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1.
Cell ; 178(3): 653-671.e19, 2019 07 25.
Artículo en Inglés | MEDLINE | ID: mdl-31348890

RESUMEN

Nociceptin and its receptor are widely distributed throughout the brain in regions associated with reward behavior, yet how and when they act is unknown. Here, we dissected the role of a nociceptin peptide circuit in reward seeking. We generated a prepronociceptin (Pnoc)-Cre mouse line that revealed a unique subpopulation of paranigral ventral tegmental area (pnVTA) neurons enriched in prepronociceptin. Fiber photometry recordings during progressive ratio operant behavior revealed pnVTAPnoc neurons become most active when mice stop seeking natural rewards. Selective pnVTAPnoc neuron ablation, inhibition, and conditional VTA nociceptin receptor (NOPR) deletion increased operant responding, revealing that the pnVTAPnoc nucleus and VTA NOPR signaling are necessary for regulating reward motivation. Additionally, optogenetic and chemogenetic activation of this pnVTAPnoc nucleus caused avoidance and decreased motivation for rewards. These findings provide insight into neuromodulatory circuits that regulate motivated behaviors through identification of a previously unknown neuropeptide-containing pnVTA nucleus that limits motivation for rewards.


Asunto(s)
Motivación/efectos de los fármacos , Péptidos Opioides/farmacología , Recompensa , Área Tegmental Ventral/metabolismo , Potenciales de Acción , Animales , Conducta Animal/efectos de los fármacos , Femenino , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Neuronas/fisiología , Técnicas de Placa-Clamp , Precursores de Proteínas/genética , Receptores Opioides/agonistas , Receptores Opioides/deficiencia , Receptores Opioides/genética , Receptor de Nociceptina , Nociceptina
2.
Proc Natl Acad Sci U S A ; 120(13): e2214171120, 2023 03 28.
Artículo en Inglés | MEDLINE | ID: mdl-36947514

RESUMEN

Sleep/wake control involves several neurotransmitter and neuromodulatory systems yet the coordination of the behavioral and physiological processes underlying sleep is incompletely understood. Previous studies have suggested that activation of the Nociceptin/orphanin FQ (N/OFQ) receptor (NOPR) reduces locomotor activity and produces a sedation-like effect in rodents. In the present study, we systematically evaluated the efficacy of two NOPR agonists, Ro64-6198 and SR16835, on sleep/wake in rats, mice, and Cynomolgus macaques. We found a profound, dose-related increase in non-Rapid Eye Movement (NREM) sleep and electroencephalogram (EEG) slow wave activity (SWA) and suppression of Rapid Eye Movement sleep (REM) sleep in all three species. At the highest dose tested in rats, the increase in NREM sleep and EEG SWA was accompanied by a prolonged inhibition of REM sleep, hypothermia, and reduced locomotor activity. However, even at the highest dose tested, rats were immediately arousable upon sensory stimulation, suggesting sleep rather than an anesthetic state. NOPR agonism also resulted in increased expression of c-Fos in the anterodorsal preoptic and parastrial nuclei, two GABAergic nuclei that are highly interconnected with brain regions involved in physiological regulation. These results suggest that the N/OFQ-NOPR system may have a previously unrecognized role in sleep/wake control and potential promise as a therapeutic target for the treatment of insomnia.


Asunto(s)
Electroencefalografía , Péptidos Opioides , Ratas , Ratones , Animales , Sueño , Sueño REM/fisiología , Nociceptina
3.
Mol Psychiatry ; 29(3): 718-729, 2024 03.
Artículo en Inglés | MEDLINE | ID: mdl-38123728

RESUMEN

Chronic stress causes cognitive deficits, such as impairments in episodic-like hippocampus-dependent memory. Stress regulates an opioid-related neuropeptide named Nociceptin/Orphanin FQ (N/OFQ), the ligand of the G protein-coupled receptor NOP. Since this peptide has deleterious effects on memory, we hypothesized that the N/OFQ system could be a mediator of the negative effects of stress on memory. Chronic stress was mimicked by chronic exposure to corticosterone (CORT). The NOP receptor was either acutely blocked using selective antagonists, or knocked-down specifically in the hippocampus using genetic tools. Long-term memory was assessed in the object recognition (OR) and object location (OL) paradigms. Acute injection of NOP antagonists before learning had a negative impact on memory in naive mice whereas it restored memory performances in the chronic stress model. This rescue was associated with a normalization of neuronal cell activity in the CA3 part of the hippocampus. Chronic CORT induced an upregulation of the N/OFQ precursor in the hippocampus. Knock-down of the NOP receptor in the CA3/Dentate Gyrus region prevented memory deficits in the CORT model. These data demonstrate that blocking the N/OFQ system can be beneficial for long-term memory in a neuroendocrine model of chronic stress. We therefore suggest that NOP antagonists could be useful for the treatment of memory deficits in stress-related disorders.


