Role of the soluble epoxide hydrolase in the hair follicle stem cell homeostasis and hair growth.

Pflugers Archiv Pub Date : 2022-09-01 Epub Date: 2022-06-01 DOI:10.1007/s00424-022-02709-4
Zumer Naeem, Sven Zukunft, Stephan Günther, Stefan Liebner, Andreas Weigert, Bruce D Hammock, Timo Frömel, Ingrid Fleming
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Abstract

Polyunsaturated fatty acids (PUFAs) are used as traditional remedies to treat hair loss, but the mechanisms underlying their beneficial effects are not well understood. Here, we explored the role of PUFA metabolites generated by the cytochrome P450/soluble epoxide hydrolase (sEH) pathway in the regulation of the hair follicle cycle. Histological analysis of the skin from wild-type and sEH-/- mice revealed that sEH deletion delayed telogen to anagen transition, and the associated activation of hair follicle stem cells. Interestingly, EdU labeling during the late anagen stage revealed that hair matrix cells from sEH-/- mice proliferated at a greater rate which translated into increased hair growth. Similar effects were observed in in vitro studies using hair follicle explants, where a sEH inhibitor was also able to augment whisker growth in follicles from wild-type mice. sEH activity in the dorsal skin was not constant but altered with the cell cycle, having the most prominent effects on levels of the linoleic acid derivatives 12,13-epoxyoctadecenoic acid (12,13-EpOME), and 12,13-dihydroxyoctadecenoic acid (12,13-DiHOME). Fitting with this, the sEH substrate 12,13-EpOME significantly increased hair shaft growth in isolated anagen stage hair follicles, while its diol; 12,13-DiHOME, had no effect. RNA sequencing of isolated hair matrix cells implicated altered Wnt signaling in the changes associated with sEH deletion. Taken together, our data indicate that the activity of the sEH in hair follicle changes during the hair follicle cycle and impacts on two stem cell populations, i.e., hair follicle stem cells and matrix cells to affect telogen to anagen transition and hair growth.

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可溶性环氧化物水解酶在毛囊干细胞稳态和毛发生长中的作用。
多不饱和脂肪酸(PUFAs)被用作治疗脱发的传统疗法,但其有益作用的机制尚不清楚。在这里,我们探讨了细胞色素P450/可溶性环氧化物水解酶(sEH)途径产生的PUFA代谢物在毛囊周期调节中的作用。对野生型和sEH-/-小鼠皮肤的组织学分析显示,sEH缺失延迟了毛囊干细胞的休眠期到生长期的转变,以及相关的激活。有趣的是,在毛发生长后期,EdU标记显示来自sEH-/-小鼠的毛基质细胞以更高的速度增殖,这转化为毛发生长的增加。在使用毛囊外植体的体外研究中也观察到类似的效果,其中sEH抑制剂也能够促进野生型小鼠毛囊中的胡须生长。背侧皮肤的sEH活性不是恒定的,而是随着细胞周期的变化而变化,对亚油酸衍生物12,13-环氧十八烯酸(12,13- epome)和12,13-二羟基十八烯酸(12,13- dihome)的水平影响最为显著。与此相吻合的是,sEH底物12,13- epome显著促进了离体毛囊生长期毛干的生长,而其二醇;12,13- dihome,没有效果。分离毛基质细胞的RNA测序表明,与sEH缺失相关的变化中Wnt信号的改变。综上所述,我们的数据表明,毛囊中sEH的活性在毛囊周期中发生变化,并影响两种干细胞群,即毛囊干细胞和基质细胞,从而影响休止期到生长期的转变和头发生长。
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