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Role of GABAergic Systems in the Development of Morphine Tolerance in Formalin-Treated Mice

机译:GABA能系统在福尔马林处理小鼠吗啡耐受性发展中的作用

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References(17) Cited-By(9) Since the development of tolerance to morphine antinociception in formalin-treated mice was delayed and diazepam normalized the delay, the involvement of GABAergic systems in the process was investigated. Gamma amino-an-butyric acid (GABA) at 10 mg/kg and the GABAA-receptor agonist muscimol at 0.05 mg/kg, i.p., 30 min before daily morphine injection at 10 mg/kg, s.c. completely reversed the delay in the development of morphine tolerance in the formalin-treated mice. The GABAA antagonist bicuculline at 1 mg/kg and the Cl--channel blocker picrotoxin at 1 mg/kg extinguished the reverse effect of muscimol and GABA, respectively. In contrast, the GABAB antagonist CGP 35348 (3-aminopropane-diethoxymethyl-phosphinic acid) up to 100 mg/kg, i.p. failed to abolish the GABA effect; and baclofen, a GABAB-receptor agonist, at 0.5 and 2 mg/kg, i.p., 30 min before morphine was without effect on the delay. On the other hand, bicuculline was incapable of abolishing the reverse effects of diazepam on the delay of tolerance development; and likewise, the reverse effect of muscimol was not affected by flumazenil. No appreciable influence of these GABA-related compounds was seen on morphine antinociception itself nor the development of tolerance in normal mice. These results suggest that the benzodiazepine-GABAA-Cl- channel complex is involved in the mechanism underlying the delay of the development of morphine tolerance in formalin-treated mice; however, it is deduced that benzodiazepine-receptor and GABAergic systems are not always functionally coupled to each other in the mechanisms.
机译:参考文献(17)引用(9)由于福尔马林处理的小鼠对吗啡抗伤害感受的耐受性得到了延迟,而地西m使延迟得以标准化,因此对GABA能系统在该过程中的参与进行了研究。每天以10 mg / kg吗啡注射前30分钟腹腔注射10 mg / kg的Gamma氨基-丁酸(GABA)和0.05 mg / kg的GABAA受体激动剂麝香酚,皮下注射。完全逆转了福尔马林治疗小鼠体内吗啡耐受性发展的延迟。 1 mg / kg的GABAA拮抗剂bicuculline和1 mg / kg的Cl-通道阻滞剂微毒素分别抵消了麝香酚和GABA的逆作用。相反,GABA B拮抗剂CGP 35348(3-氨基丙烷-二乙氧基甲基次膦酸)最高可达100 mg / kg,腹腔注射。无法废除GABA效应;和巴氯芬(一种GABAB受体激动剂)在吗啡给药前30分钟腹腔注射0.5和2 mg / kg,对延迟没有影响。另一方面,双小分子碱不能消除地西on对延缓耐受性发展的逆向作用。同样,麝香酚的逆转作用不受氟马西尼的影响。在正常小鼠中,未观察到这些GABA相关化合物对吗啡抗伤害感受本身有明显影响,也未见其耐受性的发展。这些结果表明,苯甲醛二氮杂-GABAA-Cl-通道复合物参与了福尔马林处理的小鼠吗啡耐受性延迟发展的机制。然而,据推论,苯二氮杂pine受体和GABA能系统在机制上并不总是彼此功能耦合。

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