Abstract
Neurotransmitters catechol and dopamine analogy levels are related to the systematic nerve activity. This assay was performed by using cyclic voltammetry (CV) and square wave (SW) stripping voltammetry, while optimization was performed by the carbon fiber microelectrode (CFME) with wire-type reference and counter electrodes. In the electrolyte solutions, the analytical parameters of catechol were as follows: 8.5 pH, -0.4 V anodic, 0.3 V cathodic, 15s deposition time, 15 Hz SW frequency, 25 mV SW amplitude and incremental potential of 4 mV, under optimal conditions, working ranges were 0-50 mgL-1 CV, 0.01-50 mgL-1 cathodic, and 1-13 mgL-1 anodic, the relative standard deviation was 0.02 %, n = 15 using 0.5 mgL-1 and the detection limit was 4.0 ugL-1. It can be used for in vivo direct analysis. Here, diagnostic applications were performed in the brain skeleton of living cells in real time. The developed techniques can be useful for nerve control and signal detections.
Keywords: Brain, catechol, dopamine, epinephrine, live fish, micro carbon fiber, skeleton, voltammetry
Current Neurovascular Research
Title: Real Time Analysis of Neurotransmitters in the Brain Using a Micro-Electrode System
Volume: 7 Issue: 1
Author(s): Suw Young Ly, Hwa Jin Heo and Min Jung Kim
Affiliation:
Keywords: Brain, catechol, dopamine, epinephrine, live fish, micro carbon fiber, skeleton, voltammetry
Abstract: Neurotransmitters catechol and dopamine analogy levels are related to the systematic nerve activity. This assay was performed by using cyclic voltammetry (CV) and square wave (SW) stripping voltammetry, while optimization was performed by the carbon fiber microelectrode (CFME) with wire-type reference and counter electrodes. In the electrolyte solutions, the analytical parameters of catechol were as follows: 8.5 pH, -0.4 V anodic, 0.3 V cathodic, 15s deposition time, 15 Hz SW frequency, 25 mV SW amplitude and incremental potential of 4 mV, under optimal conditions, working ranges were 0-50 mgL-1 CV, 0.01-50 mgL-1 cathodic, and 1-13 mgL-1 anodic, the relative standard deviation was 0.02 %, n = 15 using 0.5 mgL-1 and the detection limit was 4.0 ugL-1. It can be used for in vivo direct analysis. Here, diagnostic applications were performed in the brain skeleton of living cells in real time. The developed techniques can be useful for nerve control and signal detections.
Export Options
About this article
Cite this article as:
Ly Young Suw, Heo Jin Hwa and Kim Jung Min, Real Time Analysis of Neurotransmitters in the Brain Using a Micro-Electrode System, Current Neurovascular Research 2010; 7 (1) . https://dx.doi.org/10.2174/156720210790820154
DOI https://dx.doi.org/10.2174/156720210790820154 |
Print ISSN 1567-2026 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5739 |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
High Glucose Enhances Neurotoxicity and Inflammatory Cytokine Secretion by Stimulated Human Astrocytes
Current Alzheimer Research LHON: Mitochondrial Mutations and More
Current Genomics Dietary Phytochemicals in Chemoprevention of Cancer: An Update
Immunology, Endocrine & Metabolic Agents in Medicinal Chemistry (Discontinued) Pleiotropic Effects of Cathepsin D
Endocrine, Metabolic & Immune Disorders - Drug Targets Peripheral Neuropathy Induced by Paclitaxel: Recent Insights and Future Perspectives
Current Neuropharmacology Modulation of Ornithine Decarboxylase Activity by Phenolics Based Structurally Related Compounds Synthesized on Steroidal and Non-Steroidal Skeleton and their Radical Scavenging Action
Current Bioactive Compounds Statins-Mediated Inhibition of Rho GTPases as a Potential Tool in Anti-Tumor Therapy
Mini-Reviews in Medicinal Chemistry Iron Chelators as Potential Therapeutic Agents for Parkinsons Disease
Current Bioactive Compounds A Mini Review on the Chemistry and Neuroprotective Effects of Silymarin
Current Drug Targets Therapeutic Targeting of the Endoplasmic Reticulum in Alzheimers Disease
Current Alzheimer Research Small Molecule Fluorescent Ligands as Central Nervous System Imaging Probes
Mini-Reviews in Medicinal Chemistry The Effects of 1,3,5-trisubstituted Indole Derivatives on Cell Growth, Apoptosis and MMP-2/9 mRNA Expression of MCF-7 Human Breast Cancer Cells
Anti-Cancer Agents in Medicinal Chemistry Anti-cancer and Other Bioactivities of Korean Angelica gigas Nakai (AGN) and Its Major Pyranocoumarin Compounds
Anti-Cancer Agents in Medicinal Chemistry Insights on the Structure of Amyloid Fibrils from Site-Directed Mutagenesis
Protein & Peptide Letters Beneficial Effects of Lysosome-Modulating and Other Pharmacological and Nanocarrier Agents on Amyloid-beta-treated Cells
Current Pharmaceutical Biotechnology Assessment of Signal Peptides to Optimize Interleukin 2 (IL-2) Folding and Expression
Current Proteomics Updates of mTOR Inhibitors
Anti-Cancer Agents in Medicinal Chemistry Cannabis sativa L. Constituents and Their Role in Neuroinflammation
Current Bioactive Compounds Iron Chelators for the Treatment of Cancer
Current Medicinal Chemistry From Antioxidant Chelators to Site-Activated Multi-Target Chelators Targeting Hypoxia Inducing Factor, Beta-Amyloid, Acetylcholinesterase and Monoamine Oxidase A/B
Mini-Reviews in Medicinal Chemistry