大麻蒸汽暴露改变精神分裂症神经发育模型的神经回路振荡活动:探索大麻成分的不同影响。

Schizophrenia Bulletin Open Pub Date : 2021-11-20 eCollection Date: 2022-01-01 DOI:10.1093/schizbullopen/sgab052
Bryan W Jenkins, Shoshana Buckhalter, Melissa L Perreault, Jibran Y Khokhar
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吸食大麻在精神分裂症患者中非常普遍,而且会加重精神分裂症的病程。为了了解接触大麻如何改变精神分裂症相关的振荡紊乱,我们研究了在新生儿腹侧海马病变(NVHL)精神分裂症大鼠模型中施用含有Δ9-四氢大麻酚(THC)或平衡THC/大麻二酚(CBD)的大麻蒸汽对振荡活动的影响。雄性 Sprague Dawley 大鼠在出生后第 7 天接受了病变或假手术。成年后,针对扣带皮层(Cg)、前边缘皮层(PrLC)、海马(HIP)和伏隔核(NAc)植入电极。采用交叉设计,两次接触之间有两周的冲淡期,在大鼠吸入 "纯四氢大麻酚 "大麻蒸汽(8-18% 四氢大麻酚/0% CBD)或 "均衡四氢大麻酚:CBD "大麻蒸汽(4-11% 四氢大麻酚/8.5-15.5% CBD)后,进行局部场电位记录。与对照组相比,NVHL 大鼠的 Cg、HIP 和 NAc 基线伽马功率降低,HIP-Cg 高伽马相干性降低。纯四氢大麻酚蒸汽暴露广泛抑制了振荡功率和相干性,甚至超过了在 NHVL 大鼠身上观察到的基线降低。然而,平衡的 THC:CBD 蒸汽并没有抑制振荡功率和相干性,在某些情况下还会增强振荡功率。对于 NVHL 大鼠,纯四氢大麻酚蒸汽使基线 HIP-Cg 高伽马相干性缺陷恢复正常。NHVL 大鼠的 HIPθ 到高伽马相位耦合延迟了 20 毫秒,这在两种暴露后的 PrLC 和 NAc 中都不明显。总之,大麻蒸汽暴露对 NVHL 大鼠的振荡活动有不同的影响,天然大麻素的相对成分可能是造成这种差异的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cannabis Vapor Exposure Alters Neural Circuit Oscillatory Activity in a Neurodevelopmental Model of Schizophrenia: Exploring the Differential Impact of Cannabis Constituents.

Cannabis use is highly prevalent in patients with schizophrenia and worsens the course of the disorder. To understand how exposure to cannabis changes schizophrenia-related oscillatory disruptions, we investigated the impact of administering cannabis vapor containing either Δ9-tetrahydrocannabinol (THC) or balanced THC/cannabidiol (CBD) on oscillatory activity in the neonatal ventral hippocampal lesion (NVHL) rat model of schizophrenia. Male Sprague Dawley rats underwent lesion or sham surgeries on postnatal day 7. In adulthood, electrodes were implanted targeting the cingulate cortex (Cg), the prelimbic cortex (PrLC), the hippocampus (HIP), and the nucleus accumbens (NAc). Local field potential recordings were obtained after rats were administered either the "THC-only" cannabis vapor (8-18% THC/0% CBD) or the "Balanced THC:CBD" cannabis vapor (4-11% THC/8.5-15.5% CBD) in a cross-over design with a 2-week wash-out period between exposures. Compared to controls, NVHL rats had reduced baseline gamma power in the Cg, HIP, and NAc, and reduced HIP-Cg high-gamma coherence. THC-only vapor exposure broadly suppressed oscillatory power and coherence, even beyond the baseline reductions observed in NHVL rats. Balanced THC:CBD vapor, however, did not suppress oscillatory power and coherence, and in some instances enhanced power. For NVHL rats, THC-only vapor normalized the baseline HIP-Cg high-gamma coherence deficits. NHVL rats demonstrated a 20 ms delay in HIP theta to high-gamma phase coupling, which was not apparent in the PrLC and NAc after both exposures. In conclusion, cannabis vapor exposure has varying impacts on oscillatory activity in NVHL rats, and the relative composition of naturally occurring cannabinoids may contribute to this variability.

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