Shuba Yaroslav M
Bogomoletz Institute of Physiology, National Academy of Sciences of Ukraine, Kyiv, Ukraine.
Front Cell Neurosci. 2021 Feb 5;14:612480. doi: 10.3389/fncel.2020.612480. eCollection 2020.
Transient receptor potential vanilloid 1 (TRPV1) is a calcium-permeable ion channel best known for its ability to be gated by the pungent constituent of red chili pepper, capsaicin, and related chemicals from the group of vanilloids as well as by noxious heat. As such, it is mostly expressed in sensory neurons to act as a detector of painful stimuli produced by pungent chemicals and high temperatures. Its activation is also sensitized by the numerous endogenous inflammatory mediators and second messengers, making it an important determinant of nociceptive signaling. Except for such signaling, though, neuronal TRPV1 activation may influence various organ functions by promoting the release of bioactive neuropeptides from sensory fiber innervation organs. However, TRPV1 is also found outside the sensory nervous system in which its activation and function is not that straightforward. Thus, TRPV1 expression is detected in skeletal muscle; in some types of smooth muscle; in epithelial and immune cells; and in adipocytes, where it can be activated by the combination of dietary vanilloids, endovanilloids, and pro-inflammatory factors while the intracellular calcium signaling that this initiates can regulate processes as diverse as muscle constriction, cell differentiation, and carcinogenesis. The purpose of the present review is to provide a clear-cut distinction between neurogenic TRPV1 effects in various tissues consequent to its activation in sensory nerve endings and non-neurogenic TRPV1 effects due to its expression in cell types other than sensory neurons.
瞬时受体电位香草酸亚型1(TRPV1)是一种钙通透性离子通道,因其能够被红辣椒的辛辣成分辣椒素、香草酸类相关化学物质以及有害热激活而闻名。因此,它主要表达于感觉神经元中,作为由辛辣化学物质和高温产生的疼痛刺激的探测器。其激活还受到多种内源性炎症介质和第二信使的敏化作用,使其成为伤害性信号传导的重要决定因素。然而,除了这种信号传导外,神经元TRPV1的激活可能通过促进来自感觉纤维支配器官的生物活性神经肽的释放来影响各种器官功能。然而,TRPV1也存在于感觉神经系统之外,其激活和功能并非那么简单直接。因此,在骨骼肌、某些类型的平滑肌、上皮细胞和免疫细胞以及脂肪细胞中都检测到了TRPV1的表达,在这些细胞中,它可以被膳食香草酸、内源性香草酸和促炎因子共同激活,而由此引发的细胞内钙信号传导可以调节肌肉收缩、细胞分化和致癌作用等多种过程。本综述的目的是明确区分感觉神经末梢中TRPV1激活后在各种组织中产生的神经源性效应和由于其在感觉神经元以外的细胞类型中表达而产生的非神经源性TRPV1效应。