Asunto(s)
Corticosterona , Modelos Animales de Enfermedad , Hipocampo , Memoria a Largo Plazo , Receptor de Nociceptina , Nociceptina , Péptidos Opioides , Receptores Opioides , Estrés Psicológico , Animales , Receptores Opioides/metabolismo , Ratones , Estrés Psicológico/metabolismo , Masculino , Hipocampo/metabolismo , Hipocampo/efectos de los fármacos , Péptidos Opioides/metabolismo , Memoria a Largo Plazo/efectos de los fármacos , Memoria a Largo Plazo/fisiología , Antagonistas de Narcóticos/farmacología , Ratones Endogámicos C57BL , Cognición/efectos de los fármacos , Disfunción Cognitiva/metabolismo , Disfunción Cognitiva/tratamiento farmacológico
4.
Int J Mol Sci ; 25(3)2024 Jan 29.
Artículo en Inglés | MEDLINE | ID: mdl-38338936

RESUMEN

Traumatic brain injury (TBI) is a major cause of mortality and disability around the world, for which no treatment has been found. Nociceptin/Orphanin FQ (N/OFQ) and the nociceptin opioid peptide (NOP) receptor are rapidly increased in response to fluid percussion, stab injury, and controlled cortical impact (CCI) TBI. TBI-induced upregulation of N/OFQ contributes to cerebrovascular impairment, increased excitotoxicity, and neurobehavioral deficits. Our objective was to identify changes in N/OFQ and NOP receptor peptide, protein, and mRNA relative to the expression of injury markers and extracellular regulated kinase (ERK) 24 h following mild (mTBI) and moderate TBI (ModTBI) in wildtype (WT) and NOP receptor-knockout (KO) rats. N/OFQ was quantified by radioimmunoassay, mRNA expression was assessed using real-time PCR and protein levels were determined by immunoblot analysis. This study revealed increased N/OFQ mRNA and peptide levels in the CSF and ipsilateral tissue of WT, but not KO, rats 24 h post-TBI; NOP receptor mRNA increased after ModTBI. Cofilin-1 activation increased in the brain tissue of WT but not KO rats, ERK activation increased in all rats following ModTBI; no changes in injury marker levels were noted in brain tissue at this time. In conclusion, this study elucidates transcriptional and translational changes in the N/OFQ-NOP receptor system relative to TBI-induced neurological deficits and initiation of signaling cascades that support the investigation of the NOP receptor as a therapeutic target for TBI.


Asunto(s)
Lesiones Traumáticas del Encéfalo , Receptor de Nociceptina , Nociceptina , Animales , Ratas , Analgésicos Opioides , Lesiones Traumáticas del Encéfalo/genética , Péptidos Opioides/metabolismo , Receptores Opioides/metabolismo , ARN Mensajero/metabolismo
5.
Bioorg Med Chem ; 92: 117421, 2023 09 07.
Artículo en Inglés | MEDLINE | ID: mdl-37573822

RESUMEN

The development of SAR around substituted N-piperidinyl indole-based nociceptin opioid receptor (NOP) ligands led to the discovery of a novel series of 2-substituted N-piperidinyl indoles that provide both selective NOP full agonists and bifunctional NOP full agonists-µ opioid (MOP) receptor partial agonists. 2-substituted N-piperidinyl indoles have improved potency at the NOP receptor and are NOP full agonists, compared to our previously reported 3-substituted N-piperidinyl indoles that are selective NOP partial agonists. SAR in this series of 2-substituted N-piperidinyl indoles shows that 2-substitution versus 3-substitution on the indole moiety affects their intrinsic activity and opioid receptor selectivity. Molecular docking of these 2-substituted N-piperidinyl indoles in an active-state NOP homology model and MOP receptor structures provides a rationale for the differences observed in the binding, functional profiles and selectivity of 2-substituted versus 3-substituted N-piperidinyl indoles.


Asunto(s)
Analgésicos Opioides , Receptores Opioides , Analgésicos Opioides/farmacología , Ligandos , Simulación del Acoplamiento Molecular , Receptores Opioides/agonistas , Receptores Opioides/metabolismo , Péptidos Opioides , Receptor de Nociceptina , Indoles/farmacología , Relación Estructura-Actividad , Nociceptina
6.
Proc Natl Acad Sci U S A ; 117(4): 2140-2148, 2020 01 28.
Artículo en Inglés | MEDLINE | ID: mdl-31932450

RESUMEN

Approximately 25% of patients who are prescribed opioids for chronic pain misuse them, and 5 to 10% develop an opioid use disorder. Although the neurobiological target of opioids is well known, the molecular mechanisms that are responsible for the development of addiction-like behaviors in some but not all individuals are poorly known. To address this issue, we used a unique outbred rat population (heterogeneous stock) that better models the behavioral and genetic diversity that is found in humans. We characterized individual differences in addiction-like behaviors using an addiction index that incorporates the key criteria of opioid use disorder: escalated intake, highly motivated responding, and hyperalgesia. Using in vitro electrophysiological recordings in the central nucleus of the amygdala (CeA), we found that rats with high addiction-like behaviors (HA) exhibited a significant increase in γ-aminobutyric acid (GABA) transmission compared with rats with low addiction-like behaviors (LA) and naive rats. The superfusion of CeA slices with nociceptin/orphanin FQ peptide (N/OFQ; 500 nM), an endogenous opioid-like peptide, normalized GABA transmission in HA rats. Intra-CeA levels of N/OFQ were lower in HA rats than in LA rats. Intra-CeA infusions of N/OFQ (1 µg per site) reversed the escalation of oxycodone self-administration in HA rats but not in LA rats. These results demonstrate that the downregulation of N/OFQ levels in the CeA may be responsible for hyper-GABAergic tone in the CeA that is observed in individuals who develop addiction-like behaviors. Based on these results, we hypothesize that small molecules that target the N/OFQ system might be useful for the treatment of opioid use disorder.


