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1.
Sci Rep ; 11(1): 14371, 2021 07 13.
Artigo em Inglês | MEDLINE | ID: mdl-34257382

RESUMO

Regular physical exercise enhances memory functions, synaptic plasticity in the hippocampus, and brain derived neurotrophic factor (BDNF) levels. Likewise, short periods of exercise, or acute exercise, benefit hippocampal plasticity in rodents, via increased endocannabinoids (especially anandamide, AEA) and BDNF release. Yet, it remains unknown whether acute exercise has similar effects on BDNF and AEA levels in humans, with parallel influences on memory performance. Here we combined blood biomarkers, behavioral, and fMRI measurements to assess the impact of a single session of physical exercise on associative memory and underlying neurophysiological mechanisms in healthy male volunteers. For each participant, memory was tested after three conditions: rest, moderate or high intensity exercise. A long-term memory retest took place 3 months later. At both test and retest, memory performance after moderate intensity exercise was increased compared to rest. Memory after moderate intensity exercise correlated with exercise-induced increases in both AEA and BNDF levels: while AEA was associated with hippocampal activity during memory recall, BDNF enhanced hippocampal memory representations and long-term performance. These findings demonstrate that acute moderate intensity exercise benefits consolidation of hippocampal memory representations, and that endocannabinoids and BNDF signaling may contribute to the synergic modulation of underlying neural plasticity mechanisms.


Assuntos
Fator Neurotrófico Derivado do Encéfalo/metabolismo , Endocanabinoides/metabolismo , Exercício Físico , Hipocampo/fisiologia , Memória , Adolescente , Adulto , Ácidos Araquidônicos/biossíntese , Comportamento , Biomarcadores/metabolismo , Endocanabinoides/biossíntese , Terapia por Exercício , Frequência Cardíaca , Humanos , Aprendizagem , Imageamento por Ressonância Magnética , Masculino , Plasticidade Neuronal , Alcamidas Poli-Insaturadas , Adulto Jovem
2.
Bioorg Chem ; 113: 105014, 2021 08.
Artigo em Inglês | MEDLINE | ID: mdl-34077840

RESUMO

The biocatalytic epoxidation of ethanolamides of ω-3 fatty acids EPA and DHA, regarded as biologically active ω-3 endocannabinoids, in the presence of a peroxygenase-containing preparation from oat flour was investigated. Good regio- and steroselectivity toward the formation of the epoxide on the terminal double bond in the chain was observed with both these fatty acid derivatives and chiral monoepoxides 1 or 2 in 74% optical purity and 51-53% yields were isolated and spectroscopically characterized. The use of acetone as cosolvent in the reaction medium allowed to increase the concentration of starting substrates up to 40 mM and to further improve the selectivity in the epoxidation of DHA-EA. Due to the easy availability of the enzymatic preparation, the method offers a valuable strategy for the access to oxyfunctionalized derivatives of fatty acids.


Assuntos
Avena/enzimologia , Endocanabinoides/química , Compostos de Epóxi/metabolismo , Oxigenases de Função Mista/metabolismo , Biocatálise , Ácidos Docosa-Hexaenoicos/biossíntese , Ácidos Docosa-Hexaenoicos/química , Ácido Eicosapentaenoico/biossíntese , Ácido Eicosapentaenoico/química , Endocanabinoides/biossíntese , Compostos de Epóxi/química , Farinha/análise , Cinética , Estereoisomerismo
3.
J Mol Neurosci ; 71(10): 2022-2034, 2021 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-33471311

RESUMO

Depression is a common mental disorder and is the leading cause of suicide globally. Because of the significant diversity in mental disorders, accurate diagnosis is difficult. Hence, the investigation of novel biomarkers is a key research perspective in psychotherapy to enable an individually tailored treatment approach. The prefrontal cortex (PFC) is a vital cortical region whose circuitry has been implicated in the development of depressive disorder. The endocannabinoid system (ECS) has garnered increasing attention because of its involvement in several diverse physiological brain processes including regulation of emotional, motivational and cognitive functions. The current review article explores the function of the key elements of the ECS as a biomarker in depressive disorder. The activity of endocannabinoids is thought to be moderated by the CB1 receptors in the central nervous system (CNS). Variations in the concentration of endocannabinoids and the binding affinity of CB1 receptors and their density have been identified in the PFC of persons with depression. Such discoveries support our theory that alteration in endocannabinoid function leads to the pathophysiological features of depressive disorders. Moreover, evidence from animal and human studies has revealed that dysfunction in endocannabinoid signalling can produce depression-like behaviours; therefore, improvement of endocannabinoid signalling may represent a new therapeutic approach for the management of depressive disorders.


Assuntos
Depressão/metabolismo , Endocanabinoides/metabolismo , Transdução de Sinais , Animais , Endocanabinoides/biossíntese , Humanos , Córtex Pré-Frontal/metabolismo , Receptores de Canabinoides/metabolismo
4.
J Intern Med ; 290(1): 2-26, 2021 07.
Artigo em Inglês | MEDLINE | ID: mdl-33348434

RESUMO

In this review, the state of the art for compounds affecting the endocannabinoid (eCB) system is described with a focus on the treatment of pain. Amongst directly acting CB receptor ligands, clinical experience with ∆9 -tetrahydracannabinol and medical cannabis in chronic non-cancer pain indicates that there are differences between the benefits perceived by patients and the at best modest effect seen in meta-analyses of randomized controlled trials. The reason for this difference is not known but may involve differences in the type of patients that are recruited, the study conditions that are chosen and the degree to which biases such as reporting bias are operative. Other directly acting CB receptor ligands such as biased agonists and allosteric receptor modulators have not yet reached the clinic. Amongst indirectly acting compounds targeting the enzymes responsible for the synthesis and catabolism of the eCBs anandamide and 2-arachidonoylglycerol, fatty acid amide hydrolase (FAAH) inhibitors have been investigated clinically but were per se not useful for the treatment of pain, although they may be useful for the treatment of post-traumatic stress disorder and cannabis use disorder. Dual-acting compounds targeting this enzyme and other targets such as cyclooxygenase-2 or transient potential vanilloid receptor 1 may be a way forward for the treatment of pain.


