Department of Ophthalmology & Visual Sciences, Moran Eye Institute, Salt Lake City, UT, USA.
Department of Bioengineering, University of Utah, Salt Lake City, UT, USA.
Adv Exp Med Biol. 2018;1074:553-560. doi: 10.1007/978-3-319-75402-4_67.
The transient receptor potential vanilloid isoform 4 (TRPV4) functions as polymodal transducer of swelling, heat, stretch, and lipid metabolites, is widely expressed across sensory tissues, and has been implicated in pressure sensing in vertebrate retinas. Although TRPV4 knockout mice exhibit a variety of mechanosensory, nociceptive, and thermo- and osmoregulatory phenotypes, it is not known whether the transmission of light-induced signals in the eye is affected by the loss of TRPV4. We utilized field potentials, a measure of rod and cone signaling, to determine whether TRPV4 impacts on the generation and/or transmission of the photoreceptor light response and neurotransmission. Luminance intensity-response relationships were acquired in anesthetized wild-type and TRPV4 mice and evaluated for peak amplitude and implicit time under scotopic and photopic conditions. We found that the morphology of the outer retina is unaffected by the ablation of the Trpv4 gene. Calcium imaging of dissociated Müller glia showed that selective TRPV4 stimulation induces oscillatory calcium signals in adjacent rods. However, no differences in scotopic or photopic light-evoked signaling in the distal retina were observed in TRPV4-/- eyes, suggesting that TRPV4 signaling in healthy Müller cells does not modulate the transmission of light-evoked signals at rod and cone synapses.
瞬时受体电位香草酸亚型 4(TRPV4)作为膨胀、热、拉伸和脂类代谢物的多模式传感器,广泛表达于感觉组织中,并与脊椎动物视网膜中的压力感应有关。尽管 TRPV4 敲除小鼠表现出多种机械感觉、伤害感受、热和渗透压调节表型,但尚不清楚 TRPV4 的缺失是否会影响眼睛中光诱导信号的传递。我们利用场电位(一种测量杆状细胞和锥状细胞信号的方法)来确定 TRPV4 是否会影响光感受器光反应和神经递质传递的产生和/或传递。在麻醉的野生型和 TRPV4 小鼠中获取亮度强度反应关系,并在暗适应和明适应条件下评估峰值幅度和潜伏期。我们发现,外视网膜的形态不受 Trpv4 基因缺失的影响。分离的 Müller 胶质细胞的钙成像显示,选择性 TRPV4 刺激会在相邻的杆状细胞中诱导振荡钙信号。然而,在 TRPV4-/-眼中,没有观察到远端视网膜中暗适应或明适应光诱发信号的差异,这表明健康 Müller 细胞中的 TRPV4 信号不会调节光诱发信号在杆状细胞和锥状细胞突触处的传递。