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