Assuntos
Dor Crônica/tratamento farmacológico , Desenvolvimento de Medicamentos , Endocanabinoides/metabolismo , Endocanabinoides/uso terapêutico , Agonistas de Receptores de Canabinoides/uso terapêutico , Dronabinol/uso terapêutico , Endocanabinoides/biossíntese , Humanos , Ligantes , Receptores de Canabinoides/metabolismo
5.
Int J Mol Sci ; 21(22)2020 Nov 20.
Artigo em Inglês | MEDLINE | ID: mdl-33233525

RESUMO

We investigated the synthesis of N-docosahexaenoylethanolamine (synaptamide) in neuronal cells from unesterified docosahexaenoic acid (DHA) or DHA-lysophosphatidylcholine (DHA-lysoPC), the two major lipid forms that deliver DHA to the brain, in order to understand the formation of this neurotrophic and neuroprotective metabolite of DHA in the brain. Both substrates were taken up in Neuro2A cells and metabolized to N-docosahexaenoylphosphatidylethanolamine (NDoPE) and synaptamide in a time- and concentration-dependent manner, but unesterified DHA was 1.5 to 2.4 times more effective than DHA-lysoPC at equimolar concentrations. The plasmalogen NDoPE (pNDoPE) amounted more than 80% of NDoPE produced from DHA or DHA-lysoPC, with 16-carbon-pNDoPE being the most abundant species. Inhibition of N-acylphosphatidylethanolamine-phospholipase D (NAPE-PLD) by hexachlorophene or bithionol significantly decreased the synaptamide production, indicating that synaptamide synthesis is mediated at least in part via NDoPE hydrolysis. NDoPE formation occurred much more rapidly than synaptamide production, indicating a precursor-product relationship. Although NDoPE is an intermediate for synaptamide biosynthesis, only about 1% of newly synthesized NDoPE was converted to synaptamide, possibly suggesting additional biological function of NDoPE, particularly for pNDoPE, which is the major form of NDoPE produced.


Assuntos
Ácidos Araquidônicos/biossíntese , Ácidos Docosa-Hexaenoicos/metabolismo , Endocanabinoides/biossíntese , Etanolaminas/metabolismo , Lisofosfatidilcolinas/metabolismo , Neurônios/metabolismo , Animais , Ácidos Araquidônicos/antagonistas & inibidores , Ácidos Araquidônicos/isolamento & purificação , Bitionol/farmacologia , Isótopos de Carbono , Linhagem Celular Tumoral , Cromatografia Líquida , Endocanabinoides/antagonistas & inibidores , Endocanabinoides/isolamento & purificação , Etanolaminas/antagonistas & inibidores , Etanolaminas/isolamento & purificação , Hexaclorofeno/farmacologia , Cinética , Camundongos , Neurônios/citologia , Neurônios/efeitos dos fármacos , Plasmalogênios/antagonistas & inibidores , Plasmalogênios/biossíntese , Plasmalogênios/isolamento & purificação , Alcamidas Poli-Insaturadas/antagonistas & inibidores , Alcamidas Poli-Insaturadas/isolamento & purificação , Espectrometria de Massas em Tandem
6.
Mol Cell Neurosci ; 109: 103566, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-33049367

RESUMO

Human SH-SY5Y neuroblastoma cells stably expressing exogenous CB1 (CB1XS) or CB2 (CB2XS) receptors were developed to investigate endocannabinoid signaling in the extension of neuronal projections. Expression of cannabinoid receptors did not alter proliferation rate, viability, or apoptosis relative to parental SH-SY5Y. Transcripts for endogenous cannabinoid system enzymes (diacylglycerol lipase, monoacylglycerol lipase, α/ß-hydrolase domain containing proteins 6 and 12, N-acyl phosphatidylethanolamine-phospholipase D, and fatty acid amide hydrolase) were not altered by CB1 or CB2 expression. Endocannabinoid ligands 2-arachidonoylglycerol (2-AG) and anandamide were quantitated in SH-SY5Y cells, and diacylglycerol lipase inhibitor tetrahydrolipstatin decreased 2-AG abundance by 90% but did not alter anandamide abundance. M3 muscarinic agonist oxotremorine M, and inhibitors of monoacylglycerol lipase and α/ß hydrolase domain containing proteins 6 &12 increased 2-AG abundance. CB1 receptor expression increased lengths of short (<30 µm) and long (>30 µm) projections, and this effect was significantly reduced by tetrahydrolipstatin, indicative of stimulation by endogenously produced 2-AG. Pertussis toxin, Gßγ inhibitor gallein, and ß-arrestin inhibitor barbadin did not significantly alter long projection length in CB1XS, but significantly reduced short projections, with gallein having the greatest inhibition. The rho kinase inhibitor Y27632 increased CB1 receptor-mediated long projection extension, indicative of actin cytoskeleton involvement. CB1 receptor expression increased GAP43 and ST8SIA2 mRNA and decreased ITGA1 mRNA, whereas CB2 receptor expression increased NCAM and SYT mRNA. We propose that basal endogenous production of 2-AG provides autocrine stimulation of CB1 receptor signaling through Gi/o, Gßγ, and ß-arrestin mechanisms to promote neuritogenesis, and rho kinase influences process extension.