Asunto(s)
Amígdala del Cerebelo/metabolismo , Péptidos Opioides/administración & dosificación , Trastornos Relacionados con Opioides/tratamiento farmacológico , Oxicodona/efectos adversos , Ácido gamma-Aminobutírico/metabolismo , Amígdala del Cerebelo/efectos de los fármacos , Animales , Humanos , Masculino , Trastornos Relacionados con Opioides/etiología , Trastornos Relacionados con Opioides/metabolismo , Ratas , Autoadministración , Nociceptina
7.
J Physiol ; 600(22): 4939-4961, 2022 11.
Artículo en Inglés | MEDLINE | ID: mdl-36217719

RESUMEN

We tested the hypothesis that N/OFQ neurones in the arcuate nucleus (N/OFQARC ) inhibit proopiomelanocortin (POMCARC ) neurones in a diet- and hormone-dependent manner to promote a more extensive rebound hyperphagia upon re-feeding following an 18 h fast. We utilized intact male or ovariectomized (OVX) female mice subjected to ad libitum-feeding or fasting conditions. N/OFQARC neurones under negative energy balance conditions displayed heightened sensitivity as evidenced by a decreased rheobase threshold, increased firing frequency, and increased burst duration and frequency compared to ad libitum-feeding conditions. Stimulation of N/OFQARC neurones more robustly inhibited POMCARC neurones under fasting conditions compared to ad libitum-feeding conditions. N/OFQARC inhibition of POMCARC neurones is hormone dependent as chemostimulation of N/OFQARC neurones from fasted males and OVX females produced a sizable outward current in POMCARC neurones. Oestradiol (E2 ) markedly attenuated the N/OFQ-induced POMCARC outward current. Additionally, N/OFQ tonically inhibits POMCARC neurones to a greater degree under fasting conditions than in ad libitum-feeding conditions as evidenced by the abrogation of N/OFQ-nociceptin opioid peptide (NOP) receptor signalling and inhibition of N/OFQ release via chemoinhibition of N/OFQARC neurones. Intra-arcuate nucleus application of N/OFQ further elevated the hyperphagic response and increased meal size during the 6 h re-feed period, and these effects were mimicked by chemostimulation of N/OFQARC neurones in vivo. E2 attenuated the robust N/OFQ-induced rebound hyperphagia seen in vehicle-treated OVX females. These data demonstrate that N/OFQARC neurones play a vital role in mitigating the impact of negative energy balance by inhibiting the excitability of anorexigenic neural substrates, an effect that is diminished by E2 in females. KEY POINTS: Nociceptin/orphanin FQ (N/OFQ) promotes increased energy intake and decreased energy expenditure under conditions of positive energy balance in a sex- and hormone-dependent manner. Here it is shown that under conditions of negative energy balance, i.e. fasting, N/OFQ inhibits anorexigenic proopiomelanocortin (POMC) neurones to a greater degree compared to homeostatic conditions due to fasting-induced hyperexcitability of N/OFQ neurones. Additionally, N/OFQ promotes a sustained increase in rebound hyperphagia and increase in meal size during the re-feed period following a fast. These results promote greater understanding of how energy balance influences the anorexigenic circuitry of the hypothalamus, and aid in understanding the neurophysiological pathways implicated in eating disorders promoting cachexia.


Asunto(s)
Estradiol , Proopiomelanocortina , Masculino , Femenino , Ratones , Animales , Proopiomelanocortina/metabolismo , Estradiol/farmacología , Péptidos Opioides/farmacología , Péptidos Opioides/metabolismo , Metabolismo Energético , Hiperfagia , Nociceptina
8.
J Pharmacol Exp Ther ; 379(3): 260-269, 2021 11.
Artículo en Inglés | MEDLINE | ID: mdl-34663677

RESUMEN

Opioids play crucial roles in the regulation of many important brain functions including pain, memory, and neurogenesis. Activation of opioid receptors is reported to have neuroprotective effects after ischemic reperfusion injury. The objective of this study was to understand the role of biphalin and nociceptin, opioid receptor agonists, on blood-brain barrier (BBB) integrity during ischemic stroke. In this study, we aimed to measure the effect of biphalin and nociceptin on astrocytic glutamate uptake and on expression of excitatory amino acid transporter to study the indirect role of astrocytes on opioid receptor-mediated BBB protection during in vitro stroke conditions. We used mouse brain endothelial cells (bEnd.3) and primary astrocytes as an in vitro BBB model. Restrictive BBB properties were evaluated by measuring [14C] sucrose paracellular permeability and the redistribution of the tight junction proteins. The protective effect of biphalin and nociceptin on BBB integrity was assessed after exposing cells to oxygen glucose deprivation (OGD) and glutamate. It was observed that combined stress (2 mM glutamate and 2 hours of OGD) significantly reduced glutamate uptake by astrocytes; however, biphalin and nociceptin treatment increased glutamate uptake in primary astrocytes. This suggests a role of increased astrocytic buffering capacity in opioid-meditated protection of the BBB during ischemic stroke. It was also found that the combined stress significantly increased [14C] sucrose paracellular permeability in an in vitro BBB model. Biphalin and nociceptin treatment attenuated the effect of the combined stress, which was reversed by the opioid receptor antagonists, suggesting the role of opioid receptors in biphalin and nociception's BBB modulatory activity. SIGNIFICANT STATEMENT: There is an unmet need for discovering new efficacious therapeutic agents to offset the deleterious effects of ischemic stroke. Given the confirmed roles of opioid receptors in the regulation of central nervous system functions, opioid receptor agonists have been studied as potential neuroprotective options in ischemic conditions. This study adds to the knowledge about the cerebrovascular protective effects of opioid receptor agonists and provides insight about the mechanism of action of these agents.


