Literature DB >> 21175175

Highly sensitive detection of exocytotic dopamine release using a gold-nanoparticle-network microelectrode.

Kelly L Adams1, Bikash Kumar Jena, Stephen J Percival, Bo Zhang.   

Abstract

Here we report a new type of microelectrode sensor for single-cell exocytotic dopamine release. The new microsensor is built by forming a gold-nanoparticle (AuNP) network on a carbon fiber microelectrode. First a gold surface is obtained on a carbon fiber microdisk electrode by partially etching away the carbon followed by electrochemical deposition of gold into the pore. The gold surface is chemically functionalized with a sol-gel silicate network derived from (3-mercaptopropyl)trimethoxysilane (MPTS). A AuNP network is formed by immobilizing Au nanoparticles onto the thiol groups in the sol-gel silicate network. The AuNP-network microelectrode has been characterized by scanning electron microscopy (SEM) and steady-state voltammetry. The AuNP-network microelectrode has been used for amperometric detection of exocytotic dopamine secretion from individual pheochromocytoma (PC12) cells. The results show significant differences in the kinetic peak parameters including shorter rise time, decay time, and half-width as compared to a bare carbon fiber electrode equivalent. These results indicate AuNP-network microelectrodes possess an excellent sensing activity for single-cell exocytotic catecholamine release, specifically dopamine. Moreover, key advantageous properties inherent to bare carbon fiber microelectrodes (i.e., rigidity, flexibility, and small size) are maintained in addition to an observed prolonged shelf life stability and resistance to cellular debris fouling and dopamine polymerization.

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Year:  2010        PMID: 21175175     DOI: 10.1021/ac102599s

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  11 in total

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Journal:  Mikrochim Acta       Date:  2019-02-11       Impact factor: 5.833

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Journal:  Anal Chem       Date:  2012-10-03       Impact factor: 6.986

5.  Carbon electrode fabrication from pyrolyzed parylene C.

Authors:  Kirstin C Morton; Celeste A Morris; Maksymilian A Derylo; Rahul Thakar; Lane A Baker
Journal:  Anal Chem       Date:  2011-06-08       Impact factor: 6.986

6.  Neurotransmitter Readily Escapes Detection at the Opposing Microelectrode Surface in Typical Amperometric Measurements of Exocytosis at Single Cells.

Authors:  Gregory S McCarty; Lars E Dunaway; J Dylan Denison; Leslie A Sombers
Journal:  Anal Chem       Date:  2022-06-24       Impact factor: 8.008

7.  Electrochemical Characterization of Ultrathin Cross-Linked Metal Nanoparticle Films.

Authors:  Chu Han; Stephen J Percival; Bo Zhang
Journal:  Langmuir       Date:  2016-08-23       Impact factor: 3.882

8.  Redox-filled Carbon-Fiber Microelectrodes for Single-Cell Exocytosis.

Authors:  Jonathan T Cox; Christopher G Gunderson; Bo Zhang
Journal:  Electroanalysis       Date:  2013-09       Impact factor: 3.223

9.  The Investigation of Electrochemistry Behaviors of Tyrosinase Based on Directly-Electrodeposited Grapheneon Choline-Gold Nanoparticles.

Authors:  Yaping He; Xiaohui Yang; Quan Han; Jianbin Zheng
Journal:  Molecules       Date:  2017-06-23       Impact factor: 4.411

10.  Synergetic enhancement of gold nanoparticles and 2-mercaptobenzothiazole as highly-sensitive sensing strategy for tetrabromobisphenol A.

Authors:  Xuerong Chen; Liudi Ji; Yikai Zhou; Kangbing Wu
Journal:  Sci Rep       Date:  2016-05-17       Impact factor: 4.379

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