Assuntos
Endocanabinoides/fisiologia , Neuritos/ultraestrutura , Receptor CB1 de Canabinoide/fisiologia , Receptor CB2 de Canabinoide/fisiologia , Citoesqueleto de Actina/ultraestrutura , Amidas/farmacologia , Apoptose/efeitos dos fármacos , Ácidos Araquidônicos/biossíntese , Linhagem Celular Tumoral , Endocanabinoides/biossíntese , Regulação da Expressão Gênica/efeitos dos fármacos , Glicerídeos/biossíntese , Humanos , Lipase Lipoproteica/antagonistas & inibidores , Lipase Lipoproteica/metabolismo , Proteínas de Neoplasias/efeitos dos fármacos , Proteínas de Neoplasias/fisiologia , Proteínas do Tecido Nervoso/biossíntese , Proteínas do Tecido Nervoso/genética , Neuroblastoma , Orlistate/farmacologia , Oxotremorina/farmacologia , Toxina Pertussis/farmacologia , Alcamidas Poli-Insaturadas , Piridinas/farmacologia , Pirimidinas/farmacologia , RNA Mensageiro/biossíntese , RNA Mensageiro/genética , Receptor CB1 de Canabinoide/efeitos dos fármacos , Receptor CB2 de Canabinoide/efeitos dos fármacos , Proteínas Recombinantes/biossíntese , Transdução de Sinais , Xantenos/farmacologia
7.
Cells ; 9(9)2020 09 19.
Artigo em Inglês | MEDLINE | ID: mdl-32961767

RESUMO

In eukaryotes, the C20:4 polyunsaturated fatty acid arachidonic acid (AA) plays important roles as a phospholipid component, signaling molecule and precursor of the endocannabinoid-prostanoid axis. Accordingly, the absence of AA causes detrimental effects. Here, compensatory mechanisms involved in AA deficiency in Caenorhabditis elegans were investigated. We show that the ω-3 C20:4 polyunsaturated fatty acid juniperonic acid (JuA) is generated in the C. elegansfat-3(wa22) mutant, which lacks Δ6 desaturase activity and cannot generate AA and ω-3 AA. JuA partially rescued the loss of function of AA in growth and development. Additionally, we observed that supplementation of AA and ω-3 AA modulates lifespan of fat-3(wa22) mutants. We described a feasible biosynthetic pathway that leads to the generation of JuA from α-linoleic acid (ALA) via elongases ELO-1/2 and Δ5 desaturase which is rate-limiting. Employing liquid chromatography mass spectrometry (LC-MS/MS), we identified endocannabinoid-like ethanolamine and glycerol derivatives of JuA and ω-3 AA. Like classical endocannabinoids, these lipids exhibited binding interactions with NPR-32, a G protein coupled receptor (GPCR) shown to act as endocannabinoid receptor in C. elegans. Our study suggests that the eicosatetraenoic acids AA, ω-3 AA and JuA share similar biological functions. This biosynthetic plasticity of eicosatetraenoic acids observed in C. elegans uncovers a possible biological role of JuA and associated ω-3 endocannabinoids in Δ6 desaturase deficiencies, highlighting the importance of ALA.


Assuntos
Caderinas/genética , Proteínas de Caenorhabditis elegans/genética , Caenorhabditis elegans/genética , Endocanabinoides/biossíntese , Fator de Crescimento Epidérmico/genética , Ácidos Graxos Insaturados/metabolismo , Longevidade/genética , Acetiltransferases/genética , Acetiltransferases/metabolismo , Animais , Ácido Araquidônico/deficiência , Caderinas/deficiência , Caenorhabditis elegans/metabolismo , Proteínas de Caenorhabditis elegans/metabolismo , Dessaturase de Ácido Graxo Delta-5 , Fator de Crescimento Epidérmico/deficiência , Ácidos Graxos Dessaturases/genética , Ácidos Graxos Dessaturases/metabolismo , Regulação da Expressão Gênica , Ácido Linoleico/metabolismo , Mutação , Receptores Acoplados a Proteínas G/genética , Receptores Acoplados a Proteínas G/metabolismo , Transdução de Sinais
8.
Alcohol ; 88: 101-108, 2020 11.
Artigo em Inglês | MEDLINE | ID: mdl-32738384

RESUMO

The endocannabinoid system (ECS) has been shown to play a critical role in the regulation of alcohol intake and alcohol-related behaviors. However, there are discrepancies between studies examining the interaction of the ECS and alcohol administration due to different experimental procedures. The present study aims at clarifying the time course effects of acute alcohol consumption on the ECS in the peripheral circulatory systems and central nervous systems of the same cohort of subjects. We have closely monitored the critical indicators reflecting changes of the ECS during the entire process from alcohol absorption to its metabolization, after acute alcohol (4.5 g/kg) intake by intragastric administration, including two key endocannabinoids (arachidonoylethanolamide and 2-arachidonoylglycerol) and their hydrolytic enzymes (fatty acid amide hydrolase and monoacylglycerol lipase) in blood and three brain regions, as well as a crucial and abundant receptor (cannabinoid 1 receptor) of the ECS in the three brain regions. Our results indicate that acute alcohol consumption inhibits endocannabinoid (eCB) production in the blood and in the prefrontal cortex of the brain, whereas the reverse was observed in the brain regions of the hippocampus and striatum. The variation between levels of two hydrolytic enzymes in the blood and in the three brain regions failed to reach statistical significance. After acute alcohol consumption, CB1R levels in striatum, hippocampus, and prefrontal cortex showed a similar trend of increasing, while the significant changes occurred at different time points. The present findings reveal different ligand-receptor changing patterns in the blood and in different brain regions, supporting the notion that the ECS plays a vital role in acute alcohol intoxication. Additionally, the temporal effects of alcohol on key elements of the ECS of blood and different brain nuclei were different. Our investigation may lead to a deeper understanding of the effect of acute alcohol consumption on the ECS.


