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耶魯大學(xué)的研究人員日前發(fā)現(xiàn)了一種能夠促進(jìn)頭發(fā)再生的干細(xì)胞,并在小鼠實(shí)驗(yàn)中獲得了證實(shí)。隨著該研究的進(jìn)一步深入,有望開(kāi)發(fā)出治療脫發(fā)和禿頂?shù)娜炉煼āO嚓P(guān)研究發(fā)表在今天出版的《細(xì)胞》雜志上。
在小鼠實(shí)驗(yàn)中,研究人員發(fā)現(xiàn)在皮膚脂肪層中存在一種干細(xì)胞,而該細(xì)胞能發(fā)出一種分子信號(hào)刺激小鼠毛發(fā)的再生。研究人員稱(chēng),即便是在禿頂男性的毛囊根部仍然存在著這類(lèi)干細(xì)胞,只是它們失去了啟動(dòng)毛發(fā)再生的能力??茖W(xué)家已經(jīng)知道,這種毛囊干細(xì)胞需要從皮膚內(nèi)獲得生長(zhǎng)頭發(fā)的信號(hào),但這些信號(hào)的來(lái)源卻一直都不清楚。
當(dāng)頭發(fā)停止生長(zhǎng)時(shí),頭皮中的脂肪層就會(huì)發(fā)生收縮。而當(dāng)頭發(fā)生長(zhǎng)過(guò)程重啟后,脂肪層又會(huì)發(fā)生增長(zhǎng),這個(gè)過(guò)程被稱(chēng)為脂肪細(xì)胞分化。論文*作者、耶魯大學(xué)細(xì)胞和發(fā)育生物學(xué)助理教授瓦萊麗·霍斯利說(shuō):“如果能夠得到這些脂肪細(xì)胞,然后與毛囊底部那些休眠的干細(xì)胞進(jìn)行‘交流’,我們也許能夠讓頭發(fā)再次生長(zhǎng)出來(lái)。”
研究人員發(fā)現(xiàn),在脂肪層再度增長(zhǎng)和頭發(fā)再生的過(guò)程中,一種能夠產(chǎn)生脂肪前體細(xì)胞的干細(xì)胞發(fā)揮了重要作用。這種細(xì)胞會(huì)產(chǎn)生一種名為PDGF(血小板衍生生長(zhǎng)因子)的分子,這種分子能恢復(fù)小鼠毛發(fā)的生長(zhǎng)。
霍斯利團(tuán)隊(duì)正試圖確定在毛發(fā)生長(zhǎng)中可能起作用的、由脂肪前體干細(xì)胞產(chǎn)生的其他分子信號(hào),以完善該結(jié)論。此外,他們還將進(jìn)一步展開(kāi)實(shí)驗(yàn),以確定這種機(jī)制是否在人體中也同樣存在并發(fā)揮作用。(生物谷 )
doi:10.1016/j.cell.2011.07.019
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Adipocyte Lineage Cells Contribute to the Skin Stem Cell Niche to Drive Hair Cycling
Eric Festa1, Jackie Fretz2, Ryan Berry5, Barbara Schmidt5, Matthew Rodeheffer1, 3, 4, Mark Horowitz2 and Valerie Horsley
In mammalian skin, multiple types of resident cells are required to create a functional tissue and support tissue homeostasis and regeneration. The cells that compose the epithelial stem cell niche for skin homeostasis and regeneration are not well defined. Here, we identify adipose precursor cells within the skin and demonstrate that their dynamic regeneration parallels the activation of skin stem cells. Functional analysis of adipocyte lineage cells in mice with defects in adipogenesis and in transplantation experiments revealed that intradermal adipocyte lineage cells are necessary and sufficient to drive follicular stem cell activation. Furthermore, we implicate PDGF expression by immature adipocyte cells in the regulation of follicular stem cell activity. These data highlight adipogenic cells as skin niche cells that positively regulate skin stem cell activity, and suggest that adipocyte lineage cells may alter epithelial stem cell function clinically.
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