Orexin-2 receptor antagonism in the cornu ammonis 1 region of hippocampus prevented the antinociceptive responses induced by chemical stimulation of the lateral hypothalamus in the animal model of persistent pain

التفاصيل البيبلوغرافية
العنوان: Orexin-2 receptor antagonism in the cornu ammonis 1 region of hippocampus prevented the antinociceptive responses induced by chemical stimulation of the lateral hypothalamus in the animal model of persistent pain
المؤلفون: Amir Haghparast, Farzaneh Nazari-Serenjeh, Kobra Askari, Abbas Haghparast, Pooya Pourreza, Mehdi Sadeghi
المصدر: Behavioural Pharmacology. 32:515-523
بيانات النشر: Ovid Technologies (Wolters Kluwer Health), 2021.
سنة النشر: 2021
مصطلحات موضوعية: Nociception, medicine.medical_specialty, Lateral hypothalamus, Hippocampus, Stimulation, Limbic system, Orexin Receptors, Internal medicine, medicine, Animals, Rats, Wistar, CA1 Region, Hippocampal, Pharmacology, Analgesics, Behavior, Animal, Chemistry, digestive, oral, and skin physiology, TCS-OX2-29, Stimulation, Chemical, Rats, Psychiatry and Mental health, Metabolism, medicine.anatomical_structure, Endocrinology, nervous system, Hypothalamus, Orexin Receptor Antagonists, Wakefulness, Chronic Pain, Drug Monitoring, medicine.drug
الوصف: Orexins are excitatory neuropeptides, mainly produced by neurons located in the lateral hypothalamus, which project to many brain areas. The orexinergic system plays a fundamental role in arousal, sleep/wakefulness, feeding, energy homeostasis, motivation, reward, stress and pain modulation. As a prominent part of the limbic system, the hippocampus has been involved in formalin-induced nociception modulation. Moreover, hippocampus regions express both orexin-1 (OX1) and orexin-2 (OX2) receptors. The present study investigated the role of OX2 receptors (OX2R) within the cornu ammonis 1 (CA1) region of the hippocampus in the mediation of lateral hypothalamus-induced antinociception. Fifty-three male Wistar rats were unilaterally implanted with two separate cannulae into the lateral hypothalamus and CA1. Animals were pretreated with intra-CA1 TCS OX2 29 as an OX2R antagonist before intra-lateral hypothalamus administration of carbachol (250 nM) as a muscarinic agonist for chemical stimulation of orexinergic neurons. Formalin test was used as an animal model of persistent pain, following intra-lateral hypothalamus carbachol microinjection. Results showed that the chemical stimulation of the lateral hypothalamus significantly attenuated formalin-evoked nociceptive behaviors during both phases of the formalin test, and administration of TCS OX2 29 into the CA1 blocked these antinociceptive responses in both phases, especially in the late phase. These findings suggest that OX2 receptors in the CA1 partially mediate the lateral hypothalamus-induced antinociceptive responses in persistent inflammatory pain.
تدمد: 0955-8810
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::7f5a10a250b1b56880a27a5de753c6bcTest
https://doi.org/10.1097/fbp.0000000000000646Test
رقم الانضمام: edsair.doi.dedup.....7f5a10a250b1b56880a27a5de753c6bc
قاعدة البيانات: OpenAIRE