Rapid induction and clearance of TGF beta 1 is an early response to wounding in the mouse embryo.

P Martin, M C Dickson, F A Millan, R J Akhurst
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引用次数: 121

Abstract

The TGF beta family of growth factors has been implicated as playing a significant role in many aspects of embryonic morphogenesis, and also as a mediator of adult tissue repair processes. Unlike the situation in the adult, tissue repair in the embryo does not result in scarring, and it has been suggested that this might be due, in part, to reduced levels of growth factors, particularly TGF beta, at the wound site. We have examined the expression patterns of TGF beta genes following wounding of limb bud lesions in cultured E11.5 mouse embryos. The timetable of wound closure was investigated by standard light and electron microscopy from the time of wounding until the lesion had re-epithelialised 24 hours later. The expression of transcripts for each of the three TGF beta genes was examined at various time points during the healing process using radioactive in situ hybridisation to tissue sections and wholemount non-radioactive in situ hybridisation to embryo pieces. Within 1 to 3 hours of wounding, transcripts encoding TGF beta 1 were rapidly induced within the epithelial cells of the wound margin, particularly those cells at the ventral aspect of the wound. By 3 to 6 hours post-wounding, TGF beta 1 transcripts were detectable in the mesenchyme of the wound bed. No TGF beta 3 induction was observed, and possible TGF beta 2 induction was largely obscured by endogenous expression associated with pre-cartilage mesenchymal condensation. Immunocytochemical analysis of tissue sections of the wound demonstrated a rapid induction of TGF beta 1 protein within 1 hour post-wounding, but also a subsequent rapid clearance of the protein from the wound site such that, by 18 hours post-wounding, TGF beta 1 levels had returned to near background. These data are discussed in terms of the molecular mechanisms underlying embryonic wound healing and the significance of the results to an understanding of scarring following adult tissue repair.

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快速诱导和清除TGF β 1是小鼠胚胎对损伤的早期反应。
TGF β生长因子家族在胚胎形态发生的许多方面起着重要作用,也是成人组织修复过程的中介。与成人的情况不同,胚胎中的组织修复不会导致疤痕,有人认为这可能部分是由于伤口部位的生长因子水平降低,尤其是TGF β。我们检测了培养E11.5小鼠胚胎肢体芽损伤后TGF β基因的表达模式。通过标准光镜和电子显微镜观察伤口愈合的时间,从伤口受伤到24小时后病变重新上皮化。在愈合过程的不同时间点,采用组织切片放射性原位杂交和胚胎片全量非放射性原位杂交检测三种TGF β基因转录本的表达。在受伤后1 ~ 3小时内,编码TGF - β 1的转录本在创面边缘上皮细胞内,特别是在创面腹侧的细胞内被迅速诱导。伤后3 ~ 6小时,在伤床间质中检测到TGF β 1转录物。未观察到TGF β 3诱导,TGF β 2诱导的可能性在很大程度上被与软骨前间充质凝聚相关的内源性表达所掩盖。创面组织切片的免疫细胞化学分析显示,TGF β 1蛋白在受伤后1小时内被快速诱导,但随后该蛋白在伤口部位被快速清除,因此,在受伤后18小时,TGF β 1水平已恢复到接近背景水平。这些数据讨论了分子机制方面的胚胎伤口愈合和结果的意义,以了解瘢痕后的成人组织修复。
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