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胰岛素样生长因子-I信号传导控制毛发生长周期和毛干分化。

Igf-I signalling controls the hair growth cycle and the differentiation of hair shafts.

作者信息

Weger Nicole, Schlake Thomas

机构信息

Max-Planck Institute of Immunobiology, Freiburg, Germany.

出版信息

J Invest Dermatol. 2005 Nov;125(5):873-82. doi: 10.1111/j.0022-202X.2005.23946.x.

Abstract

Mesenchymal-epithelial signalling between the dermal papilla and the hair matrix regulates cell proliferation and differentiation in mature hair follicles. The molecular basis of these interactions is largely unexplored. According to its expression in the dermal papilla, IGF-I is likely involved in reciprocal signalling. To examine its biological function in pelage follicles further, we generated transgenic mice that express Igf-I in the inner root sheath and the medulla using an involucrin promoter fragment. We demonstrate that Igf-I affects follicular proliferation, tissue remodelling, and the hair growth cycle, as well as folliclular differentiation. Transgenic skin temporarily lacks visible adipose tissue in telogen. The onset of the second, aberrant growth phase is markedly retarded. Transgenic guard hairs are significantly elongated and a small fraction of hair follicles is severely disoriented. The microscopic appearance of most hair shafts is altered and, strikingly, Igf-I transgenic mice lack hairs with a zigzag shape due to the suppression of hair shaft bending. All transgenic effects are partially compensated by ectopic expression of Igfbp3. Finally, Pdgfralpha was identified as the first molecular target that is affected in Igf-I transgenic mice. In summary, our data identify IGF-I signalling as an important mitogenic and morphogenetic regulator in hair follicle biology.

摘要

真皮乳头与毛基质之间的间充质-上皮信号传导调节成熟毛囊中的细胞增殖和分化。这些相互作用的分子基础在很大程度上尚未被探索。根据胰岛素样生长因子-I(IGF-I)在真皮乳头中的表达情况,它可能参与了双向信号传导。为了进一步研究其在被毛毛囊中的生物学功能,我们利用一种内披蛋白启动子片段,培育出了在内根鞘和髓质中表达Igf-I的转基因小鼠。我们证明,Igf-I会影响毛囊增殖、组织重塑、毛发生长周期以及毛囊分化。处于休止期的转基因皮肤暂时缺乏可见的脂肪组织。第二个异常生长阶段的开始明显延迟。转基因的针毛显著拉长,一小部分毛囊严重紊乱。大多数毛干的微观外观发生改变,而且引人注目的是,由于毛干弯曲受到抑制,Igf-I转基因小鼠缺乏呈之字形的毛发。所有转基因效应都通过Igfbp3的异位表达得到部分补偿。最后,血小板衍生生长因子受体α(Pdgfralpha)被确定为在Igf-I转基因小鼠中受到影响的首个分子靶点。总之,我们的数据表明IGF-I信号传导是毛囊生物学中一种重要的促有丝分裂和形态发生调节因子。

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