Assuntos
Intoxicação Alcoólica , Encéfalo/efeitos dos fármacos , Endocanabinoides , Animais , Encéfalo/metabolismo , Endocanabinoides/biossíntese , Endocanabinoides/sangue , Monoacilglicerol Lipases/metabolismo , Ratos , Receptor CB1 de Canabinoide/metabolismo
9.
Arch Toxicol ; 94(2): 427-438, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31912162

RESUMO

Chronic alcohol feeding increases the levels of 2-arachidonoylglycerol (2-AG) in the liver, which activates hepatic cannabinoid receptor type 1 (CB1R), leading to oxidative liver injury. 2-AG biosynthesis is catalyzed by diacylglycerol lipase (DAGL). However, the mechanisms regulating hepatic DAGL gene expression and 2-AG production are largely unknown. In this study, we show that CB1R-induced estrogen-related receptor γ (ERRγ) controls hepatic DAGL gene expression and 2-AG levels. Arachidonyl-2'-chloroethylamide (ACEA), a synthetic CB1R agonist, significantly upregulated ERRγ, DAGLα, and DAGLß, and increased 2-AG levels in the liver (10 mg/kg) and hepatocytes (10 µM) of wild-type (WT) mice. ERRγ overexpression upregulated DAGLα and DAGLß expressions and increased 2-AG levels, whereas ERRγ knockdown abolished ACEA-induced DAGLα, DAGLß, and 2-AG in vitro and in vivo. Promoter assays showed that ERRγ positively regulated DAGLα and DAGLß transcription by binding to the ERR response element in the DAGLα and DAGLß promoters. Chronic alcohol feeding (27.5% of total calories) induced hepatic steatosis and upregulated ERRγ, leading to increased DAGLα, DAGLß, or 2-AG in WT mice, whereas these alcohol-induced effects did not occur in hepatocyte-specific CB1R knockout mice or in those treated with the ERRγ inverse agonist GSK5182 (40 mg/kg in mice and 10 µM in vitro). Taken together, these results indicate that suppression of alcohol-induced DAGLα and DAGLß gene expressions and 2-AG levels by an ERRγ-specific inverse agonist may be a novel and attractive therapeutic approach for the treatment of alcoholic liver disease.


Assuntos
Ácidos Araquidônicos/biossíntese , Ácidos Araquidônicos/farmacologia , Endocanabinoides/biossíntese , Etanol/toxicidade , Glicerídeos/biossíntese , Lipase Lipoproteica/genética , Receptores de Estrogênio/metabolismo , Animais , Regulação da Expressão Gênica/efeitos dos fármacos , Células Hep G2 , Hepatócitos/efeitos dos fármacos , Hepatócitos/metabolismo , Humanos , Lipase Lipoproteica/metabolismo , Fígado/efeitos dos fármacos , Fígado/metabolismo , Masculino , Camundongos Endogâmicos C57BL , Camundongos Knockout , Receptor CB1 de Canabinoide/agonistas , Receptor CB1 de Canabinoide/genética , Receptor CB1 de Canabinoide/metabolismo , Receptores de Estrogênio/genética , Tamoxifeno/análogos & derivados , Tamoxifeno/farmacologia
10.
Addict Biol ; 25(3): e12768, 2020 05.
Artigo em Inglês | MEDLINE | ID: mdl-31056846

RESUMO

Individuals with alcohol use disorder exhibit compulsive habitual behaviors that are thought to be, in part, a consequence of chronic and persistent use of alcohol. The endocannabinoid system plays a critical role in habit learning and in ethanol self-administration, but the role of this neuromodulatory system in the expression of habitual alcohol seeking is unknown. Here, we investigated the role of the endocannabinoid system in established alcohol habits using contingency degradation in male C57BL/6 mice. We found that administration of the novel diacyl glycerol lipase inhibitor DO34, which decreases the biosynthesis of the endocannabinoid 2-arachidonoyl glycerol (2-AG), reduced habitual responding for ethanol and ethanol approach behaviors. Moreover, administration of the endocannabinoid transport inhibitor AM404 or the cannabinoid receptor type 1 antagonist AM251 produced similar reductions in habitual responding for ethanol and ethanol approach behaviors. Notably, AM404 was also able to reduce ethanol seeking and consumption in mice that were insensitive to lithium chloride-induced devaluation of ethanol. Conversely, administration of JZL184, a monoacyl glycerol lipase inhibitor that increases levels of 2-AG, increased motivation to respond for ethanol on a progressive ratio schedule of reinforcement. These results demonstrate an important role for endocannabinoid signaling in the motivation to seek ethanol, in ethanol-motivated habits, and suggest that pharmacological manipulations of endocannabinoid signaling could be effective therapeutics for treating alcohol use disorder.


