We have previously demonstrated that chronic and simultaneous treat'/> Involvement of the cyclic AMP system in the switch from tolerance into supersensitivity to the antinociceptive effect of the opioid sufentanil
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Involvement of the cyclic AMP system in the switch from tolerance into supersensitivity to the antinociceptive effect of the opioid sufentanil

机译:循环AMP系统参与了从耐受性向超敏性转变到阿片类药物舒芬太尼的镇痛作用

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摘要

class="enumerated" style="list-style-type:decimal">We have previously demonstrated that chronic and simultaneous treatment of rats with the μ-opioid receptor agonist sufentanil and the Ca2+ channel blocker nimodipine, not only prevented tolerance development, but the animals became supersensitive to the antinociceptive effect of the opioid. The focus of the present work was to determine the possible involvement of cross interactions between the adenylyl cyclase pathway and L-type voltage-sensitive Ca2+-channels, in modulating the switch from opioid tolerance into supersensitivity.The modulatory effect of sufentanil on adenylyl cyclase activity was determined by measuring cyclic AMP production in slices from the cortex of rats rendered tolerant or supersensitive to the antinociceptive effect of the opioid. Tolerance was induced by chronic infusion of sufentanil, at a rate of 2 μg h−1, for 7 days. Supersensitivity was induced by concurrent infusion of sufentanil (2 μg h−1) and nimodipine (1 μg h−1) for 7 days. Antinociception was evaluated by the tail-flick test.Tolerance to the analgesic effect of sufentanil was associated with a significant reduction in the response of adenylyl cyclase to forskolin. Furthermore, the effect of the opioid on forskolin-induced cyclic AMP accumulation was abolished. On the other hand, supersensitivity to the analgesic effect of the opioid was associated with an increase in both, the adenylyl cyclase response to forskolin, and the opioid inhibition of cyclic AMP production.We suggest that sustained L-type Ca2+ channel blockade may result in changes in the adenylyl cyclase effector system triggered by μ-opioid receptor activation, leading to the switch from opioid tolerance into supersensitivity.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 先前我们已经证明,使用μ阿片受体激动剂舒芬太尼和Ca 2 + 通道阻滞剂尼莫地平对大鼠进行慢性和同时治疗,不仅阻止了耐受性的发展,而且动物对抗伤害感受也变得超敏阿片类药物。本研究的重点是确定腺苷酸环化酶途径与L型电压敏感的Ca 2 + 通道之间的交叉相互作用是否可能参与了从阿片类药物耐受性向超敏性的转换。 舒芬太尼对腺苷酸环化酶活性的调节作用是通过测量对阿片类药物的耐受性或超敏感性的大鼠大脑皮层切片中的环状AMP产生来确定的。慢性输注舒芬太尼以2μgh -1 的速率诱导耐受7天。并同时输注舒芬太尼(2μgh -1 )和尼莫地平(1μgh -1 )7天,可引起超敏反应。通过甩尾试验评估抗伤害感受。 对舒芬太尼镇痛作用的耐受性与腺苷酸环化酶对毛喉素的反应显着降低有关。此外,阿片类药物对毛喉素诱导的环AMP积累的影响被消除。另一方面,对阿片类药物镇痛作用的超敏性与腺苷酸环化酶对毛喉素的反应增加以及阿片类药物对环状AMP产生的抑制作用有关。 我们建议持续的L- Ca 2 + 类型的通道阻滞可能导致μ阿片受体激活引起的腺苷酸环化酶效应系统改变,从而导致从阿片耐受性转变为超敏性。

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