Laboratory of Advanced Cosmetic Science, Graduate School of Pharmaceutical Sciences, Osaka University, Osaka, Japan.
Fundamental Research Institute, Mandom Corporation, Osaka, Japan.
Commun Biol. 2023 Nov 18;6(1):1175. doi: 10.1038/s42003-023-05557-9.
Eccrine sweat glands play an essential role in regulating body temperature. Sweat is produced in the coiled secretory portion of the gland, which is surrounded by obliquely aligned myoepithelial cells; the sweat is then peristaltically transported to the skin surface. Myoepithelial cells are contractile and have been implicated in sweat transport, but how myoepithelial cells contract and transport sweat remains unexplored. Here, we perform ex vivo live imaging of an isolated human eccrine gland and demonstrate that cholinergic stimulation induces dynamic contractile motion of the coiled secretory duct that is driven by gap junction-mediated contraction of myoepithelial cells. The contraction of the secretory duct occurs segmentally, and it is most prominent in the region surrounded by nerve fibers, followed by distension-contraction sequences of the excretory duct. Overall, our ex vivo live imaging approach provides evidence of the contractile function of myoepithelial cells in peristaltic sweat secretion from human eccrine glands.
外分泌汗腺在调节体温方面起着至关重要的作用。汗液在腺体的卷曲分泌部分产生,该部分被斜向排列的肌上皮细胞包围;然后,汗液通过蠕动被输送到皮肤表面。肌上皮细胞具有收缩性,并且与汗液输送有关,但肌上皮细胞如何收缩和输送汗液仍未被探索。在这里,我们对分离的人类外分泌腺进行了离体活体成像,结果表明,胆碱能刺激诱导卷曲分泌管的动态收缩运动,这是由肌上皮细胞的缝隙连接介导的收缩驱动的。分泌管的收缩是节段性的,在神经纤维包围的区域最为明显,随后是排泄管的扩张-收缩序列。总的来说,我们的离体活体成像方法为肌上皮细胞在人类外分泌腺的蠕动性汗液分泌中的收缩功能提供了证据。