Asunto(s)
Analgésicos Opioides/farmacología , Barrera Hematoencefálica/efectos de los fármacos , Barrera Hematoencefálica/metabolismo , Encefalinas/farmacología , Ácido Glutámico/metabolismo , Péptidos Opioides/farmacología , Analgésicos/farmacología , Animales , Animales Recién Nacidos , Permeabilidad Capilar/efectos de los fármacos , Permeabilidad Capilar/fisiología , Técnicas de Cocultivo , Relación Dosis-Respuesta a Droga , Ratones , Fármacos Neuroprotectores/farmacología , Receptores Opioides/agonistas , Receptores Opioides/metabolismo , Nociceptina
9.
BMC Neurosci ; 22(1): 25, 2021 04 09.
Artículo en Inglés | MEDLINE | ID: mdl-33836649

RESUMEN

BACKGROUND: Nociceptin/orphanin FQ (N/OFQ) has been revealed to play bidirectional roles in orofacial pain modulation. Calcitonin gene-related peptide (CGRP) is a well-known pro-nociceptive molecule that participates in the modulation of orofacial pain. We aimed to determine the effects of N/OFQ on the modulation of orofacial pain and on the release of CGRP. METHODS: Orofacial pain model was established by ligating springs between incisors and molars in rats for the simulation of tooth movement. The expression level of N/OFQ was determined and pain level was scored in response to orofacial pain. Both agonist and antagonist of N/OFQ receptor were administered to examine their effects on pain and the expression of CGRP in trigeminal ganglia (TG). Moreover, gene therapy based on the overexpression of N/OFQ was delivered to validate the modulatory role of N/OFQ on pain and CGRP expression. RESULTS: Tooth movement elicited orofacial pain and an elevation in N/OFQ expression. N/OFQ exacerbated orofacial pain and upregulated CGRP expression in TG, while UFP-101 alleviated pain and downregulated CGRP expression. N/OFQ-based gene therapy was successful in overexpressing N/OFQ in TG, which resulted in pain exacerbation and elevation of CGRP expression in TG. CONCLUSIONS: N/OFQ exacerbated orofacial pain possibly through upregulating CGRP.


Asunto(s)
Péptido Relacionado con Gen de Calcitonina/metabolismo , Dolor Facial/metabolismo , Péptidos Opioides/metabolismo , Ganglio del Trigémino/metabolismo , Animales , Modelos Animales de Enfermedad , Dolor Facial/etiología , Masculino , Ratas , Ratas Sprague-Dawley , Transducción de Señal/fisiología , Técnicas de Movimiento Dental/efectos adversos , Nociceptina
10.
Anesthesiology ; 135(3): 482-493, 2021 09 01.
Artículo en Inglés | MEDLINE | ID: mdl-34237134

RESUMEN

BACKGROUND: Cebranopadol, a mixed nociceptin/opioid receptor full agonist, can effectively relieve pain in rodents and humans. However, it is unclear to what degree different opioid receptor subtypes contribute to its antinociception and whether cebranopadol lacks acute opioid-associated side effects in primates. The authors hypothesized that coactivation of nociceptin receptors and µ receptors produces analgesia with reduced side effects in nonhuman primates. METHODS: The antinociceptive, reinforcing, respiratory-depressant, and pruritic effects of cebranopadol in adult rhesus monkeys (n = 22) were compared with µ receptor agonists fentanyl and morphine using assays, including acute thermal nociception, IV drug self-administration, telemetric measurement of respiratory function, and itch-scratching responses. RESULTS: Subcutaneous cebranopadol (ED50, 2.9 [95% CI, 1.8 to 4.6] µg/kg) potently produced antinociception compared to fentanyl (15.8 [14.6 to 17.1] µg/kg). Pretreatment with antagonists selective for nociceptin and µ receptors, but not δ and κ receptor antagonists, caused rightward shifts of the antinociceptive dose-response curve of cebranopadol with dose ratios of 2 and 9, respectively. Cebranopadol produced reinforcing effects comparable to fentanyl, but with decreased reinforcing strength, i.e., cebranopadol (mean ± SD, 7 ± 3 injections) versus fentanyl (12 ± 3 injections) determined by a progressive-ratio schedule of reinforcement. Unlike fentanyl (8 ± 2 breaths/min), systemic cebranopadol at higher doses did not decrease the respiratory rate (17 ± 2 breaths/min). Intrathecal cebranopadol (1 µg) exerted full antinociception with minimal scratching responses (231 ± 137 scratches) in contrast to intrathecal morphine (30 µg; 3,009 ± 1,474 scratches). CONCLUSIONS: In nonhuman primates, the µ receptor mainly contributed to cebranopadol-induced antinociception. Similar to nociceptin/µ receptor partial agonists, cebranopadol displayed reduced side effects, such as a lack of respiratory depression and pruritus. Although cebranopadol showed reduced reinforcing strength, its detectable reinforcing effects and strength warrant caution, which is critical for the development and clinical use of cebranopadol.


