Micaelo-Fernandes Catarina, Bouskila Joseph, Bouchard Jean-François, Ptito Maurice
École d'Optométrie, Université de Montréal, Montreal, QC H3T 1P1, Canada.
Department of Neuroscience, Copenhagen University, 2200 Copenhagen, Denmark.
Brain Sci. 2021 Jun 10;11(6):770. doi: 10.3390/brainsci11060770.
The expression of the endocannabinoid (eCB) system, including cannabinoid receptor type 1 (CB1R) and the cannabinoid synthesizing (NAPE-PLD) and degrading (FAAH) enzymes, has been well-characterized in the retina of rodents and monkeys. More recently, the presence of CB1R was localized throughout the dorsal lateral geniculate nucleus of the thalamus of vervet monkeys. Given that the retina projects also to the pulvinar either via a direct projection or via the superior colliculus, it was reasonable to assume that this system would be present therein. The visual pulvinar, namely the inferior pulvinar (PI) region, was delineated with calbindin immunohistochemical staining. Using Western blots and immunofluorescence, we demonstrated that CB1R, NAPE-PLD and FAAH are expressed in the PI of the vervet monkey. Throughout the PI, CB1R was mainly colocalized with VGLUT2-positive axon terminals in the vicinity of calbindin and parvalbumin-positive neurons. NAPE-PLD and FAAH rather colocalized with calbindin over the somatodendritic compartment of PI neurons. Our results suggest that visual information coming from the retina and entering the PI is modulated by the eCB system on its way to the dorsal visual stream. These results provide insights for understanding the role of eCBs in the modulation of visual thalamic inputs and, hence, visual perception.
内源性大麻素(eCB)系统的表达,包括1型大麻素受体(CB1R)以及大麻素合成酶(NAPE-PLD)和降解酶(FAAH),已在啮齿动物和猴子的视网膜中得到充分表征。最近,在黑长尾猴丘脑的背外侧膝状核中定位到了CB1R的存在。鉴于视网膜也通过直接投射或经由上丘投射到丘脑枕,因此可以合理推测该系统也存在于其中。通过钙结合蛋白免疫组织化学染色勾勒出视觉丘脑枕,即丘脑下枕(PI)区域。使用蛋白质免疫印迹法和免疫荧光法,我们证明了CB1R、NAPE-PLD和FAAH在黑长尾猴的PI中表达。在整个PI中,CB1R主要与钙结合蛋白和小白蛋白阳性神经元附近的VGLUT2阳性轴突终末共定位。NAPE-PLD和FAAH则在PI神经元的树突-胞体区与钙结合蛋白共定位。我们的结果表明,来自视网膜并进入PI的视觉信息在其通向背侧视觉通路的途中受到eCB系统的调节。这些结果为理解内源性大麻素在调节视觉丘脑输入以及视觉感知中的作用提供了见解。