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激烈遭遇对雄性沙鼠(长爪沙鼠,仓鼠科)松果体褪黑素形成的影响。

Effects of aggressive encounters on pineal melatonin formation in male gerbils (Meriones unguiculatus, Cricetidae).

作者信息

Heinzeller T, Joshi B N, Nürnberger F, Reiter R J

机构信息

Anatomische Anstalt, Universität München, Federal Republic of Germany.

出版信息

J Comp Physiol A. 1988 Nov;164(1):91-4. doi: 10.1007/BF00612722.

Abstract

Pineal N-acetyl-transferase activity and radioimmunoassayable melatonin levels were determined in adult male gerbils subjected to aggressive encounters using the intruder-model. In the first experiment, a single encounter of 3 min was applied in the afternoon to intact and to animals with sympathetically denervated pineal organs. Compared with controls, both stressed groups demonstrated a drastic decrease in N-acetyl-transferase activity followed by a slow recovery. In both groups there also occurred a marked change in pineal melatonin content: in intact animals pineal melatonin levels were elevated immediately after the encounter; thereafter, melatonin values decreased. In animals bearing denervated pineal organs melatonin levels fell as a consequence of the encounter. In a second experiment, intact gerbils experienced four daily encounters of 1 min for one week. Thereafter the nocturnal formation of melatonin was studied. In comparison with untreated controls, the repeatedly stressed animals demonstrated a temporal delay in the rise of both N-acetyl-transferase activity and melatonin. Since the pineal organ is able to transduce events of the social environment into an endocrine message--as set forth by both our experiments--the pineal organ might play an important role within central processing of social stress.

摘要

利用入侵者模型,对遭受攻击的成年雄性沙鼠的松果体N - 乙酰转移酶活性和可通过放射免疫测定的褪黑素水平进行了测定。在第一个实验中,于下午对完整的沙鼠以及松果体交感神经去神经支配的动物进行了一次3分钟的遭遇实验。与对照组相比,两个应激组的N - 乙酰转移酶活性均急剧下降,随后缓慢恢复。两组的松果体褪黑素含量也都发生了显著变化:在完整的动物中,遭遇后松果体褪黑素水平立即升高;此后,褪黑素值下降。在松果体去神经支配的动物中,遭遇导致褪黑素水平下降。在第二个实验中,完整的沙鼠在一周内每天经历4次1分钟的遭遇。此后,研究了褪黑素的夜间合成。与未处理的对照组相比,反复应激的动物在N - 乙酰转移酶活性和褪黑素升高方面出现了时间延迟。由于我们的两个实验均表明松果体能够将社会环境事件转化为内分泌信息,因此松果体可能在社会应激的中枢处理过程中发挥重要作用。

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