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Development of Cannabinoid 1 Receptor Protein and Messenger RNA in Monkey Dorsolateral Prefrontal Cortex

机译:猴背外侧前额叶皮层中大麻素1受体蛋白和信使RNA的发育

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摘要

Adolescent cannabis use is associated with an increased risk of schizophrenia and with impairments in cognitive processes reliant on the circuitry of the dorsolateral prefrontal cortex (DLPFC). Additionally, maternal cannabis use is associated with cognitive dysfunction in offspring. The effects of cannabis are mediated by the cannabinoid 1 receptor (CB1R), which is present in high density in the primate DLPFC. In order to determine how developmental changes in CB1Rs might render DLPFC circuitry vulnerable to cannabis exposure, we examined the density and innervation patterns of CB1R-immunoreactive (IR) axons and the expression of CB1R mRNA in the DLPFC from 81 macaque monkeys, ranging in age from embryonic 82 days to 18 years. Overall CB1R immunoreactivity in the gray matter robustly increased during the perinatal period and achieved adult levels by 1 week postnatal. However, laminar analyses revealed that CB1R-IR axon density significantly decreased with age in layers 1–2 but significantly increased in layer 4, especially during adolescence. In contrast, CB1R mRNA levels were highest 1 week postnatal, declined over the next 2 months, and then remained unchanged into adulthood. These findings provide a potential substrate for discrete, age-dependent effects of cannabis exposure on the maturation of primate DLPFC circuitry.
机译:青少年使用大麻与精神分裂症的风险增加以及依赖于背外侧前额叶皮层(DLPFC)的认知过程受损有关。此外,孕妇使用大麻与后代的认知功能障碍有关。大麻的影响由大麻素1受体(CB1R)介导,该受体以高密度存在于灵长类DLPFC中。为了确定CB1R的发育变化如何使DLPFC电路易受大麻暴露,我们检查了81只猕猴的CB1R免疫反应性(IR)轴突的密度和神经支配模式以及CB1R mRNA的表达,年龄不同从胚胎的82天到18岁。围产期灰质中的总体CB1R免疫反应性显着增加,并在产后1周达到成人水平。但是,层流分析显示,CB1R-1R轴突密度在1-2层中随年龄增长而显着降低,但在4层中则显着增加,尤其是在青春期。相比之下,CB1R mRNA水平在出生后1周最高,在接下来的2个月中下降,然后一直保持到成年。这些发现为大麻暴露对灵长类动物DLPFC电路成熟的离散,年龄依赖性影响提供了潜在的底物。

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