Denda Mitsuhiro, Fujiwara Shigeyoshi, Hibino Toshihiko
Shiseido Research Center, Kanazawa-ku, Yokohama, Japan.
Exp Dermatol. 2006 Jun;15(6):455-60. doi: 10.1111/j.0906-6705.2006.00430.x.
Recent studies demonstrated that skin surface electric conditions affect epidermal permeability barrier homeostasis. These results suggest the existence of voltage sensor on the keratinocytes of the epidermis. On the contrary, specific blockers of the voltage-gated calcium channel (VGCC) also affect epidermal barrier homeostasis, but the existence and function of the channel has not been determined. We demonstrated here immunohistochemically the expression of the main subunit of the L-type VGCC, alpha1C, which alone has a calcium channel function, in mouse and human epidermis. Immunostaining, RT-PCR, and Western blotting were carried out to detect the channel protein. Messenger RNA of alpha1C was also detected in mouse epidermis and human keratinocyte culture by RT-PCR. We also evaluated the function of the channel in the cultured human keratinocytes. Previously, we demonstrated that influx of calcium ion into epidermal keratinocytes delayed the barrier recovery after barrier disruption and topical application of calcium channel blocker accelerated the barrier recovery. In this study, topical application of nifedipine and R-(+)-BAY K8644 after tape stripping of hairless mice accelerated the barrier repair rate while application of S-(-)-BAY K8644 delayed the barrier recovery. These results suggest that the VGCC exists on epidermal keratinocytes and plays an important role in skin barrier homeostasis.
最近的研究表明,皮肤表面的电学状况会影响表皮通透屏障的稳态。这些结果提示在表皮角质形成细胞上存在电压感受器。相反,电压门控钙通道(VGCC)的特异性阻滞剂也会影响表皮屏障的稳态,但该通道的存在及功能尚未确定。我们在此通过免疫组织化学方法证实了L型VGCC主要亚基α1C在小鼠和人表皮中的表达,α1C单独即具有钙通道功能。采用免疫染色、RT-PCR及蛋白质印迹法检测该通道蛋白。通过RT-PCR在小鼠表皮及人角质形成细胞培养物中也检测到了α1C的信使RNA。我们还评估了该通道在培养的人角质形成细胞中的功能。此前,我们证实钙离子流入表皮角质形成细胞会延迟屏障破坏后的屏障修复,而局部应用钙通道阻滞剂可加速屏障修复。在本研究中,对无毛小鼠进行胶带剥离后局部应用硝苯地平和R-(+)-BAY K8644可加速屏障修复率,而应用S-(-)-BAY K8644则会延迟屏障恢复。这些结果提示VGCC存在于表皮角质形成细胞上,并在皮肤屏障稳态中发挥重要作用。