Asunto(s)
Indoles/administración & dosificación , Dimensión del Dolor/efectos de los fármacos , Dimensión del Dolor/métodos , Receptores Opioides/agonistas , Compuestos de Espiro/administración & dosificación , Analgésicos Opioides/administración & dosificación , Animales , Relación Dosis-Respuesta a Droga , Femenino , Fentanilo/administración & dosificación , Inyecciones Espinales , Macaca mulatta , Masculino , Péptidos Opioides/administración & dosificación , Receptores Opioides/fisiología , Receptores Opioides mu/agonistas , Receptores Opioides mu/fisiología , Receptor de Nociceptina , Nociceptina
11.
Metab Brain Dis ; 36(8): 2243-2253, 2021 12.
Artículo en Inglés | MEDLINE | ID: mdl-34529220

RESUMEN

Nociceptin opioid peptide (NOP) receptor modulates pain transmission and is considered a prospective target for pain management. Under acute pain conditions in rodents, however, no definitive conclusions about effects of systemically intervening NOP receptors on nociception, classical opioid-induced antinociception, tolerance and physical dependence have been drawn. Given that opioid analgesia has sex differences, and females experience greater pain and consume more opioids, clarifying these issues in females will help develop novel analgesics. To clarify the role of NOP receptors on the pharmacological profiles of µ-opioid receptor agonists, in this study, a selective agonist (SCH221510) and antagonist (SB612111) of the NOP receptor were subcutaneously administered in female mice in multiple animal models. In hot-plate test, neither SCH221510 (3 and 10 mg/kg, sc) nor SB612111 (10 mg/kg, sc) produced significant antinociception. SCH221510 (3 mg/kg, sc) attenuated but SB612111 (10 mg/kg, sc) enhanced morphine-induced antinociception, with rightward and leftward shift of morphine dose-response curves, respectively. SCH221510 (3 mg/kg, sc) combined with morphine (10 mg/kg, sc) accelerated the development of morphine antinociceptive tolerance. Conversely, SB612111 (10 mg/kg, sc) delayed morphine tolerance development. Neither SCH221510 (3 mg/kg, sc) nor SB612111 (10 mg/kg, sc) statistically significantly altered the development of morphine-induced physical dependence. Therefore, systemic activation of NOP receptors attenuated morphine antinociception to acute thermal stimuli, facilitated morphine-induced antinociceptive tolerance but did not robustly alter physical dependence in female mice. Systemic blockade of NOP receptors produced opposite actions. These findings demonstrate that N/OFQ-NOP receptor system plays diverse roles in modulating pharmacological profiles of µ-opioid receptor agonists.


Asunto(s)
Analgésicos Opioides , Morfina , Analgésicos Opioides/farmacología , Animales , Relación Dosis-Respuesta a Droga , Femenino , Ratones , Morfina/farmacología , Péptidos Opioides/farmacología , Estudios Prospectivos , Receptores Opioides/agonistas , Nociceptina
12.
Chem Biodivers ; 18(1): e2000871, 2021 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-33351271

RESUMEN

Nociceptin receptor (NOP) belongs to the family of opioid receptors but was discovered and characterized much later than the so called classical opioid receptors, µ, δ and κ (or MOP, DOP and KOP, resp.). Nociceptin/orphanin FQ (N/OFQ) is the endogenous ligand of this receptor and it controls numerous important functions in the central nervous system and in the periphery, so its analogs may be developed as innovative drugs for the treatment of a variety of conditions and pathological states. Availability of potent and selective ligands with high affinity to NOP receptor is essential to fully understand the role of NOP-N/OFQ system in the body, which in turn may lead to designing novel therapeutics. Here, we have focused on reviewing the structure of potent peptide-based agonists, antagonists, biased analogs and bivalent ligands that target NOP receptor.


Asunto(s)
Descubrimiento de Drogas , Péptidos Opioides/química , Receptores Opioides/metabolismo , Secuencia de Aminoácidos , Humanos , Ligandos , Antagonistas de Narcóticos/química , Antagonistas de Narcóticos/metabolismo , Péptidos Opioides/metabolismo , Receptores Opioides/agonistas , Receptores Opioides/química , Relación Estructura-Actividad , Receptor de Nociceptina , Nociceptina
13.
Int J Mol Sci ; 22(5)2021 Mar 08.
Artículo en Inglés | MEDLINE | ID: mdl-33800452

RESUMEN

Energy homeostasis is regulated in coordinate fashion by the brain-gut axis, the homeostatic energy balance circuitry in the hypothalamus and the hedonic energy balance circuitry comprising the mesolimbcortical A10 dopamine pathway. Collectively, these systems convey and integrate information regarding nutrient status and the rewarding properties of ingested food, and formulate it into a behavioral response that attempts to balance fluctuations in consumption and food-seeking behavior. In this review we start with a functional overview of the homeostatic and hedonic energy balance circuitries; identifying the salient neural, hormonal and humoral components involved. We then delve into how the function of these circuits differs in males and females. Finally, we turn our attention to the ever-emerging roles of nociceptin/orphanin FQ (N/OFQ) and pituitary adenylate cyclase-activating polypeptide (PACAP)-two neuropeptides that have garnered increased recognition for their regulatory impact in energy homeostasis-to further probe how the imposed regulation of energy balance circuitry by these peptides is affected by sex and altered under positive (e.g., obesity) and negative (e.g., fasting) energy balance states. It is hoped that this work will impart a newfound appreciation for the intricate regulatory processes that govern energy homeostasis, as well as how recent insights into the N/OFQ and PACAP systems can be leveraged in the treatment of conditions ranging from obesity to anorexia.


