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微波辐射与断头术的比较:强啡肽和脑啡肽的基础水平以及慢性吗啡治疗对强啡肽肽的影响。

A comparison between microwave irradiation and decapitation: basal levels of dynorphin and enkephalin and the effect of chronic morphine treatment on dynorphin peptides.

作者信息

Nylander I, Stenfors C, Tan-No K, Mathé A A, Terenius L

机构信息

Department of Pharmaceutical Biosciences, Uppsala University, Sweden.

出版信息

Neuropeptides. 1997 Aug;31(4):357-65. doi: 10.1016/s0143-4179(97)90072-x.

Abstract

Opioid peptides were analysed in tissue extracts of various brain structures and the pituitary gland from rats sacrificed by microwave irradiation, and compared with peptide levels in tissue extracts from decapitated rats. Dynorphin A, dynorphin B and Leu-enkephalinArg6, derived from prodynorphin, and Met-enkephalinArg6Phe7 from proenkephalin, were measured. Basal immunoreactive levels of dynorphin A and B were consistently higher in extracts from microwave-irradiated rats, whereas in these extracts immunoreactive levels of Leu-enkephalinArg6, an endogenous metabolite of dynorphin peptides, were either lower than, the same as or higher than in decapitated rats. Immunoreactive levels of Met-enkephalinArg6Phe7 were higher in microwave-irradiated rats. Effects of morphine treatment on prodynorphin peptide levels were evaluated and compared with previous findings in decapitated rats. Dynorphin immunoreactive levels were higher in the nucleus accumbens and striatum of morphine-tolerant rats than in corresponding areas in saline-treated rats. These results indicate tissue-specific metabolism of prodynorphin peptides and show that metabolism of opioid peptides occurs during the dissection procedure after decapitation of the rat even though precautions are taken to minimize degradation.

摘要

对经微波照射处死的大鼠的各种脑结构和垂体的组织提取物中的阿片肽进行了分析,并与断头处死大鼠的组织提取物中的肽水平进行了比较。测定了源自前强啡肽原的强啡肽A、强啡肽B和亮氨酸脑啡肽Arg6,以及源自前脑啡肽原的甲硫氨酸脑啡肽Arg6Phe7。微波照射大鼠提取物中强啡肽A和B的基础免疫反应水平始终较高,而在这些提取物中,强啡肽肽的内源性代谢物亮氨酸脑啡肽Arg6的免疫反应水平低于、等于或高于断头处死大鼠。微波照射大鼠中甲硫氨酸脑啡肽Arg6Phe7的免疫反应水平较高。评估了吗啡处理对前强啡肽原肽水平的影响,并与先前断头处死大鼠的研究结果进行了比较。吗啡耐受大鼠伏隔核和纹状体中的强啡肽免疫反应水平高于生理盐水处理大鼠相应区域。这些结果表明前强啡肽原肽存在组织特异性代谢,并表明即使采取了预防措施以尽量减少降解,大鼠断头后的解剖过程中仍会发生阿片肽的代谢。

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