5 -羟色胺功能的慢性改变:小龙虾激动行为的动态神经化学特性。

J. B. Panksepp, R. Huber
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引用次数: 51

摘要

生物胺血清素[5-羟色胺(5-HT)]因其在广泛的无脊椎动物和脊椎动物分类群的行为现象中的作用而受到相当大的关注。急性5-羟色胺输注降低了小龙虾从优势对手撤退的可能性。本研究报告了5- ht修饰化合物通过硅胶管植入5周的慢性治疗所产生的生化和行为影响。高效液相色谱电化学检测(HPLC-ED)证实,5,7-二羟色胺(5,7- dht)在除大脑外的所有中枢神经系统(CNS)区域都能有效降低5- ht,同时在所分析的所有组织中都观察到该化合物的同步积累。出乎意料的是,两种不同比例的慢性5-HT治疗并没有增加中枢神经系统中胺的水平。在行为上,5,7- dht处理的小龙虾在攻击措施上没有显着差异。虽然5-HT治疗没有提高中枢神经系统中5-HT的含量,但慢速输注使动物的5-HT升级更快,而快速5-HT治疗导致的升级更慢。5,7-二氢睾酮在行为药理学中被广泛使用,目前的研究结果表明其生化特性需要更彻底的研究。此外,强大的补偿机制的明显存在表明,我们需要对小龙虾攻击等行为的血清素能基础采取越来越动态的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronic alterations in serotonin function: dynamic neurochemical properties in agonistic behavior of the crayfish, Orconectes rusticus.
The biogenic amine serotonin [5-hydroxytryptamine (5-HT)] has received considerable attention for its role in behavioral phenomena throughout a broad range of invertebrate and vertebrate taxa. Acute 5-HT infusion decreases the likelihood of crayfish to retreat from dominant opponents. The present study reports the biochemical and behavioral effects resulting from chronic treatment with 5-HT-modifying compounds delivered for up to 5 weeks via silastic tube implants. High performance liquid chromatography with electrochemical detection (HPLC-ED) confirmed that 5,7-dihydroxytryptamine (5,7-DHT) effectively reduced 5-HT in all central nervous system (CNS) areas, except brain, while a concurrent accumulation of the compound was observed in all tissues analyzed. Unexpectedly, two different rates of chronic 5-HT treatment did not increase levels of the amine in the CNS. Behaviorally, 5,7-DHT treated crayfish exhibited no significant differences in measures of aggression. Although treatment with 5-HT did not elevate 5-HT content in the CNS, infusion at a slow rate caused animals to escalate more quickly while 5-HT treatment at a faster rate resulted in slower escalation. 5,7-DHT is commonly used in behavioral pharmacology and the present findings suggest its biochemical properties should be more thoroughly examined. Moreover, the apparent presence of powerful compensatory mechanisms indicates our need to adopt an increasingly dynamic view of the serotonergic bases of behavior like crayfish aggression.
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