Assuntos
Consumo de Bebidas Alcoólicas/metabolismo , Ácidos Araquidônicos/metabolismo , Endocanabinoides/metabolismo , Glicerídeos/metabolismo , Hábitos , Motivação , Animais , Ácidos Araquidônicos/biossíntese , Ácidos Araquidônicos/farmacologia , Benzodioxóis/farmacologia , Antagonistas de Receptores de Canabinoides/farmacologia , Depressores do Sistema Nervoso Central , Comportamento de Procura de Droga , Endocanabinoides/biossíntese , Etanol , Glicerídeos/biossíntese , Lipase Lipoproteica/antagonistas & inibidores , Cloreto de Lítio/farmacologia , Camundongos , Monoacilglicerol Lipases/antagonistas & inibidores , Piperidinas/farmacologia , Pirazóis/farmacologia , Receptor CB1 de Canabinoide/antagonistas & inibidores
11.
Nat Chem Biol ; 16(2): 197-205, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31844304

RESUMO

Phospholipids, the most abundant membrane lipid components, are crucial in maintaining membrane structures and homeostasis for biofunctions. As a structurally diverse and tightly regulated system involved in multiple organelles, phospholipid metabolism is complicated to manipulate. Thus, repurposing phospholipids for lipid-derived chemical production remains unexplored. Herein, we develop a Saccharomyces cerevisiae platform for de novo production of oleoylethanolamide, a phospholipid derivative with promising pharmacological applications in ameliorating lipid dysfunction and neurobehavioral symptoms. Through deregulation of phospholipid metabolism, screening of biosynthetic enzymes, engineering of subcellular trafficking and process optimization, we could produce oleoylethanolamide at a titer of 8,115.7 µg l-1 and a yield on glucose of 405.8 µg g-1. Our work provides a proof-of-concept study for systemically repurposing phospholipid metabolism for conversion towards value-added biological chemicals, and this multi-faceted framework may shed light on tailoring phospholipid metabolism in other microbial hosts.


Assuntos
Endocanabinoides/biossíntese , Engenharia Metabólica/métodos , Ácidos Oleicos/biossíntese , Fosfolipídeos/metabolismo , Saccharomyces cerevisiae/metabolismo , Acil Coenzima A/genética , CDPdiacilglicerol-Serina O-Fosfatidiltransferase/genética , CDPdiacilglicerol-Serina O-Fosfatidiltransferase/metabolismo , Coenzima A Ligases/genética , Endocanabinoides/genética , Enzimas/genética , Enzimas/metabolismo , Proteínas de Escherichia coli/genética , Proteínas de Escherichia coli/metabolismo , Regulação Fúngica da Expressão Gênica , Glucose/metabolismo , Lisofosfolipase/genética , Lisofosfolipase/metabolismo , Microrganismos Geneticamente Modificados , Monoacilglicerol Lipases/genética , Monoacilglicerol Lipases/metabolismo , Ácidos Oleicos/genética , Proteínas Periplásmicas/genética , Proteínas Periplásmicas/metabolismo , Fosfolipídeos/genética , Saccharomyces cerevisiae/genética , Proteínas de Saccharomyces cerevisiae/genética , Proteínas de Saccharomyces cerevisiae/metabolismo
12.
Sci Rep ; 9(1): 12866, 2019 09 19.
Artigo em Inglês | MEDLINE | ID: mdl-31537814

RESUMO

Heavy use of cannabis (marijuana) has been associated with decreased semen quality, which may reflect disruption of the endocannabinoid system (ECS) in the male reproductive tract by exogenous cannabinoids. Components of ECS have been previously described in human spermatozoa and in the rodent testis but there is little information on the ECS expression within the human testis. In this study we characterised the main components of the ECS by immunohistochemistry (IHC) on archived testis tissue samples from 15 patients, and by in silico analysis of existing transcriptome datasets from testicular cell populations. The presence of 2-arachidonoylglycerol (2-AG) in the human testis was confirmed by matrix-assisted laser desorption ionization imaging analysis. Endocannabinoid-synthesising enzymes; diacylglycerol lipase (DAGL) and N-acyl-phosphatidylethanolamine-specific phospholipase D (NAPE-PLD), were detected in germ cells and somatic cells, respectively. The cannabinoid receptors, CNR1 and CNR2 were detected at a low level in post-meiotic germ cells and Leydig- and peritubular cells. Different transcripts encoding distinct receptor isoforms (CB1, CB1A, CB1B and CB2A) were also differentially distributed, mainly in germ cells. The cannabinoid-metabolising enzymes were abundantly present; the α/ß-hydrolase domain-containing protein 2 (ABHD2) in all germ cell types, except early spermatocytes, the monoacylglycerol lipase (MGLL) in Sertoli cells, and the fatty acid amide hydrolase (FAAH) in late spermatocytes and post-meiotic germ cells. Our findings are consistent with a direct involvement of the ECS in regulation of human testicular physiology, including spermatogenesis and Leydig cell function. The study provides new evidence supporting observations that recreational cannabis can have possible deleterious effects on human testicular function.


Assuntos
Ácidos Araquidônicos/biossíntese , Endocanabinoides/biossíntese , Glicerídeos/biossíntese , Receptor CB1 de Canabinoide/biossíntese , Receptor CB2 de Canabinoide/biossíntese , Células de Sertoli/metabolismo , Espermatócitos/metabolismo , Adulto , Amidoidrolases/metabolismo , Humanos , Hidrolases/metabolismo , Lipase Lipoproteica/metabolismo , Masculino , Monoacilglicerol Lipases/metabolismo , Fosfolipase D/metabolismo , Análise do Sêmen
13.
Sci Rep ; 9(1): 9621, 2019 07 03.
Artigo em Inglês | MEDLINE | ID: mdl-31270353

RESUMO

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.


