首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Vascular action as the primary mechanism of cognitive effects of cholinergic CNS-acting drugs a rat phMRI BOLD study
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Vascular action as the primary mechanism of cognitive effects of cholinergic CNS-acting drugs a rat phMRI BOLD study

机译:血管行动是胆碱能中枢神经系统作用药物认知作用的主要机制一项大鼠phMRI BOLD研究

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摘要

Concordant results of functional magnetic resonance imaging (fMRI) and behavioral tests prove that some non-blood–brain barrier-penetrating drugs produce robust central nervous system (CNS) effects. The anticholinergic scopolamine interferes with learning when tested in rats, which coincides with a negative blood-oxygen-level-dependent (BOLD) change in the prefrontal cortex (PFC) as demonstrated by fMRI. The peripherally acting butylscopolamine also evokes a learning deficit in a water-labyrinth test and provokes a negative BOLD signal in the PFC. Donepezil—a highly CNS-penetrating cholinesterase inhibitor—prevents the negative BOLD and cognitive deficits regardless whether the provoking agent is scopolamine or butylscopolamine. Interestingly, the non-BBB-penetrating cholinesterase inhibitor neostigmine also prevents or substantially inhibits those cognitive and fMRI changes. Intact cerebral blood flow and optimal metabolism are crucial for the normal functioning of neurons and other cells in the brain. Drugs that are not BBB penetrating yet act on the CNS highlight the importance of unimpaired circulation, and point to the cerebral vasculature as a primary target for drug action in diseases where impaired circulation and consequently suboptimal energy metabolism are followed by upstream pathologic events.
机译:功能磁共振成像(fMRI)和行为测试的一致结果证明,某些非血脑屏障穿透药物可产生强大的中枢神经系统(CNS)作用。当在大鼠中进行测试时,抗胆碱能东碱会干扰学习,这与前额叶皮层(PFC)中血氧水平依赖性(BOLD)的负变化相吻合,如fMRI所示。在水迷宫测试中,具有周边作用的丁基东pol碱也引起学习障碍,并在PFC中引起负的BOLD信号。多奈哌齐是一种高度穿透CNS的胆碱酯酶抑制剂,可防止不良的BOLD和认知缺陷,无论刺激剂是东pol碱还是丁基东pol碱。有趣的是,非BBB穿透性胆碱酯酶抑制剂新斯的明也可以预防或基本上抑制那些认知和功能磁共振成像的改变。完整的大脑血流和最佳的代谢对于大脑中神经元和其他细胞的正常运转至关重要。尚未渗透BBB但仍作用于中枢神经系统的药物突显了循环不受损的重要性,并指出在血液循环受损,能量代谢不佳,继而发生上游病理事件的疾病中,脑血管系统是药物作用的主要靶标。

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