猴的暗视是由G蛋白偶联受体调节的。

IF 1.1 4区 医学 Q4 NEUROSCIENCES Visual Neuroscience Pub Date : 2016-01-01 DOI:10.1017/S095252381600002X
Joseph Bouskila, Vanessa Harrar, Pasha Javadi, Christian Casanova, Yoshio Hirabayashi, Ichiro Matsuo, Jyunpei Ohyama, Jean-François Bouchard, Maurice Ptito
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引用次数: 15

摘要

内源性大麻素系统通过小鼠和猴子的经典CB1和CB2受体在视网膜中发挥重要作用。我们之前报道过G蛋白偶联受体55 (GPR55),一种假定的大麻素受体,只在猴视网膜的杆状光感受器中表达,这表明它可能在暗位视觉中起作用。为了验证这一假设,我们记录了玻璃体内注射GPR55激动剂lysophosphatiylglucoside (LPG)或GPR55选择性拮抗剂CID16020046 (CID)后的全视野视网膜电图(ERGs),分别适应光照和黑暗条件。本研究以13只长尾猴(Chlorocebus sabaeus)为研究对象:4只对照(注射车用二甲亚砜(DMSO)), 4只注射LPG, 5只注射CID。我们分析了ERG的a波(光感受器反应)和b波(杆状和锥状系统反应)的振幅和潜伏期。我们的研究结果表明,与车辆(DMSO)相比,注射LPG后,暗位b波的振幅明显升高,而注射CID后,暗位b波的振幅明显降低。另一方面,注射两种化合物对暗位ERG反应的a波振幅、a波和b波潜伏期均无显著影响。此外,两种药物均未影响光性ERG波形。这些结果支持了GPR55在暗位视觉中起中介作用的假设。
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Scotopic vision in the monkey is modulated by the G protein-coupled receptor 55.

The endogenous cannabinoid system plays important roles in the retina of mice and monkeys via their classic CB1 and CB2 receptors. We have previously reported that the G protein-coupled receptor 55 (GPR55), a putative cannabinoid receptor, is exclusively expressed in rod photoreceptors in the monkey retina, suggesting its possible role in scotopic vision. To test this hypothesis, we recorded full-field electroretinograms (ERGs) after the intravitreal injection of the GPR55 agonist lysophosphatidylglucoside (LPG) or the selective GPR55 antagonist CID16020046 (CID), under light- and dark-adapted conditions. Thirteen vervet monkeys (Chlorocebus sabaeus) were used in this study: four controls (injected with the vehicle dimethyl sulfoxide, DMSO), four injected with LPG and five with CID. We analyzed amplitudes and latencies of the a-wave (photoreceptor responses) and the b-wave (rod and cone system responses) of the ERG. Our results showed that after injection of LPG, the amplitude of the scotopic b-wave was significantly higher, whereas after the injection of CID, it was significantly decreased, compared to the vehicle (DMSO). On the other hand, the a-wave amplitude, and the a-wave and b-wave latencies, of the scotopic ERG responses were not significantly affected by the injection of either compound. Furthermore, the photopic ERG waveforms were not affected by either drug. These results support the hypothesis that GPR55 plays an instrumental role in mediating scotopic vision.

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来源期刊
Visual Neuroscience
Visual Neuroscience 医学-神经科学
CiteScore
2.20
自引率
5.30%
发文量
8
审稿时长
>12 weeks
期刊介绍: Visual Neuroscience is an international journal devoted to the publication of experimental and theoretical research on biological mechanisms of vision. A major goal of publication is to bring together in one journal a broad range of studies that reflect the diversity and originality of all aspects of neuroscience research relating to the visual system. Contributions may address molecular, cellular or systems-level processes in either vertebrate or invertebrate species. The journal publishes work based on a wide range of technical approaches, including molecular genetics, anatomy, physiology, psychophysics and imaging, and utilizing comparative, developmental, theoretical or computational approaches to understand the biology of vision and visuo-motor control. The journal also publishes research seeking to understand disorders of the visual system and strategies for restoring vision. Studies based exclusively on clinical, psychophysiological or behavioral data are welcomed, provided that they address questions concerning neural mechanisms of vision or provide insight into visual dysfunction.
期刊最新文献
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