Assuntos
Encéfalo/efeitos dos fármacos , Encéfalo/fisiologia , Canabinoides/farmacologia , Endocanabinoides/biossíntese , Indóis/farmacologia , Naftalenos/farmacologia , Animais , Biomarcadores , Fator Neurotrófico Derivado do Encéfalo/genética , Fator Neurotrófico Derivado do Encéfalo/metabolismo , Canabinoides/efeitos adversos , Canabinoides/química , Hipocampo/metabolismo , Indóis/efeitos adversos , Indóis/química , Aprendizagem/efeitos dos fármacos , Memória/efeitos dos fármacos , Metaboloma , Metabolômica/métodos , Camundongos , Naftalenos/efeitos adversos , Naftalenos/química , Análise Espectral
14.
Molecules ; 24(7)2019 Apr 03.
Artigo em Inglês | MEDLINE | ID: mdl-30987110

RESUMO

The hippocampus is thought to encode information by altering synaptic strength via synaptic plasticity. Some forms of synaptic plasticity are induced by lipid-based endocannabinoid signaling molecules that act on cannabinoid receptors (CB1). Endocannabinoids modulate synaptic plasticity of hippocampal pyramidal cells and stratum radiatum interneurons; however, the role of endocannabinoids in mediating synaptic plasticity of stratum oriens interneurons is unclear. These feedback inhibitory interneurons exhibit presynaptic long-term potentiation (LTP), but the exact mechanism is not entirely understood. We examined whether oriens interneurons produce endocannabinoids, and whether endocannabinoids are involved in presynaptic LTP. Using patch-clamp electrodes to extract single cells, we analyzed the expression of endocannabinoid biosynthetic enzyme mRNA by reverse transcription and then real-time PCR (RT-PCR). The cellular expression of calcium-binding proteins and neuropeptides were used to identify interneuron subtype. RT-PCR results demonstrate that stratum oriens interneurons express mRNA for both endocannabinoid biosynthetic enzymes and the type I metabotropic glutamate receptors (mGluRs), necessary for endocannabinoid production. Immunohistochemical staining further confirmed the presence of diacylglycerol lipase alpha, an endocannabinoid-synthesizing enzyme, in oriens interneurons. To test the role of endocannabinoids in synaptic plasticity, we performed whole-cell experiments using high-frequency stimulation to induce long-term potentiation in somatostatin-positive cells. This plasticity was blocked by AM-251, demonstrating CB1-dependence. In addition, in the presence of a fatty acid amide hydrolase inhibitor (URB597; 1 µM) and MAG lipase inhibitor (JZL184; 1 µM) that increase endogenous anandamide and 2-arachidonyl glycerol, respectively, excitatory current responses were potentiated. URB597-induced potentiation was blocked by CB1 antagonist AM-251 (2 µM). Collectively, this suggests somatostatin-positive oriens interneuron LTP is CB1-dependent.


Assuntos
Endocanabinoides/biossíntese , Hipocampo/fisiologia , Potenciação de Longa Duração , Receptor CB1 de Canabinoide/genética , Receptor CB1 de Canabinoide/metabolismo , Somatostatina/metabolismo , Animais , Biomarcadores , Regulação Enzimológica da Expressão Gênica , Genes Reporter , Imuno-Histoquímica , Camundongos , Camundongos Knockout
15.
Neurochem Int ; 125: 57-66, 2019 05.
Artigo em Inglês | MEDLINE | ID: mdl-30769029

RESUMO

In the study, the neuroprotectivities of forsythiaside, a main constituent of Forsythia suspensa (Thunb.) Vahl (F. suspensa, Lianqiao in Chinese), were investigated in the hippocampal slices. Forsythiaside suppressed the overexpression of cyclooxygenase-2 (COX-2) and monoacylglycerol lipase (MAGL) proteins induced by ß-amyloid (Aß25-35) to upregulate the levels of 2-arachidonoylglycerol (2-AG), an endogenous endocannabinoids. Then the inhibition of forsythiaside on COX-2 was deeply studied by the molecular docking. Forsythiaside prevented neuroinflammation and apoptosis from Aß25-35 insults, and this action appeared to be mediated via cannabinoid receptor 1 (CB1R)-dependent nuclear factor-κB (NF-κB) signaling pathways. More importantly, forsythiaside functionally improved Aß25-35-induced learning and memory deficits, which was indicated by long term potentiation (LTP). Taken together, forsythiaside may have therapeutic potential for Alzheimer's diseases (AD) by increasing the levels of 2-AG.


Assuntos
Peptídeos beta-Amiloides/toxicidade , Ácidos Araquidônicos/biossíntese , Endocanabinoides/biossíntese , Glicerídeos/biossíntese , Glicosídeos/farmacologia , Hipocampo/metabolismo , NF-kappa B/metabolismo , Fragmentos de Peptídeos/toxicidade , Receptor CB1 de Canabinoide/metabolismo , Animais , Ácidos Araquidônicos/química , Agonistas de Receptores de Canabinoides/farmacologia , Medicamentos de Ervas Chinesas/farmacologia , Endocanabinoides/química , Glicerídeos/química , Hipocampo/efeitos dos fármacos , Camundongos , Camundongos Endogâmicos ICR , Técnicas de Cultura de Órgãos , Estrutura Secundária de Proteína , Transdução de Sinais/efeitos dos fármacos , Transdução de Sinais/fisiologia , Regulação para Cima/efeitos dos fármacos , Regulação para Cima/fisiologia
16.
FASEB J ; 33(3): 3167-3179, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30399323

RESUMO

Oleoylethanolamide (OEA), a fatty acid ethanolamide (FAE), is a lipid mediator that controls food intake and lipid metabolism. Accumulating data imply the importance of intestinal OEA in controlling satiety in addition to gastrointestinal peptide hormones. Although the biochemical pathway of FAE production has been illustrated, the enzymes responsible for the cleavage of OEA from its precursor N-acyl-phosphatidylethanolamine (NAPE) must be identified among reported candidates in the gut. In this study, we assessed the involvement of NAPE-specific phospholipase D (NAPE-PLD), which can directly release FAEs from NAPE, in intestinal OEA synthesis and lipid metabolism. Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPER-associated protein 9 (Cas9)-mediated deletion of the NAPE-PLD gene in intestinal epithelial-like Caco-2 cells reduced OEA levels, regardless of their differentiation states. Transcriptome analysis revealed that deletion of NAPE-PLD activates a transcriptional program for nutrient transportation, including lipids and lipoproteins, and inactivates cell-cycle or mitosis-related genes in Caco-2 cells. In addition, the basolateral secretion of lipoproteins was increased in NAPE-PLD-deleted cells although lipoprotein size was not affected. By contrast, cellular lipid levels were reduced in NAPE-PLD-deleted cells. Overall, these results indicate that NAPE-PLD plays important roles in OEA synthesis and fat absorption by regulating lipoprotein production in the intestinal epithelial cells.-Igarashi, M., Watanabe, K., Tsuduki, T., Kimura, I., Kubota, N. NAPE-PLD controls OEA synthesis and fat absorption by regulating lipoprotein synthesis in an in vitro model of intestinal epithelial cells.