Asunto(s)
Anorexia/metabolismo , Metabolismo Energético , Homeostasis , Obesidad/metabolismo , Péptidos Opioides/metabolismo , Polipéptido Hipofisario Activador de la Adenilato-Ciclasa/metabolismo , Caracteres Sexuales , Animales , Femenino , Humanos , Masculino , Nociceptina
14.
Int J Mol Sci ; 22(24)2021 Dec 19.
Artículo en Inglés | MEDLINE | ID: mdl-34948415

RESUMEN

Opioids are the most potent widely used analgesics, primarily, but not exclusively, in palliative care. However, they are associated with numerous side effects, such as tolerance, addiction, respiratory depression, and cardiovascular events. This, in turn, can result in their overuse in cases of addiction, the need for dose escalation in cases of developing tolerance, and the emergence of dose-related opioid toxicity, resulting in respiratory depression or cardiovascular problems that can even lead to unintentional death. Therefore, a very important challenge for researchers is to look for ways to counteract the side effects of opioids. The use of peptides and their related compounds, which have been shown to modulate the effects of opioids, may provide such an opportunity. This short review is a compendium of knowledge about the most important and recent findings regarding selected peptides and their modulatory effects on various opioid actions, including cardiovascular and respiratory responses. In addition to the peptides more commonly reported in the literature in the context of their pro- and/or anti-opioid activity-such as neuropeptide FF (NPFF), cholecystokinin (CCK), and melanocyte inhibiting factor (MIF)-we also included in the review nociceptin/orphanin (N/OFQ), ghrelin, oxytocin, endothelin, and venom peptides.


Asunto(s)
Analgésicos Opioides/uso terapéutico , Antagonistas de Narcóticos/uso terapéutico , Péptidos/uso terapéutico , Analgésicos Opioides/farmacología , Animales , Colecistoquinina/farmacología , Colecistoquinina/uso terapéutico , Tolerancia a Medicamentos , Ghrelina/farmacología , Ghrelina/uso terapéutico , Humanos , Antagonistas de Narcóticos/farmacología , Oligopéptidos/farmacología , Oligopéptidos/uso terapéutico , Péptidos Opioides/farmacología , Péptidos Opioides/uso terapéutico , Péptidos/farmacología , Receptores Opioides/metabolismo , Nociceptina
15.
Int J Mol Sci ; 22(23)2021 Nov 30.
Artículo en Inglés | MEDLINE | ID: mdl-34884757

RESUMEN

Nociceptin/orphanin FQ (N/OFQ) is a 17-residue neuropeptide that binds the nociceptin opioid-like receptor (NOP). N/OFQ exhibits nucleotidic and aminoacidics sequence homology with the precursors of other opioid neuropeptides but it does not activate either MOP, KOP or DOP receptors. Furthermore, opioid neuropeptides do not activate the NOP receptor. Generally, activation of N/OFQ system exerts anti-opioids effects, for instance toward opioid-induced reward and analgesia. The NOP receptor is widely expressed throughout the brain, whereas N/OFQ localization is confined to brain nuclei that are involved in stress response such as amygdala, BNST and hypothalamus. Decades of studies have delineated the biological role of this system demonstrating its involvement in significant physiological processes such as pain, learning and memory, anxiety, depression, feeding, drug and alcohol dependence. This review discusses the role of this peptidergic system in the modulation of stress and stress-associated psychiatric disorders in particular drug addiction, mood, anxiety and food-related associated-disorders. Emerging preclinical evidence suggests that both NOP agonists and antagonists may represent a effective therapeutic approaches for substances use disorder. Moreover, the current literature suggests that NOP antagonists can be useful to treat depression and feeding-related diseases, such as obesity and binge eating behavior, whereas the activation of NOP receptor by agonists could be a promising tool for anxiety.


Asunto(s)
Péptidos Opioides/fisiología , Receptores Opioides/fisiología , Estrés Fisiológico/fisiología , Animales , Trastornos de Ansiedad/tratamiento farmacológico , Trastornos de Ansiedad/fisiopatología , Encéfalo/efectos de los fármacos , Encéfalo/fisiopatología , Trastornos de Alimentación y de la Ingestión de Alimentos/tratamiento farmacológico , Trastornos de Alimentación y de la Ingestión de Alimentos/fisiopatología , Humanos , Modelos Neurológicos , Trastornos del Humor/tratamiento farmacológico , Trastornos del Humor/fisiopatología , Péptidos Opioides/agonistas , Péptidos Opioides/antagonistas & inhibidores , Recompensa , Estrés Fisiológico/efectos de los fármacos , Trastornos Relacionados con Sustancias/tratamiento farmacológico , Trastornos Relacionados con Sustancias/fisiopatología , Receptor de Nociceptina , Nociceptina
16.
Molecules ; 26(11)2021 05 28.
Artículo en Inglés | MEDLINE | ID: mdl-34071603

RESUMEN

Opioids are the most effective analgesics, with most clinically available opioids being agonists to the µ-opioid receptor (MOR). The MOR is also responsible for their unwanted effects, including reward and opioid misuse leading to the current public health crisis. The imperative need for safer, non-addictive pain therapies drives the search for novel leads and new treatment strategies. In this study, the recently discovered MOR/nociceptin (NOP) receptor peptide hybrid KGNOP1 (H-Dmt-D-Arg-Aba-ß-Ala-Arg-Tyr-Tyr-Arg-Ile-Lys-NH2) was evaluated following subcutaneous administration in mouse models of acute (formalin test) and chronic inflammatory pain (Complete Freund's adjuvant-induced paw hyperalgesia), liabilities of spontaneous locomotion, conditioned place preference, and the withdrawal syndrome. KGNOP1 demonstrated dose-dependent antinociceptive effects in the formalin test, and efficacy in attenuating thermal hyperalgesia with prolonged duration of action. Antinociceptive effects of KGNOP1 were reversed by naltrexone and SB-612111, indicating the involvement of both MOR and NOP receptor agonism. In comparison with morphine, KGNOP1 was more potent and effective in mouse models of inflammatory pain. Unlike morphine, KGNOP1 displayed reduced detrimental liabilities, as no locomotor impairment nor rewarding and withdrawal effects were observed. Docking of KGNOP1 to the MOR and NOP receptors and subsequent 3D interaction pattern analyses provided valuable insights into its binding mode. The mixed MOR/NOP receptor peptide KGNOP1 holds promise in the effort to develop new analgesics for the treatment of various pain states with fewer MOR-mediated side effects, particularly abuse and dependence liabilities.


