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首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Molecular tools for assessing human depression by positron emission tomography.
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Molecular tools for assessing human depression by positron emission tomography.

机译:通过正电子发射断层扫描评估人类抑郁的分子工具。

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We review reports published over the past 5 years on positron emission tomography (PET) of neurotransmission in depressive disorders. The molecular tools of PET neuroimaging are compounds labeled with a positron-emitting nuclide. PET radioligands have been used in recent years to study several aspects of monoaminergic and cholinergic neurotransmission in the brain of depressed subjects and healthy controls. The value of kinetic parameters of certain PET radioligands has often been reported to be lower in depressed subjects than in healthy ones, but there is usually no reliable relationship between the binding potential of the neuroreceptor or transporter and the clinical condition of depressed subject. In addition, many recent PET studies have noted either higher binding potentials in depressed subjects or no difference between binding potentials of depressed and healthy subjects. In our view, recent research has neither proved nor refuted the idea that neuromolecular processes that can be assessed by the radioligands currently available for PET studies of humans are causally related to depressive disorders. The future success of PET research for understanding molecular mechanisms in depressive disorders may therefore require the invention and development of further molecular tools for studying a wider range of neuronal events in the living human brain.
机译:我们回顾了过去5年发表的有关抑郁症中神经传递的正电子发射断层扫描(PET)的报告。 PET神经成像的分子工具是用发射正电子的核素标记的化合物。近年来,PET放射性配体已用于研究抑郁症患者和健康对照者大脑中单胺能和胆碱能神经传递的几个方面。经常有报道称某些PET放射性配体的动力学参数值在抑郁​​的受试者中要低于健康受试者,但神经受体或转运蛋白的结合电位与抑郁症患者的临床状况之间通常没有可靠的关系。另外,许多最近的PET研究已经注意到在抑郁的受试者中更高的结合电位,或者在抑郁的受试者和健康受试者之间的结合电位之间没有差异。我们认为,最近的研究既没有证明也没有驳斥这样的观点,即可以通过当前用于人类PET研究的放射性配体评估的神经分子过程与抑郁症有因果关系。因此,PET研究在理解抑郁症分子机制方面的未来成功可能需要发明和开发进一步的分子工具,以研究人类活脑中更广泛的神经元事件。

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