Assuntos
Gorduras na Dieta/metabolismo , Endocanabinoides/biossíntese , Mucosa Intestinal/metabolismo , Ácidos Oleicos/biossíntese , Fosfolipase D/metabolismo , Antígenos CD36/metabolismo , Células CACO-2 , Diferenciação Celular , Perfilação da Expressão Gênica , Técnicas de Inativação de Genes , Humanos , Absorção Intestinal/genética , Absorção Intestinal/fisiologia , Mucosa Intestinal/citologia , Metabolismo dos Lipídeos , Lipoproteínas/biossíntese , Modelos Biológicos , Fosfolipase D/deficiência , Fosfolipase D/genética , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
17.
Neuropharmacology ; 141: 272-282, 2018 10.
Artigo em Inglês | MEDLINE | ID: mdl-30195587

RESUMO

Δ9-tetrahydracannabinol (THC) is recognized as an effective treatment for nausea and vomiting via its action on the cannabinoid 1 (CB1) receptor. Paradoxically, there is evidence that THC can also produce nausea and vomiting. Using the conditioned gaping model of nausea in rats, we evaluated the ability of several doses of THC (0.0, 0.5, 5 and 10 mg/kg, i.p.) to produced conditioned gaping reactions. We then investigated the ability of the CB1 receptor antagonist, rimonabant, to block the establishment of THC-induced conditioned gaping. Real-time polymerase chain reaction (RT-PCR) was then used to investigate changes in endocannabinoid related genes in various brain regions in rats chronically treated with vehicle (VEH), 0.5 or 10 mg/kg THC. THC produced dose-dependent gaping, with 5 and 10 mg/kg producing significantly more gaping reactions than VEH or 0.5 mg/kg THC, a dose known to have anti-emetic properties. Pre-treatment with rimonabant reversed this effect, indicating that THC-induced conditioned gaping was CB1 receptor mediated. The RT-PCR analysis revealed an upregulation of genes for the degrading enzyme, monoacylglycerol lipase (MAGL), of the endocannabinoid, 2-arachidolyl glycerol (2-AG), in the hypothalamus of rats treated with 10 mg/kg THC. No changes in the expression of relevant genes were found in nausea (interoceptive insular cortex) or vomiting (dorsal vagal complex) related brain regions. These findings support the hypothesis that THC-induced nausea is a result of a dysregulated hypothalamic-pituitary-adrenal axis leading to an overactive stress response.


Assuntos
Ácidos Araquidônicos/biossíntese , Dronabinol/administração & dosagem , Dronabinol/farmacologia , Endocanabinoides/biossíntese , Glicerídeos/biossíntese , Hipotálamo/efeitos dos fármacos , Hipotálamo/metabolismo , Monoacilglicerol Lipases/biossíntese , Náusea/prevenção & controle , Animais , Córtex Cerebral/metabolismo , Relação Dose-Resposta a Droga , Dronabinol/antagonistas & inibidores , Masculino , Náusea/induzido quimicamente , Ratos , Rimonabanto/farmacologia , Nervo Vago/metabolismo
18.
Biochem Pharmacol ; 157: 180-188, 2018 11.
Artigo em Inglês | MEDLINE | ID: mdl-30195734

RESUMO

While the endocannabinoid 2-arachidonoylglycerol (2-AG) is thought to enhance the proliferation and differentiation of oligodendrocyte progenitor cells (OPCs) in vitro, less is known about how endogenous 2-AG may influence the migration of these cells. When we assessed this in Agarose drop and Boyden chemotaxis chamber assays, inhibiting the sn-1-diacylglycerol lipases α and ß (DAGLs) that are responsible for 2-AG synthesis significantly reduced the migration of OPCs stimulated by platelet-derived growth factor-AA (PDGF) and basic fibroblast growth factor (FGF). Likewise, antagonists of the CB1 and CB2 cannabinoid receptors (AM281 and AM630, respectively) produced a similar inhibition of OPC migration. By contrast, increasing the levels of endogenous 2-AG by blocking its degradation (impairing monoacylglycerol lipase activity with JZL-184) significantly increased OPC migration, as did agonists of the CB1, CB2 or CB1/CB2 cannabinoid receptors. This latter effect was abolished by selective CB1 or CB2 antagonists, strongly suggesting that cannabinoid receptor activation specifically potentiates OPC chemotaxis and chemokinesis in response to PDGF/FGF. Furthermore, the chemoattractive activity of these cannabinoid receptor agonists on OPCs was even evident in the absence of PDGF/FGF. In cultured brain slices prepared from the corpus callosum of postnatal rat brains, DAGL or cannabinoid receptor inhibition substantially diminished the in situ migration of Sox10+ OPCs. Overall, these results reveal a novel function of endogenous 2-AG in PDGF and FGF induced OPC migration, highlighting the importance of the endocannabinoid system in regulating essential steps in oligodendrocyte development.