Asunto(s)
Oligopéptidos/genética , Péptidos Opioides/química , Receptores Opioides mu/metabolismo , Dolor Agudo/tratamiento farmacológico , Analgésicos , Animales , Conducta Animal , Células CHO , Cricetinae , Cricetulus , Cicloheptanos/farmacología , Humanos , Hiperalgesia/tratamiento farmacológico , Técnicas In Vitro , Inflamación/tratamiento farmacológico , Masculino , Ratones , Modelos Moleculares , Simulación del Acoplamiento Molecular , Morfina/química , Morfina/farmacología , Movimiento/efectos de los fármacos , Naloxona/farmacología , Naltrexona/farmacología , Manejo del Dolor , Piperidinas/farmacología , Nociceptina
17.
J Neurophysiol ; 124(6): 1605-1614, 2020 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-32966754

RESUMEN

The vestibular system is modulated by various neuromodulators including opioid peptides. The current study was conducted to determine whether activation of nociceptin/orphanin FQ peptide (NOP) receptors modulates voltage-gated calcium currents and action potential discharge of rat vestibular afferent neurons. We performed whole cell patch-clamp recordings on cultured vestibular afferent neurons from P7-P10 Long-Evans rats. Application of nociceptin/orphanin FQ (N/OFQ), a 17-amino acid neuropeptide that is the endogenous ligand for NOP receptor, inhibits the high-voltage activated (HVA) component of the calcium current in a concentration-dependent manner with a half inhibitory concentration of 26 nM. Said inhibitory action on the calcium current is voltage-dependent, which was made clear by the fact that it was reverted in 80% by a depolarizing prepulse. Furthermore, the effect of N/OFQ was blocked by application of the specific NOP-antagonist UFP101, by preincubation with G-protein blocker pertussis toxin, and by coapplication of the specific N-type calcium-current blocker ω-conotoxin-MVIIA. N/OFQ application causes an increase in the duration and maximum rate of repolarization of action potentials. It also decreases repetitive discharge and discharge elicited by sinusoidal stimulation. These results show that in vestibular afferents, NOP receptor activation inhibits N-type calcium current by activating G proteins, mostly through the Gßγ subunit. This suggests that NOP activation produces a presynaptic modulation of primary vestibular afferent neurons' output into the vestibular nuclei, thus taking part in the integration and gain setting of vestibular information in second-order vestibular nucleus neurons.NEW & NOTEWORTHY Our results show that in primary vestibular afferent neurons, activation of the nociceptin/orphanin FQ peptide receptor inhibits the N-type calcium current by a mechanism mediated by G proteins. We propose that calcium current inhibition modulates neurotransmitter release from vestibular afferents, producing a presynaptic modulation of vestibular input to vestibular nuclei, thus contributing to gain control in the vestibular afferent input.


Asunto(s)
Canales de Calcio Tipo N/fisiología , Neuronas/fisiología , Péptidos Opioides/fisiología , Receptores Opioides/fisiología , Vestíbulo del Laberinto/fisiología , Animales , Células Cultivadas , Femenino , Masculino , Potenciales de la Membrana , Neuronas Aferentes/fisiología , Ratas Long-Evans , Receptor de Nociceptina , Nociceptina
18.
J Pharmacol Exp Ther ; 374(3): 366-375, 2020 09.
Artículo en Inglés | MEDLINE | ID: mdl-32527792

RESUMEN

In humans, alcohol is consumed for its rewarding and anxiolytic effects. The central nucleus of the amygdala (CeA) is considered a neuronal nexus that regulates fear, anxiety, and drug self-administration. Manipulations of the CeA alter ethanol (EtOH) consumption under numerous EtOH self-administration models. The experiments determined whether EtOH is reinforcing/anxiolytic within the CeA, whether selective breeding for high alcohol consumption alters the rewarding properties of EtOH in the CeA, and whether the reinforcing/anxiolytic effects of EtOH in the CeA are mediated by the neuropeptides corticotropin-releasing factor (CRF) and nociceptin. The reinforcing properties of EtOH were determined by having male Wistar and Taconic alcohol-preferring (tP) rats self-administer EtOH directly into the CeA. The expression of anxiety-like behaviors was assessed through multiple behavioral models (social interaction, acoustic startle, and open field). Coadministration of EtOH and a CRF1 antagonist (NBI35965) or nociceptin on self-administration into the CeA and anxiety-like behaviors was determined. EtOH was self-administered directly into the lateral CeA, and tP rats self-administered a lower concentration of EtOH than Wistar rats. EtOH microinjected into the lateral CeA reduced the expression of anxiety-like behaviors, indicating an anxiolytic effect. Coadministration of NBI35965 failed to alter the rewarding/anxiolytic properties of EtOH in the CeA. In contrast, coadministration of the nociceptin enhanced both EtOH reward and anxiolysis in the CeA. Overall, the data indicate that the lateral CeA is a key anatomic location that mediates the rewarding and anxiolytic effects of EtOH, and local nociceptin receptors, but not local CRF1 receptors, are involved in these behaviors. SIGNIFICANCE STATEMENT: Alcohol is consumed for the stimulatory, rewarding, and anxiolytic properties of the drug of abuse. The current data are the first to establish that alcohol is reinforcing and anxiolytic within the lateral central nucleus of the amygdala (CeA) and that the nociceptin system regulates these effects of alcohol within the CeA.


