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本文引用的文献

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Effects of endocannabinoid system modulation on cognitive and emotional behavior.内源性大麻素系统调节对认知和情绪行为的影响。
Front Behav Neurosci. 2011 Sep 13;5:57. doi: 10.3389/fnbeh.2011.00057. eCollection 2011.
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Differential role of anandamide and 2-arachidonoylglycerol in memory and anxiety-like responses.大麻素在记忆和焦虑样反应中的差异作用。
Biol Psychiatry. 2011 Sep 1;70(5):479-86. doi: 10.1016/j.biopsych.2011.04.022.
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Homeostatic changes of the endocannabinoid system in Parkinson's disease.帕金森病中内源性大麻素系统的稳态变化。
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Worsening of Huntington disease phenotype in CB1 receptor knockout mice.亨廷顿病表型在 CB1 受体敲除小鼠中的恶化。
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Cannabinoid receptor activation modifies NMDA receptor mediated release of intracellular calcium: implications for endocannabinoid control of hippocampal neural plasticity.大麻素受体激活调节 NMDA 受体介导的细胞内钙离子释放:对大麻素调控海马体神经可塑性的影响。
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Endocannabinoid 2-arachidonoylglycerol protects neurons against β-amyloid insults.内源性大麻素 2-花生四烯酰甘油能保护神经元免受β-淀粉样肽的侵害。
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Inhibition of fatty acid amide hydrolase unmasks CB1 receptor and TRPV1 channel-mediated modulation of glutamatergic synaptic transmission in midbrain periaqueductal grey.抑制脂肪酸酰胺水解酶会揭示中脑导水管周围灰质中 CB1 受体和 TRPV1 通道介导的谷氨酸能突触传递的调制。
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A new generation fatty acid amide hydrolase inhibitor protects against kainate-induced excitotoxicity.一种新型脂肪酸酰胺水解酶抑制剂可预防红藻氨酸诱导的兴奋性毒性。
J Mol Neurosci. 2011 Mar;43(3):493-502. doi: 10.1007/s12031-010-9472-4. Epub 2010 Nov 11.
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Hippocampal expression and distribution of CB1 receptors in the Amazonian rodent Proechimys: an animal model of resistance to epilepsy.在抗癫痫的亚马逊啮齿动物 Proechimys 中,海马 CB1 受体的表达和分布。
Brain Res. 2010 Jun 4;1335:35-40. doi: 10.1016/j.brainres.2010.03.031. Epub 2010 Mar 17.
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Dual blockade of FAAH and MAGL identifies behavioral processes regulated by endocannabinoid crosstalk in vivo.双重阻断 FAAH 和 MAGL 可鉴定体内受内源性大麻素串扰调控的行为过程。
Proc Natl Acad Sci U S A. 2009 Dec 1;106(48):20270-5. doi: 10.1073/pnas.0909411106. Epub 2009 Nov 16.

脂肪酸酰胺水解酶和单酰基甘油脂肪酶的等效力抑制-内源性大麻素系统的双重靶点,以防止癫痫病理。

Equipotent inhibition of fatty acid amide hydrolase and monoacylglycerol lipase - dual targets of the endocannabinoid system to protect against seizure pathology.

机构信息

Biotechnology Research and Training Center, William C. Friday Laboratory, University of North Carolina Pembroke, Pembroke, North Carolina 28372, USA.

出版信息

Neurotherapeutics. 2012 Oct;9(4):801-13. doi: 10.1007/s13311-011-0100-y.

DOI:10.1007/s13311-011-0100-y
PMID:22270809
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3480564/
Abstract

Advances in the understanding of the endogenous cannabinoid system have led to several therapeutic indications for new classes of compounds that enhance cannabinergic responses. Endocannabinoid levels are elevated during pathogenic conditions, and inhibitors of endocannabinoid inactivation promote such on-demand responses. The endocannabinoids anandamide and 2-arachidonoyl glycerol have been implicated in protective signaling against excitotoxic episodes, including seizures. To better understand modulatory pathways that can exploit such responses, we used the new generation compound AM6701 that blocks both the anandamide-deactivating enzyme fatty acid amide hydrolase (FAAH) and the 2-arachidonoyl glycerol-deactivating enzyme monoacylglycerol lipase (MAGL) with equal potency. Also studied was the structural isomer AM6702 which is 44-fold more potent for inhibiting FAAH versus MAGL. When applied before and during kainic acid (KA) exposure to cultured hippocampal slices, AM6701 protected against the resulting excitotoxic events of calpain-mediated cytoskeletal damage, loss of presynaptic and postsynaptic proteins, and pyknotic changes in neurons. The equipotent inhibitor was more effective than its close relative AM6702 at protecting against the neurodegenerative cascade assessed in the slice model. In vivo, AM6701 was also the more effective compound for reducing the severity of KA-induced seizures and protecting against behavioral deficits linked to seizure damage. Corresponding with the behavioral improvements, cytoskeletal and synaptic protection was elicited by AM6701, as found in the KA-treated hippocampal slice model. It is proposed that the influence of AM6701 on FAAH and MAGL exerts a synergistic action on the endocannabinoid system, thereby promoting the protective nature of cannabinergic signaling to offset excitotoxic brain injury.

摘要

内源性大麻素系统研究的进展,为增强大麻素反应的新化合物类别带来了几种治疗适应症。在发病条件下,内源性大麻素水平升高,并且内源性大麻素失活的抑制剂促进这种按需反应。内源性大麻素大麻酰胺和 2-花生四烯酰甘油已被牵涉到对抗兴奋性发作(包括癫痫发作)的保护信号中。为了更好地理解可以利用这种反应的调节途径,我们使用了新一代化合物 AM6701,该化合物以同等效力阻断大麻酰胺失活酶脂肪酸酰胺水解酶(FAAH)和 2-花生四烯酰甘油失活酶单酰基甘油脂肪酶(MAGL)。还研究了结构异构体 AM6702,其对 FAAH 的抑制作用比 MAGL 强 44 倍。当在培养的海马切片中在 KA 暴露之前和期间应用时,AM6701 可防止钙蛋白酶介导的细胞骨架损伤、突触前和突触后蛋白丢失以及神经元出现固缩变化等由此产生的兴奋性事件。这种等效力抑制剂比其近亲 AM6702 在保护切片模型中评估的神经退行性级联反应更有效。在体内,AM6701 也是减轻 KA 诱导的癫痫发作严重程度和保护与癫痫损伤相关的行为缺陷的更有效化合物。与行为改善相对应,在 KA 处理的海马切片模型中发现 AM6701 引起细胞骨架和突触保护。据认为,AM6701 对 FAAH 和 MAGL 的影响对内源性大麻素系统发挥协同作用,从而促进大麻素信号的保护性质以抵消兴奋性脑损伤。