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用不可逆的μ受体拮抗剂β-FNA对大鼠进行预处理,无法阻止纳曲酮诱导的μ阿片受体上调。

Pretreatment of rats with the irreversible mu-receptor antagonist, beta-FNA, fails to prevent naltrexone-induced upregulation of mu-opioid receptors.

作者信息

Rothman R B, Long J B, Bykov V, Jacobson A E, Rice K C, Holaday J W

机构信息

Laboratory of Clinical Science, NIMH, Bethesda, MD 20892.

出版信息

Neuropharmacology. 1990 Sep;29(9):805-10. doi: 10.1016/0028-3908(90)90153-i.

Abstract

This study examined the effect of beta-funaltrexamine (beta-FNA), an irreversible mu-receptor antagonist, on naltrexone-induced upregulation of mu-(mu cx + mu nex) and delta nex-opioid receptors. [The subscripts 'cx' and 'nex' denote binding sites 'in' (cx) and 'not in' (nex) the opioid receptor complex.] Rats were treated according to the following protocol. Two naltrexone or two placebo pellets were implanted subcutaneously in a nylon mesh on day 1. and were removed intact on day 8. Rats were given either saline or 20 nmol of beta-FNA in 10 microliters of saline (i.c.v.) on days 1, 3, 5 and 6, 60 min prior to implantation of the pellet. On day 9 frozen lysed-P2 membranes were prepared for assay of mu binding sites. In other experiments, membranes were depleted of mu-receptors by pretreatment with the site-directed acylating agent 2-(4-ethoxybenzyl)-l-diethylaminoethyl-5-isothiocyanatobenzimid azole.HCl (BIT) for assay of delta nex binding sites, using [3H] [D-ala2, D-leu5]enkephalin. The results demonstrated that beta-FNA did not upregulate the mu binding sites and also did not prevent naltrexone-induced upregulation of mu binding sites. Both beta-FNA and naltrexone increased the Bmax of delta nex binding sites and their effects were additive. These data suggest that the mechanism(s) responsible for antagonist-induced upregulation of opioid receptors are more complex than previously appreciated.

摘要

本研究考察了不可逆的μ受体拮抗剂β-芬基曲胺(β-FNA)对纳曲酮诱导的μ-(μcx + μnex)和δnex阿片受体上调的影响。[下标“cx”和“nex”分别表示阿片受体复合物“内”(cx)和“外”(nex)的结合位点。]大鼠按以下方案进行处理。在第1天,将两个纳曲酮或两个安慰剂药丸皮下植入尼龙网中,并于第8天完整取出。在第1、3、5和6天,即在药丸植入前60分钟,给大鼠腹腔注射生理盐水或10微升含20纳摩尔β-FNA的生理盐水。在第9天,制备冷冻裂解的P2膜用于μ结合位点的测定。在其他实验中,用定点酰化剂2-(4-乙氧基苄基)-1-二乙氨基乙基-5-异硫氰酸苯并咪唑盐酸盐(BIT)预处理膜以耗尽μ受体,然后用[3H][D-ala2,D-leu5]脑啡肽测定δnex结合位点。结果表明,β-FNA既没有上调μ结合位点,也没有阻止纳曲酮诱导的μ结合位点上调。β-FNA和纳曲酮均增加了δnex结合位点的Bmax,且二者的作用是相加的。这些数据表明,拮抗剂诱导阿片受体上调的机制比之前认为的更为复杂。

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