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Antidepressants - same effect on mesolimbic DA activity?

Antidepressants - same effect on mesolimbic DA activity?
抗抑郁药 - 对中脑边缘 DA 活性有同样的影响吗?
批准号:
7261545
负责人:
JAY MICHAEL WEISS
金额:
$23.29万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-05-07 至 2010-04-30

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):本项目前期收集的数据(MH65737)继续表明,所有有效的抗抑郁药(AD)治疗都降低了蓝斑(LC)神经元的活性,蓝斑(LC)神经元是大脑主要的去甲肾上腺素能胞体群。这一结论现在得到了临床和基础研究的支持。在这一更新申请中提出的研究是为了检查LC活性的降低如何改变神经回路的“效应臂”,从而导致抑郁症状的改善。本文提出的工作源于ad诱导的LC活性降低将导致多巴胺能(DA)神经元活性增加以产生治疗效果的想法。因此,我们建议通过测量腹侧被盖区(VTA) DA神经元的电生理活动来推进假设的神经事件级联的下一个水平,VTA是中皮质边缘系统的细胞体起源,以确定有效的阿尔茨海默病治疗是否增加了它们的活动。使用单单元电生理记录技术,本项目下一阶段提出的实验将检查一系列AD治疗对VTA-DA神经元活动的影响。待测试的治疗方法是我们已经测试过的对LC神经元的影响,包括两种三环类药物的慢性管理,四种选择性血清素再摄取抑制剂,一种单胺氧化酶抑制剂,三种非典型AD药物,还有电休克。在Specific Aim i下,使用一种动物模型,该模型已被发现对迄今为止测试的所有AD有效治疗都有反应,我们将检查对电生理鉴定的VTA-DA神经元活性的影响。我们展示的试验数据表明,VTA-DA神经元的放电在这种模型的动物中减少了,就像假设发生在抑郁症中一样。因此,Specific Aim i确定了AD治疗是否会抵消与抑郁症相关的VTA-DA活性下降。在特定目标2中,我们将测试三种药物的效果,每种药物在一系列剂量中,也在Aim i中使用相同的剂量,但在Aim 2中,这些研究将在正常的“幼稚”大鼠身上进行。因此,Aim 2使得在抑郁症动物模型(Aim i)与“正常”大鼠中获得的剂量反应效应进行比较成为可能;这样做是为了确定“抑郁”如何改变(提高?)阿尔茨海默病药物的治疗剂量以达到效果。最后,在Specific Aim 3下,我们将研究AD药物在LC和VTA-DA神经元中起效的时间过程,这可能与这些药物治疗效果的众所周知的延迟起效现象有关。总之,本项目建立在先前LC研究的基础上,通过研究中脑DA系统的影响进入下一步,中脑DA系统长期与抑郁症有关,但就电生理研究而言,迄今为止研究相对较少。
英文摘要
DESCRIPTION (provided by applicant): Data gathered in the previous period of this project (MH65737) continue to indicate that activity of locus coeruleus (LC) neurons, the major noradrenergic cell-body group of the brain, is reduced by all effective antidepressant (AD) treatments. This conclusion is now supported by both clinical and basic research. Proposed in this renewal application are studies to examine how this reduction in LC activity may alter what is envisioned to be the "effecter arm" of the neural circuit to thereby lead to amelioration of depressive symptoms. The work proposed here arises from the idea that AD-induced decreased LC activity will result in an increase in the activity of dopaminergic (DA) neurons to produce therapeutic effects. Thus, we propose to advance to that next level of the hypothesized cascade of neural events by measuring electrophysiological activity of DA neurons in the ventral tegmental area (VTA), the cell-body origin of the mesocorticolimbic system, to determine whether their activity is increased by effective AD treatments. Using single-unit electrophysiological recording techniques, the experiments proposed for the next period of this project will examine the effects of a range of AD treatments on activity of VTA-DA neurons. Treatments to be tested are those that we have tested for effects on LC neurons, which include chronic administration of two tricyclics, four selective serotonin reuptake inhibitors, one monoamine oxidase inhibitor, three atypical AD drugs, and also electroconvulsive shock. Under Specific Aim i, using an animal model that has been found to respond to all AD effective treatments tested thus far, we will examine effects on activity of VTA-DA neurons identified electrophysiologically. We show pilot data indicating that firing of VTA-DA neurons is decreased in animals of this model, as is hypothesized to occur in depression. Thus, Specific Aim i determines if AD treatments will counteract the decreased VTA-DA activity associated with depression. Under Specific Aim 2, we then will test effects of three drugs, each drug across a series of doses and also at the same series of doses as used within Aim i, but in Aim 2 these studies will be done on normal, "naive" rats. Aim 2 thus makes possible comparison of dose-response effects obtained in an animal model of depression (Aim i) with those in "normal" rats; this is done to determine how "depression" shifts (elevates?) the therapeutic dose of an AD drug that is required for effect. Finally, under Specific Aim 3, we will investigate the time course for the onset of effects of AD drugs in both LC and VTA-DA neurons, which is suspected to be related to the well-known phenomenon of delayed onset for the therapeutic effectiveness of these drugs. In summary, this project builds on previous findings for LC by progressing to the next step of studying the effects on the midbrain DA system, an area long implicated in depression but, in terms of electrophysiological study, relatively little studied to date.
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A Neural Mechanism Underlying Alcohol Consumption and Its Increase with Stress
  • 批准号:
    8696596
  • 项目类别:
  • 资助金额:
    $30.26万
  • 财政年份:
    2012
  • 负责人:
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  • 依托单位:
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  • 批准号:
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  • 项目类别:
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    2012
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Paradoxical Antidepressant Action in Locus Coeruleus during Development
  • 批准号:
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  • 项目类别:
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  • 项目类别:
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  • 资助金额:
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