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烟碱型乙酰胆碱在动物认知功能中的作用

Nicotinic acetylcholine involvement in cognitive function in animals.

作者信息

Levin E D, Simon B B

机构信息

Department of Psychiatry, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Psychopharmacology (Berl). 1998 Aug;138(3-4):217-30. doi: 10.1007/s002130050667.

Abstract

Nicotinic cholinergic systems are involved with several important aspects of cognitive function including attention, learning and memory. Nicotinic cholinergic receptors are located in many regions of the brain, including areas important for cognitive function such as the hippocampus and frontal cortex. Nicotinic agonists have been found in rodent and non-human primate studies to improve performance on a variety of memory tasks. In a complementary fashion, nicotinic antagonists such as mecamylamine impair working memory function. In humans, similar effects have been seen. Nicotinic agonist treatment can improve attention, learning and memory and nicotinic antagonist treatment can cause deficits. To define the neural substrates of nicotinic involvement in cognitive function, three areas of investigation are underway. 1) Critical neuroanatomic loci for nicotinic effects are beginning to be determined. The hippocampus, frontal cortex and midbrain dopaminergic nuclei have been found to be important sites of action for nicotinic involvement in memory function. 2) Nicotinic receptor subtype involvement in cognitive function is being studied. There has been considerable recent work identifying nicotinic receptor subunit conformation including alpha and beta subunits. Nicotinic receptor subtypes appear to be associated with different functional systems; however, much remains to be done to determine the precise role each subtype plays in terms of cognitive function. 3) Nicotinic interactions with other transmitter systems are being assessed. Nicotine receptors interact in important ways with other systems to affect cognitive functioning, including muscarinic ACh, dopamine, norepinepherine, serotonin, glutamate, and other systems. Nicotinic function in clinical populations and potential for therapeutics has been investigated for Alzheimer's disease, Parkinson's disease, schizophrenia and attention deficit/hyperactivity disorder. Areas which need to receive greater attention are the exact anatomical location and the specific receptor subtypes critically involved in nicotine's effects. In addition, more work needs to be done to develop and determine the efficacy and safety of novel nicotinic ligands for use in the long-term treatment of human cognitive disorders.

摘要

烟碱型胆碱能系统参与认知功能的几个重要方面,包括注意力、学习和记忆。烟碱型胆碱能受体位于大脑的许多区域,包括对认知功能重要的区域,如海马体和额叶皮质。在啮齿动物和非人类灵长类动物研究中发现,烟碱型激动剂可改善各种记忆任务的表现。以互补的方式,诸如美加明之类的烟碱型拮抗剂会损害工作记忆功能。在人类中也观察到了类似的效果。烟碱型激动剂治疗可改善注意力、学习和记忆,而烟碱型拮抗剂治疗则会导致缺陷。为了确定烟碱参与认知功能的神经基质,正在进行三个方面的研究。1)烟碱作用的关键神经解剖位点开始得到确定。海马体、额叶皮质和中脑多巴胺能核已被发现是烟碱参与记忆功能的重要作用位点。2)正在研究烟碱受体亚型参与认知功能的情况。最近有大量工作在鉴定烟碱受体亚基构象,包括α和β亚基。烟碱受体亚型似乎与不同的功能系统相关;然而,要确定每个亚型在认知功能方面的确切作用,仍有许多工作要做。3)正在评估烟碱与其他递质系统的相互作用。烟碱受体与其他系统以重要方式相互作用,以影响认知功能,包括毒蕈碱型乙酰胆碱、多巴胺、去甲肾上腺素、5-羟色胺、谷氨酸和其他系统。已经针对阿尔茨海默病、帕金森病、精神分裂症和注意力缺陷/多动障碍研究了临床人群中的烟碱功能及其治疗潜力。需要更多关注的领域是尼古丁作用所涉及的确切解剖位置和特定受体亚型。此外,需要开展更多工作来开发并确定用于长期治疗人类认知障碍的新型烟碱配体的疗效和安全性。

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