首页> 外文期刊>The Journal of investigative dermatology. >Compartmentation of Mitochondrial and Oxidative Metabolism in Growing Hair Follicles: A Ring of Fire
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Compartmentation of Mitochondrial and Oxidative Metabolism in Growing Hair Follicles: A Ring of Fire

机译:在生长毛囊中的线粒体和氧化代谢的隔间:火环

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摘要

Little is known about the energetics of growing hair follicles, particularly in the mitochondrially abundant bulb. Here, mitochondrial and oxidative metabolism was visualized by multiphoton and light sheet microscopy in cultured bovine hair follicles and plucked human hairs. Mitochondrial membrane potential (ΔΨ), cell viability, reactive oxygen species (ROS), and secretory granules were assessed with parameter-indicating fluorophores. In growing follicles, lower bulb epithelial cells had high viability, and mitochondria were polarized. Most epithelially generated ROS co-localized with polarized mitochondria. As the imaging plane captured more central and distal cells, ΔΨ disappeared abruptly at a transition to a nonfluorescent core continuous with the hair shaft. Approaching the transition, ΔΨ and ROS increased, and secretory granules disappeared. ROS and ΔΨ were strongest in a circumferential paraxial ring at putative sites for formation of the outer cortex/cuticle of the hair shaft. By contrast, polarized mitochondria in dermal papillar fibroblasts produced minimal ROS. Plucked hairs showed a similar abrupt transition of degranulation/depolarization near sites of keratin deposition, as well as an ROS-generating paraxial ring of fire. Hair movement out of the follicle appeared to occur independently of follicular bulb bioenergetics by a tractor mechanism involving the inner and outer root sheaths. ? 2017 The Authors
机译:对于生长毛囊的能量学,特别是在线粒体丰富的灯泡中,众所周知。这里,通过培养的牛毛囊中的多光子和浅薄层显微镜观察线粒体和氧化代谢并采摘人毛。用参数指示荧光团评估线粒体膜电位(ΔΣ),细胞活力,反应性氧物质(ROS)和分泌颗粒。在生长的卵泡中,低泡性上皮细胞具有高可活力,并且线粒体偏振。大多数上皮产生的ROS与偏振线粒体共同定位。由于成像平面捕获了更多的中心和远端电池,ΔΣ在与毛轴连续的非荧光芯的过渡时突然消失。接近过渡,ΔΣ和ROS增加,分泌颗粒消失。 ROS和ΔΣ在透过位点处的圆周剖腹环中最强,用于形成毛轴的外皮/角质层。相比之下,皮肤乳头状纤维细胞中的偏振线粒体产生了最小的ROS。采摘的毛发显示出类似于角蛋白沉积的位点附近的脱落/去极化的突然转变,以及产生的剖腹产的火焰。通过涉及内部和外根护套的拖拉机机构,毛囊出现出卵泡的毛发运动似乎是独立于滤泡灯泡生物共振学发生。还是2017年作者

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