Influence of inflammatory nociception on the anxiolytic-like effect of diazepam and buspirone in rats

Psychopharmacology - Tập 180 Số 3 - Trang 399-407 - 2005
Alonso Fernández–Guasti1, Rebeca Reyes1, Lucı́a Martı́nez-Mota2, Francisco López‐Muñoz1
1Departamento de Farmacobiología, Centro de Investigación y Estudios Avanzados del IPN, Mexico, Mexico
2Dirección de Investigaciones en Neurociencias, Instituto Nacional de Psiquiatría Ramón de la Fuente Muñiz, Mexico, Mexico

Tóm tắt

Từ khóa


Tài liệu tham khảo

Ashton H (1994) Guidelines for the rational use of benzodiazepines. When and what to use. Drugs 48:25–40

Cornwall A, Donderi DC (1988) The effect of experimentally induced anxiety on the experience of pressure pain. Pain 35:105–113

Covino BG, Dubner R, Gybels J, Kosterlitz HW, Liebeskind JC, Sternbach RA, Vyclicky L, Yamamura H, Zimmermann M (1980). Ethical standards for investigations of experimental pain in animals. Pain 9:141–143

Deciga-Campos M, Lopez UG, Reval MI, Lopez-Muñoz FJ (2003) Enhancement of antinociception by co-administration of an opioid drug (morphine) and a preferential cyclooxygenase-2 inhibitor (rofecoxib) in rats. Eur J Pharmacol 460:99–107

Edwards R, Peet M, Shay J, Horrobin D (1998) Omega-3 polyunsaturated fatty acid levels in the diet and red blood cell membranes of depressed patients. J Affect Disord 48:149–155

Fernandez-Guasti A, Martinez-Mota L (2003) Orchidectomy sensitizes male rats to the action of diazepam on burying behaviour latency: role of testosterone. Pharmacol Biochem Behav 75:473–479

Fernandez-Guasti A, Picazo O (1992) Changes in burying behaviour during the estrous cycle: effect of estrogen and progesterone. Psychoneuroendocrinology 17:681–689

Fernandez-Guasti A, Ferreira A, Picazo O (2001) Diazepam, but not buspirone, induces similar anxiolytic-like actions in lactating and ovariectomized Wistar rats. Pharmacol Biochem Behav 70:85–93

Hernandez-Delgadillo GP, Lopez-Muñoz FJ, Salazar LA, Cruz SL (2003) Morphine and dipyrone co-administration delays tolerance development and potentiates antinociception. Eur J Pharmacol 469:71–79

Jones A, Zachariae RJ (2002) Gender, anxiety, and experimental pain sensitivity: an overview. J Am Med Womens Assoc 57:91–94

Katz JL, Weiner H (1975) Psychobiological variables in the onset and recurrence of gouty arthritis: a chronic disease model. J Chronic Dis 28:51–62

LaBuda CJ, Fuchs PN (2000) Aspirin attenuates the anxiolytic actions of ethanol. Alcohol 21:287–290

Lazzarini R, Malucelli BE, Palermo-Neto J (2001) Reduction of acute inflammation in rats by diazepam: role of peripheral benzodiazepine receptors and corticosterone. Immunopharmacol Immunotoxicol 23:253–265

Lazzarini R, Malucelli BE, Muscara MN, de Nucci G, Palermo-Neto J (2003) Reduction of inflammation in rats by diazepam: tolerance development. Life Sci 72:2361–2368

Lee C, Rodgers RJ (1990) Antinociceptive effects of elevated plus-maze exposure: influence of opiate receptor manipulations. Psychopharmacology (Berl) 102:507–513

Leonard BE, Song C (1996) Stress and the immune system in the etiology of anxiety and depression. Pharmacol Biochem Behav 54:299–303

López-Muñoz FJ, Salazar LA, Castañeda-Hernández G, Villarreal JF (1993) A new model to assess analgesic activity: pain-induced functional impairment in the rat (PIFIR). Drug Dev Res 28:169–175

Maes M, Christophe A, Bosmans E, Lin A, Neels H (2000) In humans, serum polyunsaturated fatty acids levels predict the response to proinflammatory cytokines to psychological stress. Biol Psychiatry 47:910–920

Morgan MM, Depaulis A, Liebeskind JC (1987) Diazepam dissociates the analgesic and aversive effects of periaqueductal gray stimulation in the rat. Brain Res 423:395–398