Assuntos
Ácidos Araquidônicos/fisiologia , Movimento Celular , Endocanabinoides/fisiologia , Glicerídeos/fisiologia , Oligodendroglia/fisiologia , Células-Tronco/fisiologia , Animais , Ácidos Araquidônicos/antagonistas & inibidores , Ácidos Araquidônicos/biossíntese , Ácidos Araquidônicos/metabolismo , Agonistas de Receptores de Canabinoides/farmacologia , Antagonistas de Receptores de Canabinoides/farmacologia , Movimento Celular/efeitos dos fármacos , Células Cultivadas , Corpo Caloso/citologia , Endocanabinoides/antagonistas & inibidores , Endocanabinoides/biossíntese , Endocanabinoides/metabolismo , Glicerídeos/antagonistas & inibidores , Glicerídeos/biossíntese , Glicerídeos/metabolismo , Ratos Wistar
19.
Neurobiol Dis ; 118: 64-75, 2018 10.
Artigo em Inglês | MEDLINE | ID: mdl-29936234

RESUMO

Management of levodopa-induced dyskinesias (LID) is one of the main challenges in the treatment of Parkinson's disease patients. Mechanisms involved in the appearance of these involuntary movements are not well known but modifications in the activity of different neurotransmitter pathways seem to play an important role. The objective of this study was to determine differences in the expression levels of the endocannabinoid system (ECS) elements that would support a role in LID. The basal ganglia nuclei, putamen, external segment of the globus pallidus (GPe), internal segment of the globus pallidus (GPi), subthalamic nucleus (STN) and substantia nigra (SN) were dissected out from cryostat sections obtained from two groups of parkinsonian monkeys treated with levodopa to induce dyskinesias. One group of dyskinetic animals was sacrificed under the effect of levodopa, during the active phase of LID, and the other group 24 h after the last levodopa dose (OFF levodopa). Biochemical analysis by real-time PCR for ECS elements was performed. CB1 receptor expression was upregulated in the putamen, GPe and STN during the active phase of dyskinesia and downregulated in the same nuclei and in the SN when dyskinetic animals were OFF levodopa. Changes in the 2-arachidonoyl glycerol (2-AG) synthesizing/degrading enzymes affecting the pallidal-subthalamic projections in dyskinetic animals OFF levodopa would suggest that 2-AG may play a role in LID. Anandamide (AEA) synthesizing/degrading enzymes were altered specifically in the GPe of untreated parkinsonian monkeys, suggesting that increased AEA levels may be a compensatory mechanism. These results indicate that the expression of the ECS elements is influenced by alterations in dopaminergic neurotransmission. On one hand, changes in CB1 receptor expression and in the 2-AG synthesizing/degrading enzymes suggest that they could be a therapeutic target for the active phase of LID. On the other hand, AEA metabolism could provide a non-dopaminergic target for symptomatic relief. However, further research is needed to unravel the mechanism of action of the ECS and how they could be modulated for a therapeutic purpose.


Assuntos
Ácidos Araquidônicos/biossíntese , Gânglios da Base/metabolismo , Discinesia Induzida por Medicamentos/metabolismo , Endocanabinoides/biossíntese , Glicerídeos/biossíntese , Levodopa/toxicidade , Receptor CB1 de Canabinoide/biossíntese , Animais , Ácidos Araquidônicos/genética , Gânglios da Base/efeitos dos fármacos , Discinesia Induzida por Medicamentos/genética , Endocanabinoides/genética , Feminino , Expressão Gênica , Glicerídeos/genética , Macaca fascicularis , Masculino , Transtornos Parkinsonianos/induzido quimicamente , Transtornos Parkinsonianos/genética , Transtornos Parkinsonianos/metabolismo , Receptor CB1 de Canabinoide/genética
20.
Life Sci ; 204: 20-45, 2018 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-29729263

RESUMO

The endocannabinoid system is up-regulated in numerous pathophysiological states such as inflammatory, neurodegenerative, gastrointestinal, metabolic and cardiovascular diseases, pain, and cancer. It has been suggested that this phenomenon primarily serves an autoprotective role in inhibiting disease progression and/or diminishing signs and symptoms. Accordingly, enhancement of endogenous endocannabinoid tone by inhibition of endocannabinoid degradation represents a promising therapeutic approach for the treatment of many diseases. Importantly, this allows for the avoidance of unwanted psychotropic side effects that accompany exogenously administered cannabinoids. The effects of endocannabinoid metabolic pathway modulation are complex, as endocannabinoids can exert their actions directly or via numerous metabolites. The two main strategies for blocking endocannabinoid degradation are inhibition of endocannabinoid-degrading enzymes and inhibition of endocannabinoid cellular uptake. To date, the most investigated compounds are inhibitors of fatty acid amide hydrolase (FAAH), an enzyme that degrades the endocannabinoid anandamide. However, application of FAAH inhibitors (and consequently other endocannabinoid degradation inhibitors) in medicine became questionable due to a lack of therapeutic efficacy in clinical trials and serious adverse effects evoked by one specific compound. In this paper, we discuss multiple pathways of endocannabinoid metabolism, changes in endocannabinoid levels across numerous human diseases and corresponding experimental models, pharmacological strategies for enhancing endocannabinoid tone and potential therapeutic applications including multi-target drugs with additional targets outside of the endocannabinoid system (cyclooxygenase-2, cholinesterase, TRPV1, and PGF2α-EA receptors), and currently used medicines or medicinal herbs that additionally enhance endocannabinoid levels. Ultimately, further clinical and preclinical studies are warranted to develop medicines for enhancing endocannabinoid tone.


Assuntos
Moduladores de Receptores de Canabinoides/farmacologia , Endocanabinoides/fisiologia , Receptores de Canabinoides/efeitos dos fármacos , Doença , Endocanabinoides/biossíntese , Humanos
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