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利用药物磁共振成像技术绘制灵长类动物的多巴胺功能图谱。

Mapping dopamine function in primates using pharmacologic magnetic resonance imaging.

作者信息

Jenkins Bruce G, Sanchez-Pernaute Rosario, Brownell Anna-Liisa, Chen Yin-Ching Iris, Isacson Ole

机构信息

Massachusetts General Hospital (MGH) Nuclear Magnetic Resonance Center, Athinoula A. Martinos Center for Biomedical Imaging, Boston, Massachusetts 02129, USA.

出版信息

J Neurosci. 2004 Oct 27;24(43):9553-60. doi: 10.1523/JNEUROSCI.1558-04.2004.

Abstract

Dopamine (DA) receptors play a central role in such diverse pathologies as Parkinson's disease, schizophrenia, and drug abuse. We used an amphetamine challenge combined with pharmacologic magnetic resonance imaging (phMRI) to map DA-associated circuitry in nonhuman primates with high sensitivity and spatial resolution. Seven control cynomolgous monkeys and 10 MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine)-treated parkinsonian primates were studied longitudinally using both positron emission tomography (PET) and phMRI. Amphetamine challenge (2.5 mg/kg, i.v.) in control monkeys increased relative cerebral blood volume (rCBV) in a number of brain regions not described previously, such as parafascicular thalamus, precentral gyrus, and dentate nucleus of the cerebellum. With the high spatial resolution, we were also able to readily identify changes in rCBV in the anterior cingulate, substantia nigra, ventral tegmental area, caudate (tail and head), putamen, and nucleus accumbens. Amphetamine induced decreases in rCBV in occipital and posterior parietal cortices. Parkinsonian primates had a prominent loss of response to amphetamine, with relative sparing of the nucleus accumbens and parafascicular thalamus. There was a significant correlation between rCBV loss in the substantia nigra and both PET imaging of dopamine transporters and behavioral measures. Monkeys with partial lesions as defined by 2beta-carbomethoxy-3beta-(4-fluorophenyl) tropane binding to dopamine transporters showed recruitment of premotor and motor cortex after amphetamine stimulus similar to what has been noted in Parkinson's patients during motor tasks. These data indicate that phMRI is a powerful tool for assessment of dynamic changes associated with normal and dysfunctional DA brain circuitry in primates.

摘要

多巴胺(DA)受体在帕金森病、精神分裂症和药物滥用等多种不同的病理状况中发挥着核心作用。我们采用安非他明激发试验结合药理磁共振成像(phMRI),以高灵敏度和空间分辨率绘制非人灵长类动物中与多巴胺相关的神经回路。使用正电子发射断层扫描(PET)和phMRI对7只对照食蟹猴和10只经1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)处理的帕金森病灵长类动物进行了纵向研究。对照猴接受安非他明激发试验(静脉注射2.5mg/kg)后,一些先前未描述的脑区,如束旁丘脑、中央前回和小脑齿状核的相对脑血容量(rCBV)增加。凭借高空间分辨率,我们还能够轻松识别前扣带回、黑质、腹侧被盖区、尾状核(尾部和头部)、壳核和伏隔核中rCBV的变化。安非他明导致枕叶和顶叶后部皮质的rCBV降低。帕金森病灵长类动物对安非他明的反应明显丧失,伏隔核和束旁丘脑相对保留。黑质中rCBV的丧失与多巴胺转运体的PET成像及行为指标之间存在显著相关性。根据2β-甲氧基羰基-3β-(4-氟苯基)托烷与多巴胺转运体的结合情况定义为部分损伤的猴子,在安非他明刺激后,运动前区和运动皮质出现了募集,类似于帕金森病患者在运动任务中所观察到的情况。这些数据表明,phMRI是评估灵长类动物正常和功能失调的多巴胺脑回路相关动态变化的有力工具。

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