| Literature DB >> 31270353 |
Ren-Shi Li1,2, Ryo Fukumori3, Tomoki Takeda1, Yingxia Song1, Satoshi Morimoto4, Ruri Kikura-Hanajiri5, Taku Yamaguchi3, Kazuhito Watanabe6, Kousuke Aritake6, Yoshitaka Tanaka7, Hideyuki Yamada1, Tsuneyuki Yamamoto3, Yuji Ishii8.
Abstract
The impairment of learning and memory is a well-documented effect of both natural and synthetic cannabinoids. In the present study, we aimed to investigate the effect of acute administration of JWH-018, a synthetic cannabinoid, on the hippocampal metabolome to assess biochemical changes in vivo. JWH-018 elevated levels of the endocannabinoids, anandamide (AEA) and 2-arachidonoylglycerol (2-AG). The increase of endocannabinoid levels in response to JWH-018 could be inhibited by co-administration of AM251, a CB1 receptor antagonist. Biochemical analyses revealed that this was the result of suppression of two hydrolases involved in endocannabinoid degradation (fatty acid amide hydrolase [FAAH] and monoacylglycerol lipase [MAGL]). Additionally, we showed that JWH-018 causes a reduction in the levels of brain-derived neurotrophic factor (BDNF), which is known to modulate synaptic plasticity and adaptive processes underlying learning and memory. The decrease of BDNF following JWH-018 treatment was also rescued by co-administration of AM251. As both endocannabinoids and BDNF have been shown to modulate learning and memory in the hippocampus, the alteration of their levels in response to JWH-018 may explain the contribution of synthetic cannabinoids to impairment of memory.Entities:
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Year: 2019 PMID: 31270353 PMCID: PMC6610139 DOI: 10.1038/s41598-019-45969-4
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Effect of exposure to CCH, Δ9-THC and JWH-018 on locomotor activity (A), anxiety-like behavior (B), and learning memory (C,D) in male C57BL/6J mice. (A,B) Locomotor activity and effects on anxiety-like behavior were assessed using the open field test. (C) Recognition memory was measured using the novel object recognition test. (D) Antidepressant-like activity was determined by the tail suspension test. All drug-treated groups were compared with the respective vehicle-treated groups. Each bar represents the mean ± SEM of 5 mice for each treatment. *p < 0.05 indicates a significant difference compared to controls.
Figure 2Metabolomic profiling of the JWH-018-treated group compared to control or co-administration of AM251 using UPLC-TOF/MS. Panels A and C represent the OPLS and S-plot mode of the control versus JWH-018 group. Panels Band D represent the OPLS and S-plot mode of the JWH-018 group versus co-administration of AM251 group. Fragment ions with correlation coefficients of more than +0.7 and less than −0.7 are shown as red dots (panels C and D). 10 animals were used per group.
Figure 3Selected ion monitoring of AEA in the hippocampus of C57BL/6J mouse. Selected ion monitoring at m/z 348.2895 for the determination of the hippocampus content of AEA. The retention time for AEA was 14.54 min. (A) Control hippocampus extract; (B) hippocampus extract from JWH-018-treated mice; (C) hippocampus extract from JWH-018- and AM251-treated mice. One of the representative data of each group is shown.
Figure 5JWH-018 elicits the accumulation of AEA and 2-AG in the hippocampus of C57BL/6J mice. The content of AEA and 2-AG in hippocampus of male mice was determined using of UPLC-TOF/MS. The bars represent the means ± SEM. of 5 mice. *p < 0.05 indicates a significant difference compared to controls.
Figure 6Effect of JWH-018 on the mRNA expression of AEA and 2-AG synthesizing and degrading enzymes, respectively, in the hippocampus of male mice. Mice were exposed to either JWH-018 (1 mg/kg) or vehicle, and their hippocampi were collected 8 h after treatment. The relative levels of mRNAs indicated were analyzed by real-time RT-PCR and normalized to β-actin mRNA. Each bar represents the means ± SEM of 4–6 animals. *p < 0.05 or **p < 0.01 indicate significant difference compared to controls.
Figure 7Effect of administration of JWH-018 on BDNF mRNA and protein levels in the hippocampus. The bars represent the means ± SEM of 3 mice. **p < 0.01 indicates significant difference compared to controls.