Asunto(s)
Ansiolíticos/farmacología , Núcleo Amigdalino Central/efectos de los fármacos , Etanol/farmacología , Antecedentes Genéticos , Péptidos Opioides/metabolismo , Recompensa , Animales , Conducta Animal/efectos de los fármacos , Núcleo Amigdalino Central/fisiología , Relación Dosis-Respuesta a Droga , Masculino , Ratas , Ratas Wistar , Conducta Social , Nociceptina
19.
Mol Cell Proteomics ; 17(9): 1737-1749, 2018 09.
Artículo en Inglés | MEDLINE | ID: mdl-29895708

RESUMEN

The cerebellum is a brain structure involved in motor and cognitive functions. The development of the cerebellar cortex (the external part of the cerebellum) is under the control of numerous factors. Among these factors, neuropeptides including PACAP or somatostatin modulate the survival, migration and/or differentiation of cerebellar granule cells. Interestingly, such peptides contributing to cerebellar ontogenesis usually exhibit a specific transient expression profile with a low abundance at birth, a high expression level during the developmental processes, which take place within the first two postnatal weeks in rodents, and a gradual decline toward adulthood. Thus, to identify new peptides transiently expressed in the cerebellum during development, rat cerebella were sampled from birth to adulthood, and analyzed by a semi-quantitative peptidomic approach. A total of 33 peptides were found to be expressed in the cerebellum. Among these 33 peptides, 8 had a clear differential expression pattern during development, 4 of them i.e. cerebellin 2, nociceptin, somatostatin and VGF [353-372], exhibiting a high expression level during the first two postnatal weeks followed by a significative decrease at adulthood. A focus by a genomic approach on nociceptin, confirmed that its precursor mRNA is transiently expressed during the first week of life in granule neurons within the internal granule cell layer of the cerebellum, and showed that the nociceptin receptor is also actively expressed between P8 and P16 by the same neurons. Finally, functional studies revealed a new role for nociceptin, acting as a neurotrophic peptide able to promote the survival and differentiation of developing cerebellar granule neurons.


Asunto(s)
Corteza Cerebelosa/metabolismo , Factores de Crecimiento Nervioso/metabolismo , Péptidos Opioides/metabolismo , Péptidos/metabolismo , Proteómica/métodos , Secuencia de Aminoácidos , Animales , Apoptosis/efectos de los fármacos , Diferenciación Celular/efectos de los fármacos , Células Cultivadas , Cerebelo/metabolismo , Femenino , Peróxido de Hidrógeno/toxicidad , Masculino , Factores de Crecimiento Nervioso/química , Neuronas/efectos de los fármacos , Neuronas/metabolismo , Péptidos Opioides/química , Péptidos Opioides/genética , Péptidos/química , ARN Mensajero/genética , ARN Mensajero/metabolismo , Ratas Wistar , Receptores Opioides/metabolismo , Receptor de Nociceptina , Nociceptina
20.
Mol Pain ; 15: 1744806919828921, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30665329

RESUMEN

Little is known about the mechanisms involved in the regulation of nociceptin and its receptor (nociceptin opioid peptide receptor, NOP) in response to inflammation and pain in humans. In this study, specific signaling pathways contributing to the regulation of nociceptin and NOP in human peripheral blood leukocytes were investigated. After approval by the ethics committee, peripheral blood obtained from healthy donors was cultured with or without phorbol-12-myristate-13-acetate (PMA). Prepronociceptin (ppNOC) and NOP mRNA were analyzed by real-time quantitative polymerase chain reaction, and nociceptin concentrations in culture supernatants by fluorescent enzyme immunoassay. Nociceptin and NOP protein levels in blood leukocyte subsets were determined using flow cytometry. To examine the contribution of signaling pathways to ppNOC and NOP regulation, blood was pre-treated with kinase inhibitors specific for ERK, JNK, p38, and NFκB pathways prior to culturing with or without PMA. PMA dose-dependently upregulated ppNOC mRNA but downregulated NOP mRNA in human peripheral blood leukocytes. PMA 10 ng/ml increased ppNOC after 6 h and suppressed NOP after 3 h compared to controls (both P <0.005). Nociceptin concentrations were increased in supernatants of PMA-induced blood samples after 24 h ( P <0.005), whereas expression of cell-membrane NOP was decreased by PMA in blood leukocyte subsets (all P <0.05). Blockade of ERK or p38 pathways partially prevented PMA effects on ppNOC and NOP mRNA (all P <0.05). The combination of ERK and p38 inhibitors completely reversed the effects of PMA ( P <0.05). ERK and p38 are two major signaling pathways regulating nociceptin and its receptor in human peripheral blood leukocytes under inflammatory conditions.


Asunto(s)
Quinasas MAP Reguladas por Señal Extracelular/metabolismo , Regulación de la Expresión Génica/fisiología , Leucocitos/metabolismo , Péptidos Opioides/metabolismo , Receptores Opioides/metabolismo , Proteínas Quinasas p38 Activadas por Mitógenos/metabolismo , Adolescente , Adulto , Relación Dosis-Respuesta a Droga , Citometría de Flujo , Regulación de la Expresión Génica/efectos de los fármacos , Humanos , Leucocitos/efectos de los fármacos , Persona de Mediana Edad , Péptidos Opioides/genética , Ésteres del Forbol/farmacología , Precursores de Proteínas/genética , Precursores de Proteínas/metabolismo , ARN Mensajero/metabolismo , Receptores Opioides/genética , Transducción de Señal/efectos de los fármacos , Transducción de Señal/fisiología , Factores de Tiempo , Adulto Joven , Receptor de Nociceptina , Nociceptina
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