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茶氨酸可预防青少年接触 Δ-9-四氢大麻酚的长期情感和认知副作用,并阻断中边缘皮质通路中相关的分子和神经元异常。

l-Theanine Prevents Long-Term Affective and Cognitive Side Effects of Adolescent Δ-9-Tetrahydrocannabinol Exposure and Blocks Associated Molecular and Neuronal Abnormalities in the Mesocorticolimbic Circuitry.

机构信息

Addiction Research Group, Schulich School of Medicine & Dentistry, University of Western Ontario, London, Ontario N6A 5C1, Canada.

Department of Anatomy & Cell Biology, Schulich School of Medicine & Dentistry, University of Western Ontario, London, Ontario N6A 3K7, Canada.

出版信息

J Neurosci. 2021 Jan 27;41(4):739-750. doi: 10.1523/JNEUROSCI.1050-20.2020. Epub 2020 Dec 2.

Abstract

Chronic adolescent exposure to Δ-9-tetrahydrocannabinol (THC) is linked to elevated neuropsychiatric risk and induces neuronal, molecular and behavioral abnormalities resembling neuropsychiatric endophenotypes. Previous evidence has revealed that the mesocorticolimbic circuitry, including the prefrontal cortex (PFC) and mesolimbic dopamine (DA) pathway are particularly susceptible to THC-induced pathologic alterations, including dysregulation of DAergic activity states, loss of PFC GABAergic inhibitory control and affective and cognitive abnormalities. There are currently limited pharmacological intervention strategies capable of preventing THC-induced neuropathological adaptations. l-Theanine is an amino acid analog of l-glutamate and l-glutamine derived from various plant sources, including green tea leaves. l-Theanine has previously been shown to modulate levels of GABA, DA, and glutamate in various neural regions and to possess neuroprotective properties. Using a preclinical model of adolescent THC exposure in male rats, we report that l-theanine pretreatment before adolescent THC exposure is capable of preventing long-term, THC-induced dysregulation of both PFC and VTA DAergic activity states, a neuroprotective effect that persists into adulthood. In addition, pretreatment with l-theanine blocked THC-induced downregulation of local GSK-3 (glycogen synthase kinase 3) and Akt signaling pathways directly in the PFC, two biomarkers previously associated with cannabis-related psychiatric risk and subcortical DAergic dysregulation. Finally, l-theanine powerfully blocked the development of both affective and cognitive abnormalities commonly associated with adolescent THC exposure, further demonstrating functional and long-term neuroprotective effects of l-theanine in the mesocorticolimbic system. With the increasing trend of cannabis legalization and consumption during adolescence, it is essential to expand knowledge on the potential effects of adolescent cannabis exposure on brain development and identify potential pharmacological strategies to minimize Δ-9-tetrahydrocannabinol (THC)-induced neuropathology. Previous evidence demonstrates that adolescent THC exposure induces long-lasting affective and cognitive abnormalities, mesocorticolimbic dysregulation, and schizophrenia-like molecular biomarkers that persist into adulthood. We demonstrate for the first time that l-theanine, an amino acid analog of l-glutamate and l-glutamine, is capable of preventing long-term THC side effects. l-Theanine prevented the development of THC-induced behavioral aberrations, blocked cortical downregulation of local GSK-3 (glycogen synthase kinase 3) and Akt signaling pathways, and normalized dysregulation of both PFC and VTA DAergic activity, demonstrating powerful and functional neuroprotective effects against THC-induced developmental neuropathology.

摘要

慢性青少年接触 Δ-9-四氢大麻酚(THC)与升高的神经精神风险有关,并诱导类似于神经精神表型的神经元、分子和行为异常。先前的证据表明,包括前额叶皮层(PFC)和中脑边缘多巴胺(DA)通路在内的中脑边缘皮质回路特别容易受到 THC 诱导的病理改变的影响,包括 DA 能活动状态的失调、PFC GABA 能抑制控制的丧失以及情感和认知异常。目前,能够预防 THC 诱导的神经病理适应的药理学干预策略非常有限。l-茶氨酸是一种来自各种植物来源的 l-谷氨酸和 l-谷氨酰胺的氨基酸类似物,包括绿茶叶。l-茶氨酸先前已被证明可调节各种神经区域中的 GABA、DA 和谷氨酸水平,并具有神经保护特性。使用雄性大鼠青春期 THC 暴露的临床前模型,我们报告说,在青春期 THC 暴露之前进行 l-茶氨酸预处理能够预防 PFC 和 VTA DA 能活动状态的长期、THC 诱导的失调,这种神经保护作用持续到成年期。此外,l-茶氨酸预处理可阻断 THC 诱导的 PFC 中局部 GSK-3(糖原合酶激酶 3)和 Akt 信号通路的下调,这两个生物标志物以前与大麻相关的精神风险和皮质下 DA 能失调有关。最后,l-茶氨酸有力地阻断了与青春期 THC 暴露相关的常见情感和认知异常的发展,进一步证明了 l-茶氨酸在中脑边缘系统中的功能和长期神经保护作用。随着青少年大麻合法化和消费的趋势不断增加,有必要扩大对青少年大麻暴露对大脑发育的潜在影响的认识,并确定潜在的药理学策略来最小化 Δ-9-四氢大麻酚(THC)引起的神经病理学。先前的证据表明,青春期 THC 暴露会引起持久的情感和认知异常、中脑边缘皮质失调和类似精神分裂症的分子生物标志物,这些异常一直持续到成年期。我们首次证明,l-茶氨酸是 l-谷氨酸和 l-谷氨酰胺的氨基酸类似物,能够预防长期的 THC 副作用。l-茶氨酸可预防 THC 诱导的行为异常的发展,阻断皮质下 GSK-3(糖原合酶激酶 3)和 Akt 信号通路的下调,并使 PFC 和 VTA DA 能活动的失调正常化,显示出强大的、有功能的神经保护作用,可预防 THC 引起的发育性神经病理学。

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