首页> 外文期刊>Japanese Journal of Pharmacology >Effects of a Mixture of Peptidase Inhibitors (Amastatin, Captopril and Phosphoramidon) on Met-Enkephalin-, β-Endorphin-, Dynorphin-(1-13) and Electroacupuncture-Induced Antinociception in Rats
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Effects of a Mixture of Peptidase Inhibitors (Amastatin, Captopril and Phosphoramidon) on Met-Enkephalin-, β-Endorphin-, Dynorphin-(1-13) and Electroacupuncture-Induced Antinociception in Rats

机译:肽酶抑制剂(阿马他汀,卡托普利和磷酰胺)的混合物对大鼠Met-脑啡肽,β-内啡肽,强啡肽-(1-13)和电针诱导的镇痛作用的影响

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References(41) Cited-By(18) The effects of a mixture of three peptidase inhibitors (PIs), amastatin, captopril and phosphoramidon, on methionine-enkephalin (Met-enk)-, β-endorphin (β-end)-, dynorphin-(1-13) (Dyn)-and electroacupuncture (EA)-induced antinociception were compared in rats. EA was performed by passing electric pulses (3 Hz, 0.1-msec duration, for 45 min) through acupuncture needles inserted into the Hokupoint. The antinociceptive effect was estimated by the hind paw pressure test. The antinociceptive effects of Met-enk and β-end injected i.c.v. or Lt. and of Dyn injected i.t. were clearly potentiated by the PIs pretreated by the same administration routes as used for the injection of opioid peptides. The antinociceptive effects of Met-enk, β-end and Dyn injected i.c.v. were also potentiated significantly by i.t.-PIs. PIs injected into the periaqueductal gray (PAG) potentiated EA antinociception. However, the EA effect was not affected by i.t.-PIs and was rather attenuated by i.c.v.-PIs. These results suggest that: i) Met-enk hydrolyzing enzymes are involved in the degradation of not only Met-enk but also β-end and Dyn in the rat central nervous system; ii) Met-enk and β-end act on both supraspinal and spinal sites, while Dyn acts only on the spinal site; iii) EA antinociception is mediated by supraspinal Met-enk and/or β-end; and iv) an anti-opiate peptide system may be activated by EA stimulation, being susceptible to Met-enk hydrolyzing enzymes.
机译:参考文献(41)By-By(18)三种肽酶抑制剂(PI)的混合物,阿马他汀,卡托普利和磷酰胺对甲硫氨酸脑啡肽(Met-enk)-,β-内啡肽(β-end)-,在大鼠中比较了强啡肽-(1-13)(Dyn)-和电针(EA)诱导的镇痛作用。通过将电脉冲(3 Hz,0.1毫秒持续时间,持续45分钟)通过插入Hokupoint的针灸针进行EA。通过后爪压力测试评估抗伤害感受作用。静脉内注射Met-enk和β端的镇痛作用或Lt.和Dyn注入i.t.通过用与阿片样肽肽的注射相同的给药途径预处理的PI明显增强了它们的活性。静脉注射Met-enk,β-end和Dyn的镇痛作用。 i-t.PI也显着增强将PI注入导水管周围灰色(PAG)中可增强EA抗伤害感受力。但是,EA效果不受i.t.-PI的影响,而被i.c.v.-PI的效果减弱。这些结果表明:i)Met-enk水解酶不仅参与大鼠中枢神经系统中Met-enk的降解,而且还参与β-末端和Dyn的降解; ii)Met-enk和β-末端同时作用于脊髓上和脊髓部位,而Dyn仅作用于脊髓部位。 iii)EA抗伤害感受是由脊髓上Met-enk和/或β-末端介导的; iv)可以通过EA刺激来激活抗阿片肽系统,该系统易受Met-enk水解酶的影响。

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