Monasterium Laboratory, Skin and Hair Research Solutions GmbH, Münster, Germany.
Dr. Phillip Frost Department of Dermatology & Cutaneous Surgery, University of Miami Miller School of Medicine, Miami, Florida, USA.
Exp Dermatol. 2023 Oct;32(10):1848-1855. doi: 10.1111/exd.14907. Epub 2023 Aug 16.
The mechanotransduction of light-touch sensory stimuli is considered to be the main physiological function of epidermal Merkel cells (MCs). Recently, however, MCs have been demonstrated to be also thermo-sensitive, suggesting that their role in skin physiologically extends well beyond mechanosensation. Here, we demonstrate that in healthy human skin epidermal MCs express functional olfactory receptors, namely OR2AT4, just like neighbouring keratinocytes. Selective stimulation of OR2AT4 by topical application of the synthetic odorant, Sandalore®, significantly increased Piccolo protein expression in MCs, as assessed by quantitative immunohistomorphometry, indicating increased vesicle trafficking and recycling, and significantly reduced nerve growth factor (NGF) immunoreactivity within MCs, possibly indicating increased neurotrophin release upon OR2AT4 activation. Live-cell imaging showed that Sandalore® rapidly induces a loss of FFN206-dependent fluorescence in MCs, suggesting OR2AT4-dependent MC depolarization and subsequent vesicle secretion. Yet, in contrast to keratinocytes, OR2AT4 stimulation by Sandalore® altered neither the number nor the proliferation status of MCs. These preliminary ex vivo findings demonstrate that epidermal MCs also exert OR-dependent chemosensory functions in human skin, and invite one to explore whether these newly identified properties are dysregulated in selected skin disorders, for example, in pruritic dermatoses, and if these novel MC functions can be therapeutically targeted to maintain/promote skin health.
触觉感官刺激的机械转导被认为是表皮 Merkel 细胞 (MCs) 的主要生理功能。然而,最近已经证明 MCs 也对热敏感,这表明它们在皮肤生理学中的作用远远超出了机械感觉。在这里,我们证明在健康的人类皮肤表皮 MCs 中表达功能性嗅觉受体,即 OR2AT4,就像邻近的角质形成细胞一样。通过局部应用合成气味剂桑德罗(Sandalore®)对 OR2AT4 的选择性刺激,通过定量免疫组织形态计量学评估,显著增加了 MCs 中 Piccolo 蛋白的表达,表明囊泡转运和回收增加,并且 MCs 中的神经生长因子(NGF)免疫反应性显著降低,可能表明 OR2AT4 激活时神经生长因子释放增加。活细胞成像显示,桑德罗(Sandalore®)可迅速诱导 MCs 中 FFN206 依赖性荧光的丧失,表明 OR2AT4 依赖性 MC 去极化和随后的囊泡分泌。然而,与角质形成细胞相反,桑德罗(Sandalore®)对 OR2AT4 的刺激既没有改变 MCs 的数量也没有改变其增殖状态。这些初步的离体发现表明,表皮 MCs 也在人类皮肤中发挥 OR 依赖性化学感觉功能,并邀请人们探索这些新鉴定的特性是否在某些皮肤疾病中失调,例如瘙痒性皮肤病,以及这些新的 MC 功能是否可以作为治疗靶点以维持/促进皮肤健康。