Murray JB (1980) Psychosomatic aspects of gout. J Gen Psychol 103:131–138

Nunes-de-Souza RL, Canto-de-Souza A, da-Costa M, Fornari RV, Graeff FG, Pela IR (2000) Anxiety-induced antinociception in mice: effects of systemic and intra-amygdala administration of 8-OH-DPAT and midazolam. Psychopharmacology (Berl) 150:300–310

Oka T, Oka K, Hori T (2001) Mechanisms and mediators of psychological stress-induced rise in core temperature. Psychosom Med 63:476–486

Oliveira MA, Prado WA (1994) Antinociception and behavioural manifestations induced by intracerebroventricular or intra-amygdaloid administration of cholinergic agonists in the rat. Pain 57:383–391

Pellow S, Chopin P, File SE, Briley M (1985). Validation of open:closed arm entries in an elevated plus-maze as a measure of anxiety in the rat. J Neurosci Methods 14(3):149–167

Rodgers RJ, Randall JI (1987) Benzodiazepine ligands, nociception and ‘defeat’ analgesia in male mice. Psychopharmacology (Berl) 91:305–315

Rodgers RJ, Shepherd JK (1989) Prevention of the analgesic consequences of social defeat in male mice by 5-HT1A anxiolytics, buspirone, gepirone and ipsapirone. Psychopharmacology (Berl) 99:374–380

Rodríguez-Manzo G, López-Rubalcava C, Fernández-Guasti A (1999) Anxiolytic-like effect of ejaculation under various sexual behaviour conditions in the male rat. Physiol Behav 67:651–657

Shah AA, Treit D (2004) Infusions of midazolam into the medial prefrontal cortex produce anxiolytic effects in the elevated plus-maze and shock-probe burying tests. Brain Res 996:31–40

Shin IC, Kim HC, Swanson J, Hong JT, Oh KW (2003) Anxiolytic effects of acute morphine can be modulated by nitric oxide systems. Pharmacology 68:183–189

Singh L, Field MJ, Ferris P, Hunter JC, Oles RJ, Williams RG, Woodruff GN (1996) The antiepileptic agent gabapentin (Neurontin) possesses anxiolytic-like and antinociceptive actions that are reversed by d-serine. Psychopharmacology (Berl) 127:1–9

Smith TA (2001) Type A gamma-aminobutyric acid (GABAA) receptor subunits and benzodiazepine binding: significance to clinical syndromes and their treatment. Br J Biomed Sci 58:111–121

Song C, Li X, Leonard BE, Horrobin DF (2003) Effects of dietary n−3 or n−6 fatty acids on interleukin-1beta-induced anxiety, stress, and inflammatory responses in rats. J Lipid Res 44:1984–1991

Tarpley EL (1965) Evaluation of diazepam (Valium) in the symptomatic treatment of rheumatic disorders. A controlled comparative study. J Chronic Dis 18:99–106

Treit, D (1985) Animal models for the study of anti-anxiety agents: a review. Neurosci Biobehav Rev 9:203–222

Treit D (1990) A comparison of anxiolytic and nonanxiolytic agents in the shock-probe/burying test for anxiolytics. Pharmacol Biochem Behav 36:203–205

Treit D, Pinel JPJ, Fibiger HC (1981) Conditioned defensive burying: a new paradigm for the study of anxiolytic agents. Pharmacol Biochem Behav 15:619–626

Tunnicliff G (1991) Molecular basis of buspirone’s anxiolytic action. Pharmacol Toxicol 69:149–156

Ventura-Martínez R, Díaz-Reval MI, Déciga-Campos M, Terrón JA, Domínguez-Ramírez AM, López-Muñoz FJ (2002) Involvement of peripheral cyclooxygenase-1 and cyclooxygenase-2 in inflammatory pain. J Pharm Pharmacol 54:405–412

Yamada K, Iida R, Miyamoto Y, Saito K, Sekikawa K, Seishima M, Nabeshima TJ (2000) Neurobehavioral alterations in mice with a targeted deletion of the tumor necrosis factor-alpha gene: implications for emotional behaviour. Neuroimmunology 111:131–138

Zimmermann M (1983). Ethical guidelines for investigations of experimental pain in conscious animals. Pain 16:109–110