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首页> 外文期刊>Stem Cell Reports >Photobiomodulation therapy for hair regeneration: A synergetic activation of β-CATENIN in hair follicle stem cells by ROS and paracrine WNTs
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Photobiomodulation therapy for hair regeneration: A synergetic activation of β-CATENIN in hair follicle stem cells by ROS and paracrine WNTs

机译:用于毛发再生的光致调节治疗:ROS和Paracrine Wnts的毛囊干细胞中β-catenin的协同活化

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Photobiomodulation therapy (PBMT) has shown encouraging results in the treatment of hair loss. However, the mechanism by which PBMT controls cell behavior to coordinate hair cycle is unclear. Here, PBMT is found to drive quiescent hair follicle stem cell (HFSC) activation and alleviate hair follicle atrophy. Mechanistically, PBMT triggers a new hair cycle by upregulating β-CATENIN expression in HFSCs. Loss of β-Catenin (Ctnnb1) in HFSCs blocked PBMT-induced hair regeneration. Additionally, we show PBMT-induced reactive oxygen species (ROS) activate the PI3K/AKT/GSK-3β signaling pathway to inhibit proteasome degradation of β-CATENIN in HFSCs. Furthermore, PBMT promotes the expression and secretion of WNTs in skin-derived precursors (SKPs) to further activate the β-CATENIN signal in HFSCs. By contrast, eliminating ROS or inhibiting WNT secretion attenuates the activation of HFSCs triggered by PBMT. Collectively, our work suggests that PBMT promotes hair regeneration through synergetic activation of β-CATENIN in HFSCs by ROS and paracrine WNTs by SKPs.
机译:PhotobioModulation疗法(PBMT)表明令人鼓舞的结果治疗脱发。然而,PBMT控制细胞行为以协调毛发周期的机制尚不清楚。这里发现PBMT驱动静态毛囊干细胞(HFSC)活化和缓解毛囊萎缩。机械地,PBMT通过上调HFSCs中的β-catenin表达来触发新的头发循环。 HFSCs中β-连环蛋白(CTNNB1)的丧失阻断了PBMT诱导的毛发再生。另外,我们显示PBMT诱导的活性氧(ROS)激活PI3K / AKT / GSK-3β信号通路,以抑制HFSCs中β-Catenin的蛋白酶体降解。此外,PBMT促进了皮肤衍生的前体(SKP)中Wnts的表达和分泌,以进一步激活HFSCs中的β-连环蛋白信号。相比之下,消除ROS或抑制WNT分泌衰减PBMT触发的HFSC的活化。我们的作品表明,通过SKP通过ROS和帕拉卡汀Wnts在HFSCs中的β-catenin的协同活化来促进毛发再生。

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