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通过受限扩散模型和快速扫描循环伏安法描述多巴胺转运抑制剂增强多巴胺释放

Enhanced Dopamine Release by Dopamine Transport Inhibitors Described by a Restricted Diffusion Model and Fast-Scan Cyclic Voltammetry.

作者信息

Hoffman Alexander F, Spivak Charles E, Lupica Carl R

机构信息

Electrophysiology Research Section, Cellular Neurobiology Branch, National Institute on Drug Abuse Intramural Research Program , Baltimore, Maryland 21224, United States.

出版信息

ACS Chem Neurosci. 2016 Jun 15;7(6):700-9. doi: 10.1021/acschemneuro.5b00277. Epub 2016 Mar 28.

Abstract

Fast-scan cyclic voltammetry (FSCV) using carbon fiber electrodes is widely used to rapidly monitor changes in dopamine (DA) levels in vitro and in vivo. Current analytical approaches utilize parameters such as peak oxidation current amplitude and decay times to estimate release and uptake processes, respectively. However, peak amplitude changes are often observed with uptake inhibitors, thereby confounding the interpretation of these parameters. To overcome this limitation, we demonstrate that a simple five-parameter, two-compartment model mathematically describes DA signals as a balance of release (r/ke) and uptake (ku), summed with adsorption (kads and kdes) of DA to the carbon electrode surface. Using nonlinear regression, we demonstrate that our model precisely describes measured DA signals obtained in brain slice recordings. The parameters extracted from these curves were then validated using pharmacological manipulations that selectively alter vesicular release or DA transporter (DAT)-mediated uptake. Manipulation of DA release through altering the Ca(2+)/Mg(2+) ratio or adding tetrodotoxin reduced the release parameter with no effect on the uptake parameter. DAT inhibitors methylenedioxypyrovalerone, cocaine, and nomifensine significantly reduced uptake and increased vesicular DA release. In contrast, a low concentration of amphetamine reduced uptake but had no effect on DA release. Finally, the kappa opioid receptor agonist U50,488 significantly reduced vesicular DA release but had no effect on uptake. Together, these data demonstrate a novel analytical approach to distinguish the effects of manipulations on DA release or uptake that can be used to interpret FSCV data.

摘要

使用碳纤维电极的快速扫描循环伏安法(FSCV)被广泛用于在体外和体内快速监测多巴胺(DA)水平的变化。当前的分析方法分别利用诸如峰值氧化电流幅度和衰减时间等参数来估计释放和摄取过程。然而,在使用摄取抑制剂时经常会观察到峰值幅度的变化,从而混淆了这些参数的解释。为了克服这一局限性,我们证明了一个简单的五参数两室模型可以将DA信号数学描述为释放(r/ke)和摄取(ku)的平衡,并加上DA在碳电极表面的吸附(kads和kdes)。使用非线性回归,我们证明我们的模型能够精确描述在脑片记录中获得的实测DA信号。然后,使用选择性改变囊泡释放或多巴胺转运体(DAT)介导的摄取的药理学操作对从这些曲线中提取的参数进行验证。通过改变Ca(2+)/Mg(2+)比值或添加河豚毒素来操纵DA释放,降低了释放参数,而对摄取参数没有影响。DAT抑制剂亚甲二氧基吡咯戊酮、可卡因和诺米芬辛显著降低摄取并增加囊泡DA释放。相比之下,低浓度的苯丙胺降低了摄取,但对DA释放没有影响。最后,κ阿片受体激动剂U50,488显著降低了囊泡DA释放,但对摄取没有影响。总之,这些数据证明了一种新的分析方法,可用于区分操纵对DA释放或摄取的影响,从而用于解释FSCV数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5718/4909544/c63aa00e1d7f/nihms775083f1.jpg

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