Literature DB >> 28729901

Aptamer-functionalized neural recording electrodes for the direct measurement of cocaine in vivo.

I Mitch Taylor1, Zhanhong Du1,2, Emma T Bigelow3, James R Eles1, Anthony R Horner4, Kasey A Catt1, Stephen G Weber4, Brian G Jamieson3, X Tracy Cui1.   

Abstract

Cocaine is a highly addictive psychostimulant that acts through competitive inhibition of the dopamine transporter. In order to fully understand the region specific neuropathology of cocaine abuse and addiction, it is unequivocally necessary to develop cocaine sensing technology capable of directly measuring real-time cocaine transient events local to different brain regions throughout the pharmacokinetic time course of exposure. We have developed an electrochemical aptamer-based in vivo cocaine sensor on a silicon based neural recording probe platform capable of directly measuring cocaine from discrete brain locations using square wave voltammetry (SWV). The sensitivity of the sensor for cocaine follows a modified exponential Langmuir model relationship and complete aptamer-target binding occurs in < 2 sec and unbinding in < 4 sec. The resulting temporal resolution is a 75X increase from traditional microdialysis sampling methods. When implanted in the rat dorsal striatum, the cocaine sensor exhibits stable SWV signal drift (modeled using a logarithmic exponential equation) and is capable of measuring real-time in vivo response to repeated local cocaine infusion as well as systemic IV cocaine injection. The in vivo sensor is capable of obtaining reproducible measurements over a period approaching 3 hours, after which signal amplitude significantly decreases likely due to tissue encapsulation. Finally, aptamer functionalized neural recording probes successfully detect spontaneous and evoked neural activity in the brain. This dual functionality makes the cocaine sensor a powerful tool capable of monitoring both biochemical and electrophysiological signals with high spatial and temporal resolution.

Entities:  

Keywords:  aptamer; cocaine; in vivo; neural recording probe; sensor; square wave voltammetry

Year:  2017        PMID: 28729901      PMCID: PMC5512874          DOI: 10.1039/C7TB00095B

Source DB:  PubMed          Journal:  J Mater Chem B        ISSN: 2050-750X            Impact factor:   6.331


  64 in total

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5.  Voltammetric study of extracellular dopamine near microdialysis probes acutely implanted in the striatum of the anesthetized rat.

Authors:  Laura M Borland; Guoyue Shi; Hua Yang; Adrian C Michael
Journal:  J Neurosci Methods       Date:  2005-03-05       Impact factor: 2.390

6.  Ultrasensitive protein detection using an aptamer-functionalized single polyaniline nanowire.

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7.  Different effects of cocaine and nomifensine on dopamine uptake in the caudate-putamen and nucleus accumbens.

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8.  Overview of brain microdialysis.

Authors:  Vladimir I Chefer; Alexis C Thompson; Agustin Zapata; Toni S Shippenberg
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9.  Reagentless aptamer based impedance biosensor for monitoring a neuro-inflammatory cytokine PDGF.

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10.  Massively parallel recording of unit and local field potentials with silicon-based electrodes.

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2.  Direct in Vivo Electrochemical Detection of Resting Dopamine Using Poly(3,4-ethylenedioxythiophene)/Carbon Nanotube Functionalized Microelectrodes.

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5.  Electrochemical Studies of Cation Condensation-Induced Collapse of Surface-Bound DNA.

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6.  Narrower Nanoribbon Biosensors Fabricated by Chemical Lift-off Lithography Show Higher Sensitivity.

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7.  Nanoparticle and Biomolecule Surface Modification Synergistically Increases Neural Electrode Recording Yield and Minimizes Inflammatory Host Response.

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Review 9.  Using Aptamers as a Novel Method for Determining GnRH/LH Pulsatility.

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Review 10.  The Critical Role of Peripheral Targets in Triggering Rapid Neural Effects of Intravenous Cocaine.

Authors:  Eugene A Kiyatkin
Journal:  Neuroscience       Date:  2020-10-01       Impact factor: 3.590

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