MECHANISM OF SENSITIZATION TO COCAINE
MECHANISM OF SENSITIZATION TO COCAINE
批准号:
6450682
负责人:
Jesus A Angulo
金额:
$5.95万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-04-01 至 2002-03-31
关键词:
basal ganglia behavior test behavioral /social science research tag behavioral habituation /sensitization chordate locomotion cocaine corpus striatum dopamine receptor drug addiction glutamate receptor homeostasis in situ hybridization laboratory rat microdialysis neurochemistry neuromuscular system neuropharmacology neurotransmitter antagonist radioimmunoassay statistics /biometry stereotaxic techniques substance K substance P substance abuse related behavior tachykinin tissue /cell culture
中文摘要
尽管在以神经递质多巴胺为核心的药物滥用的细胞和分子方面已经开展了大量细致的工作,但神经肽代表了一个尚未研究与药物成瘾相关的领域。神经肽可以对哺乳动物大脑多巴胺能网络的输出产生直接和/或间接影响。本项目将重点关注神经肽物质P(和神经激肽A)在可卡因致敏运动和神经化学反应的发展和/或表达中所起的作用。我们假设这些速激肽在基底神经节内具有稳态功能,以防止对可卡因敏感的啮齿动物过度运动输出。第一个和第二个具体目标将评估高选择性非肽神经激肽受体拮抗剂对可卡因进行性和持久性运动致敏的影响。第三个具体目的是研究这些高选择性拮抗剂对尾状壳核和伏隔核多巴胺能终端区和中脑致密黑质多巴胺能细胞体区和腹侧被盖区多巴胺和谷氨酸释放敏化模式的影响。神经激肽受体拮抗剂将通过微透析探针注入脑内。第四个特定目标是在持续和持续的治疗下,提供对可卡因敏感的大鼠组织中底物P和神经激肽A的肽水平。本目的数据补充了目的1和目的2中从动物身上获得的神经肽和受体mRNA水平。这些研究将提供强有力的行为和神经化学证据,支持速激肽在可卡因致敏反应中的作用。对可卡因致敏的神经生物学的理解与人类成瘾的管理有关,因为致敏被认为是人类对可卡因和其他药物成瘾维持寻求药物行为的机制。
英文摘要
Although a large body of elegant work has developed on cellular and molecular aspects of drug abuse with the neurotransmitter dopamine at its core, the neuropeptides represent an area that has not been studied in relation to drug addiction. Neuropeptides can exert direct and/or indirect effects on the output of the dopaminergic network of the mammalian brain. The present project will focus on the role played by the neuropeptide substance P (and neurokinin A) on the development and/or expression of sensitized locomotor and neurochemical responses to cocaine. We hypothesize that these tachykinin peptides serve homeostatic functions within the basal ganglia to prevent excessive locomotor output in rodents sensitized to cocaine. The first and second specific aims will assess the effect of highly selective non-peptide neurokinin receptor antagonists on the development of progressive and enduring locomotor sensitization to cocaine. The third specific aim will examine the effect of these highly selective antagonists on the sensitized pattern of dopamine and glutamate release in dopaminergic terminal field areas of the caudate-putamen and the nucleus accumbens as well as in dopaminergic cell body areas of the midbrain substantia nigra compacta and the ventral tegmental area. The neurokinin receptor antagonists will be infused intracerebrally through the microdialysis probe. The fourth specific aim provides tissue peptide levels for substrate P and neurokinin A from rats sensitized to cocaine under progressive and enduring treatments. The data from this aim complements neuropeptide and receptor mRNA levels obtained from animals in aims I and II. These studies will provide strong behavioral and neurochemical evidence supporting a role for tachykinin peptides in sensitized responses to cocaine. An understanding of the neurobiology of sensitization to cocaine is relevant to the management of addiction in humans because sensitization is implicated as a mechanism sustaining drug-seeking behavior in humans addicted to cocaine and other drugs.
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