14 after amputation in that transcription in mesenchyme is maintained at a high level, in the WE it is reduced, and in ependyma it ceases to be detectable. Local deprivation of the spinal cord significantly lowers the level of col XII message in the mesenchyme. Much of this decrease in transcription is due to minimal mesenchymal cell accumulation secondary to spinal cord ablation. The temporal and spatial patterns of expression of the col XII gene in the WE, mesenchyme, and ependyma during tail regeneration strongly suggest a role for col XII in regulating both spinal cord outgrowth and spinal cord-dependent tail regeneration. (C) 1996 Wiley-Liss, Inc. [References: 42]
机译:先前我们显示XII型胶原(col XII)在再生new(Notophthalmus viridescens)前肢中高度上调。在这里,使用免疫组织化学和原位杂交,我们研究了成年new尾部再生早期col XII表达的模式。结果表明,在截肢后第3天,col XII的免疫反应性首先显示为伤口上皮(WE)下方的薄层。与间充质相关的反应性在第4天变得明显,并且在截肢后的第6天和第7天之间显着增加。原位杂交表明早期的WE相关反应和后来的间充质反应分别是由于WE和间充质增加了col XII基因表达。截肢尾巴后第7天,伤口上皮细胞和间充质细胞均显示强核糖探针信号。有趣的是,在第7天,在向外生长的室间隔管的细胞中也观察到了独特的核糖核酸探针信号,但几乎没有col XII免疫反应性存在。截肢后第14天col XII基因表达的空间模式发生变化,因为间充质中的转录保持高水平,WE中的转录降低,而室管膜中不再检测到。脊髓的局部剥夺显着降低了间充质中col XII信息的水平。转录的这种减少大部分是由于继发于脊髓消融的间充质细胞最少积累所致。 col XII基因在尾巴再生过程中在WE,间充质和室管膜中表达的时空格局强烈表明col XII在调节脊髓生长和脊髓依赖性尾巴再生中均起着作用。 (C)1996 Wiley-Liss,Inc. [参考:42]

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