Literature DB >> 16876256

Microdialysis coupled on-line to capillary liquid chromatography with tandem mass spectrometry for monitoring acetylcholine in vivo.

Holly M Shackman1, Minshan Shou, Nicholas A Cellar, Christopher J Watson, Robert T Kennedy.   

Abstract

Capillary liquid chromatography-mass spectrometry (cLC-MS) was coupled on-line to microdialysis sampling to monitor endogenous acetylcholine (ACh) from the rodent brain. In vivo microdialysate sampled at 0.6 microL/min from the striatum of ketamine or chloral hydrate anesthetized rats was loaded onto a sample loop and then injected onto a approximately 5 cm long strong cation exchange (SCX) capillary column. A step gradient was used to separate the analyte from ionization suppressing salts contained in dialysate in 2.4 min. Sampling coupled on-line with cLC-MS allowed for high temporal resolution (data points at 2.4 min intervals), good reproducibility (10-15% relative standard deviation, R.S.D.), and sensitive limits of detection (0.04 nM or 8 amol injected). The method successfully monitored basal and stimulated levels (induced by increased K+ concentrations) of ACh from the anesthetized rat without necessitating perfusion of an acetylcholinesterase (AChE) inhibitor. Absolute and percent basal levels of ACh from rats receiving different anesthetics were also compared.

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Year:  2006        PMID: 16876256     DOI: 10.1016/j.jneumeth.2006.06.020

Source DB:  PubMed          Journal:  J Neurosci Methods        ISSN: 0165-0270            Impact factor:   2.390


  13 in total

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2.  Electrocatalytic microelectrode detectors for choline and acetylcholine following separation by capillary electrophoresis.

Authors:  Jhindan Mukherjee; Jon R Kirchhoff
Journal:  Anal Chem       Date:  2009-08-15       Impact factor: 6.986

3.  Mass spectrometry "sensor" for in vivo acetylcholine monitoring.

Authors:  Peng Song; Neil D Hershey; Omar S Mabrouk; Thomas R Slaney; Robert T Kennedy
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Review 4.  A review of microdialysis coupled to microchip electrophoresis for monitoring biological events.

Authors:  Rachel A Saylor; Susan M Lunte
Journal:  J Chromatogr A       Date:  2015-01-10       Impact factor: 4.759

5.  Monitoring Dopamine Responses to Potassium Ion and Nomifensine by in Vivo Microdialysis with Online Liquid Chromatography at One-Minute Resolution.

Authors:  Khanh T Ngo; Erika L Varner; Adrian C Michael; Stephen G Weber
Journal:  ACS Chem Neurosci       Date:  2017-02-01       Impact factor: 4.418

6.  Multiplexed and fully automated detection of metabolic biomarkers using microdialysis probe.

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Journal:  Sens Actuators B Chem       Date:  2016-07-25       Impact factor: 7.460

7.  Microfabrication and in Vivo Performance of a Microdialysis Probe with Embedded Membrane.

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Journal:  Anal Chem       Date:  2016-01-04       Impact factor: 6.986

Review 8.  Recent trends in microdialysis sampling integrated with conventional and microanalytical systems for monitoring biological events: a review.

Authors:  Pradyot Nandi; Susan M Lunte
Journal:  Anal Chim Acta       Date:  2009-08-03       Impact factor: 6.558

9.  High-resolution mass spectrometry for detecting Acetylcholine in Arabidopsis.

Authors:  Jun Murata; Takehiro Watanabe; Kohtaro Sugahara; Tohru Yamagaki; Toshio Takahashi
Journal:  Plant Signal Behav       Date:  2015

10.  Measurement of Acetylcholine in Rat Brain Microdialysates by LC - Isotope Dilution Tandem MS.

Authors:  L Prokai; P Fryčák; S M Stevens; V Nguyen
Journal:  Chromatographia       Date:  2008-10       Impact factor: 2.044

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