Antinociceptive effect and enzymatic degradation of endomorphin-1 in newborn rat spinal cord

被引:29
|
作者
Sugimoto-Watanabe, A [1 ]
Kubota, K [1 ]
Fujibayashi, K [1 ]
Saito, K [1 ]
机构
[1] Sankyo Co Ltd, Neurosci & Immunol Res Labs, Shinagawa Ku, Tokyo 1408710, Japan
关键词
endomorphin-1; and-2; enkephalin; spinal cord; slow ventral root potential; enzymatic degradation;
D O I
10.1254/jjp.81.264
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Recently discovered endomorphin-1 and -2 are the first endogenous agonists selective for the mu-opioid receptor. We examined the antinociceptive effect and enzymatic degradation of endomorphin-1 in the newborn rat spinal cord. Endomorphin-1 inhibited the binding of [H-3][D-Ala(2), N-Me-Phe(4), Gly-ols] enkephalin (DAMGO) to the membrane fraction of the newborn rat spinal cord as potently as DAMGO and morphine. Endomorphin-1 at 1-1,000 nM reduced the slow ventral root potential, which reflects noxious transmission in the isolated newborn rat spinal cord, concentration-dependently via the Cl-opioid receptor. A similar effect was observed with endomorphin-2. The newborn rat spinal cord homogenate degraded endomorphin-1 in a 120-min incubation procedure, while it degraded [Leu(5)]enkephalin even in a 30-min incubation procedure. The degradation of endomorphin-1 was inhibited by actinonin but not by thiorphan. These results showed that in the newborn rat spinal cord, endomorphins had high affinity for the mu-opioid receptor and exerted mu-opioid-receptor-mediated inhibitory effects on noxious responses. Endomorphin-1 was degraded by peptidases, but slowly compared with [Leu(5)]enkephalin degradation, and the degrading enzymes were actinonin-sensitive peptidases.
引用
收藏
页码:264 / 270
页数:7
相关论文
共 50 条
  • [31] INVOLVEMENT OF ENZYMATIC DEGRADATION IN THE INACTIVATION OF TACHYKININ NEUROTRANSMITTERS IN NEONATAL RAT SPINAL-CORD
    SUZUKI, H
    YOSHIOKA, K
    YANAGISAWA, M
    URAYAMA, O
    KURIHARA, T
    HOSOKI, R
    SAITO, K
    OTSUKA, M
    BRITISH JOURNAL OF PHARMACOLOGY, 1994, 113 (01) : 310 - 316
  • [32] Novel endomorphin-1 analogs with C-terminal oligoarginine-conjugation display systemic antinociceptive activity with less gastrointestinal side effects
    Wang, Chang-lin
    Qiu, Ting-ting
    Diao, Yu-xiang
    Zhang, Yao
    Gu, Ning
    BIOCHIMIE, 2015, 116 : 24 - 33
  • [33] Differential alteration of functions of rat peritoneal macrophages responsive to endogenous opioid peptide endomorphin-1
    Inui, Y
    Azuma, Y
    Ohura, K
    INTERNATIONAL IMMUNOPHARMACOLOGY, 2002, 2 (08) : 1133 - 1142
  • [34] Maturation of endomorphin-2 in the dorsal horn of the medulla and spinal cord of the rat
    Barr, GA
    Zadina, JE
    NEUROREPORT, 1999, 10 (18) : 3857 - 3860
  • [35] Localization of endomorphin-2-like immunoreactivity in the rat medulla and spinal cord
    Martin-Schild, S
    Zadina, JE
    Gerall, AA
    Vigh, S
    Kastin, AJ
    PEPTIDES, 1997, 18 (10) : 1641 - 1649
  • [36] Effects of endomorphin-1 and -2 on μ-opioid receptors in myenteric neurons and in the peristaltic reflex in rat small intestine
    Storr, M
    Hahn, A
    Gaffal, E
    Saur, D
    Allescher, HD
    CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2002, 29 (5-6): : 428 - 434
  • [37] Effects of endomorphin-1 postconditioning on myocardial ischemia/reperfusion injury and myocardial cell apoptosis in a rat model
    Zhang, Wei-Ping
    Zong, Qiao-Feng
    Gao, Qin
    Yu, Ying
    Gu, Xiao-Yu
    Wang, Ya
    Li, Zheng-Hong
    Ge, Min
    MOLECULAR MEDICINE REPORTS, 2016, 14 (04) : 3992 - 3998
  • [38] Enhancing effect of dimethyl sulfoxide on nociceptive transmission in isolated spinal cord of newborn rat
    Kubota, K
    Fujibayashi, K
    Saito, K
    EUROPEAN JOURNAL OF PHARMACOLOGY, 1998, 351 (02) : 173 - 179
  • [39] Resveratrol attenuates morphine antinociceptive tolerance via SIRT1 regulation in the rat spinal cord
    He, Xin
    Ou, Peng
    Wu, Kemin
    Huang, Changsheng
    Wang, Yichun
    Yu, Zou
    Guo, Qulian
    NEUROSCIENCE LETTERS, 2014, 566 : 55 - 60
  • [40] Culture of Motor Neurons from Newborn Rat Spinal Cord
    程时刚
    石瑛
    海波
    韩晓敏
    陈朝晖
    李兵
    肖传国
    Journal of Huazhong University of Science and Technology(Medical Sciences), 2009, 29 (04) : 413 - 416