Department of Physiology, Research Center for Molecular Medicine, University of Debrecen, Medical and Health Science Center, Debrecen, Hungary.
J Invest Dermatol. 2011 Aug;131(8):1605-14. doi: 10.1038/jid.2011.122. Epub 2011 May 19.
In the current study, we aimed at identifying the functional role of transient receptor potential vanilloid-3 (TRPV3) ion channel in the regulation of human hair growth. Using human organ-cultured hair follicles (HFs) and cultures of human outer root sheath (ORS) keratinocytes, we provide the first evidence that activation of TRPV3 inhibits human hair growth. TRPV3 immunoreactivity was confined to epithelial compartments of the human HF, mainly to the ORS. In organ culture, TRPV3 activation by plant-derived (e.g., eugenol, 10-1,000 μM) or synthetic (e.g., 2-aminoethoxydiphenyl borate, 1-300 μM) agonists resulted in a dose-dependent inhibition of hair shaft elongation, suppression of proliferation, and induction of apoptosis and premature HF regression (catagen). Human ORS keratinocytes also expressed functional TRPV3, whose stimulation induced membrane currents, elevated intracellular calcium concentration, inhibited proliferation, and induced apoptosis. Of great importance, these effects on ORS keratinocytes were all mediated by TRPV3, as small interfering RNA-mediated silencing of TRPV3 effectively abrogated the cellular actions of the above agonists. These findings collectively support the concept that TRPV3 signaling is a significant player in human hair growth control. Therefore, TRPV3 and the related intracellular signaling mechanism might function as a promising target for pharmacological manipulations of clinically relevant hair growth disorders.
在目前的研究中,我们旨在确定瞬时受体电位香草酸 3(TRPV3)离子通道在调节人类头发生长中的功能作用。使用人器官培养的毛囊(HF)和人外根鞘(ORS)角质形成细胞培养物,我们提供了第一个证据,证明 TRPV3 的激活抑制了人类头发的生长。TRPV3 免疫反应性局限于人类 HF 的上皮隔室,主要局限于 ORS。在器官培养中,植物衍生的(例如,丁香酚,10-1000 μM)或合成的(例如,2-氨基乙氧基二苯硼酸盐,1-300 μM)激动剂激活 TRPV3 导致发束伸长的剂量依赖性抑制、增殖抑制以及诱导凋亡和过早的 HF 退化(休止期)。人 ORS 角质形成细胞也表达功能性 TRPV3,其刺激诱导膜电流、增加细胞内钙浓度、抑制增殖并诱导凋亡。非常重要的是,ORS 角质形成细胞上的这些作用均由 TRPV3 介导,因为 TRPV3 的小干扰 RNA 介导的沉默有效地消除了上述激动剂的细胞作用。这些发现共同支持 TRPV3 信号是人类头发生长控制的重要参与者的概念。因此,TRPV3 和相关的细胞内信号机制可能作为药理学干预临床上相关的毛发生长障碍的有希望的靶标。