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1.
Neuropsychopharmacol Rep ; 44(1): 256-261, 2024 Mar.
Article de Anglais | MEDLINE | ID: mdl-38156409

RÉSUMÉ

AIM: Excitatory projections from the prelimbic cortex (PL) to the basolateral nucleus of the amygdala (BLA) are implicated in the regulation of anxiety-like behaviors, and we previously demonstrated that anxiolytic-like effects of the selective delta-opioid receptor (DOP) agonist KNT-127 is involved in suppressing glutamate neurotransmission in the PL. Here, we investigated the mechanisms underlying the anxiolytic-like effect of KNT-127 in mice by combining optogenetic stimulation of the PL-BLA pathway with behavioral analyses. METHODS: Four-week-old male C57BL/6J mice received bilateral administration of adeno-associated virus (AAV)2-CaMKIIa-hChR2(H134R)-enhanced yellow fluorescent protein (EYFP) into the PL to induce expression of the light-activated excitatory ionic channel ChR2. Subsequently, an optic fiber cannula connected to a wireless photo-stimulator was implanted into the BLA for optogenetic PL-BLA pathway stimulation. We evaluated innate anxiety using the elevated plus maze (EPM) and open field (OF) tests as well as learned anxiety using the contextual fear conditioning (CFC) test. RESULTS: Optogenetic activation of the PL-BLA pathway enhanced anxiety-like behaviors in the EPM and OF, while prior subcutaneous administration of KNT-127 (10 mg/kg) reduced this anxiogenic effect. In contrast, optogenetic activation of the PL-BLA pathway had no significant effect on conditioned fear. CONCLUSION: Our findings indicate that the PL-BLA circuit contributes to innate anxiety and that the anxiolytic-like effects of KNT-127 are mediated at least in part by suppression of PL-BLA transmission. The PL delta-opioid receptor may thus be an effective therapeutic target for anxiety disorders.


Sujet(s)
Anxiolytiques , Groupe nucléaire basolatéral , Morphinanes , Souris , Animaux , Mâle , Groupe nucléaire basolatéral/métabolisme , Récepteur delta/agonistes , Récepteur delta/métabolisme , Souris de lignée C57BL , Anxiété , Analgésiques morphiniques
2.
Brain Res ; 1757: 147297, 2021 04 15.
Article de Anglais | MEDLINE | ID: mdl-33516811

RÉSUMÉ

Although delta opioid receptors (DOP) are now known to play a major role in modulating chronic pain and controlling emotional processes, unfortunately, some DOP agonists, such as SNC80, reportedly produced convulsive-like behaviors manifesting as tremor-like behaviors in a preclinical study. Therefore, these induced convulsions limit the progress of the clinical development of DOP agonists. However, mechanisms underlying DOP-induced convulsant activity remain unclarified. Thus, the study aimed to elucidate mechanisms that could cause tremor-like behaviors of SNC80. These drugs were microinjected into the ventral hippocampus CA3 (vCA3), amygdala (AMY), and insular cortex (IC) of mice. In addition, we examined the extracellular glutamate levels after DOP agonist local treatment. Microinjection of SNC80 into the vCA3 increased the number of tremor-like behaviors and extracellular glutamate levels but did not cause tremor-like behaviors in mice when microinjected into IC and AMY. Pretreatment with α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA)/kainite receptor antagonist CNQX into vCA3 totally inhibited the SNC80-induced increases in tremor-like behaviors. In contrast, another DOP agonist, KNT-127, did not cause tremor-like behaviors in any of the tested brain areas. Further, the extracellular glutamate levels in the hippocampus were significantly lower in the KNT-127-treated mice than in the SNC80-treated mice. Our results showed that the administration of SNC80, but not KNT-127, into vCA3 induced tremor-like behaviors by activating glutamatergic neurons in mice. We propose that KNT-127 should be further studied clinically as a DOP agonist that is expected to have a low risk for convulsions than those resulting in antinociceptive and antidepressant effects.


Sujet(s)
Analgésiques morphiniques/pharmacologie , Comportement animal/effets des médicaments et des substances chimiques , Benzamides/pharmacocinétique , Hippocampe/effets des médicaments et des substances chimiques , Morphinanes/pharmacologie , Pipérazines/pharmacocinétique , Animaux , Anxiolytiques/pharmacologie , Antidépresseurs/pharmacologie , Anxiété/traitement médicamenteux , Cortex insulaire/effets des médicaments et des substances chimiques , Souris , Activité motrice/effets des médicaments et des substances chimiques , Naltrexone/pharmacologie , Récepteur delta/effets des médicaments et des substances chimiques , Récepteur delta/métabolisme
3.
Bioorg Med Chem Lett ; 30(12): 127176, 2020 06 15.
Article de Anglais | MEDLINE | ID: mdl-32299730

RÉSUMÉ

We have recently reported that the elaboration of the N-substituent in the δ opioid receptor (DOR) antagonist naltrindole (NTI) enabled the regulation of the DOR activities from full inverse agonists to weak partial agonists. The investigations of amide-type NTI derivatives revealed that N-phenylacetyl and N-dihydrocinnamoyl derivatives 3a and 3b were DOR full agonists. The same transformations were applied to a DOR agonist KNT-127 to provide the more potent DOR agonists 6a and 6b. Among the tested compounds, the most efficacious compound 6a showed dose-dependent antidepressant-like effects in the mouse forced swim test. The antidepressant-like effects by 6a seemed to be more potent than those of KNT-127, which is a more potent DOR agonist in in vitro assays. The amide-type compound like 6a may more fully penetrate into the central nervous system.


Sujet(s)
Antidépresseurs/pharmacologie , Dépression/traitement médicamenteux , Découverte de médicament , Récepteur delta/agonistes , Animaux , Antidépresseurs/synthèse chimique , Antidépresseurs/composition chimique , Comportement animal/effets des médicaments et des substances chimiques , Relation dose-effet des médicaments , Souris , Structure moléculaire , Relation structure-activité
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