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Hydrogen peroxide monitored in vivo, in situ and in real time in rat brain, is it a marker of central cholinergic dynamics?

机译:在大鼠大脑中进行体内,原位和实时监测的过氧化氢,它是否是中枢胆碱能动力学的标志?

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Acetylcholine (ACh) is a neurotransmitter acting in both the peripheral and central nervous system (CNS). Various analytical techniques have been adopted for the measurement of ACh in brain. They are complex and a€?off-linea€? methods mainly based on separation of ACh and choline and their enzymatic metabolism with detection of the hydrogen peroxide (H2O2) formed. Here we propose a significantly less complex methodology i.e. fast cyclic voltammetry with treated carbon fibre micro-electrodes. It allows monitoring a specific voltammetric oxidation signal [R] in vitro in the presence of H2O2 as well as a selective signal [R] in vivo, in situ and a€?in real timea€? following local intrastriatal injection of H2O2 with no change in its oxidation potential. Similarly, intrastriatal injection of acetylcholine (ACh, not electroactive chemical) produces an increase in the size of [R], while neostigmine (ACh esterase inhibitor, not active upon the sensor) significantly decreases [R]. An increase of [R] is also monitored in the striatum of conscious freely moving rats treated with ACh receptor antagonists such as scopolamine or atropine. Thus in vivo modifications of [R] may reflect central cholinergic dynamics and in particular metabolised ACh with generation of H2O2.
机译:乙酰胆碱(ACh)是一种在周围和中枢神经系统(CNS)中起作用的神经递质。已经采用了各种分析技术来测量大脑中的乙酰胆碱。它们很复杂并且离线。方法主要基于ACh和胆碱的分离及其酶代谢和过氧化氢(H2O2)的检测。在这里,我们提出了一种不那么复杂的方法,即使用处理过的碳纤维微电极的快速循环伏安法。它允许在存在H2O2的情况下在体外监测特定的伏安氧化信号[R]以及在体内,就地和实时地监测选择性信号[R]。局部纹状体内注射H2O2后,其氧化电位不变。类似地,纹状体内注射乙酰胆碱(ACh,不是电活性化学物质)会增加[R]的大小,而新斯的明(ACh酯酶抑制剂,对传感器没有活性)会显着降低[R]。在用ACh受体拮抗剂(例如东pol碱或阿托品)治疗的有意识的自由运动大鼠的纹状体中,也监测了[R]的增加。因此,[R]的体内修饰可能反映中心胆碱能动力学,尤其是代谢的ACh与H2O2的产生。

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