Selective enrichment of aminothiols using polysorbate 20-capped gold nanoparticles followed by capillary electrophoresis with laser-induced fluorescence

CC Shen, WL Tseng, MM Hsieh - Journal of Chromatography A, 2009 - Elsevier
CC Shen, WL Tseng, MM Hsieh
Journal of Chromatography A, 2009Elsevier
In this article, we report a simple method for selective enrichment of aminothiols using
Tween 20-capped gold nanoparticles (AuNPs) prior to capillary electrophoresis coupled
with laser-induced fluorescence (CE-LIF). Compared to citrate-capped AuNPs, Tween 20-
capped AuNPs exhibit the ability to disperse in a highly saline solution and selectively
extract aminothiols through the formation of Au–S bonds. After extraction and centrifugation,
1mM thioglycollic acid (TGA) was utilized to remove aminothiols that attached to the NP …
In this article, we report a simple method for selective enrichment of aminothiols using Tween 20-capped gold nanoparticles (AuNPs) prior to capillary electrophoresis coupled with laser-induced fluorescence (CE-LIF). Compared to citrate-capped AuNPs, Tween 20-capped AuNPs exhibit the ability to disperse in a highly saline solution and selectively extract aminothiols through the formation of Au–S bonds. After extraction and centrifugation, 1mM thioglycollic acid (TGA) was utilized to remove aminothiols that attached to the NP surfaces. After a solution of 8.0mL aminothiols were extracted using 2× AuNPs (200μL), the extracted aminothiols derivatized with o-phthalaldehyde at pH 12.0 were detected by CE-LIF. As a result, the limits of detection at a signal-to-noise ratio of 3 for homocysteine (HCys), glutathione (GSH), and γ-glutamycysteine (Glu-cys) are 4013.2, 79.8, and 382.8pM, respectively. The use of this probe provided approximately 11-, 282-, and 21-fold sensitivity improvements for HCys, GSH, and Glu-cys, respectively. A practical analysis of HCys, GSH, and Glu-cys in human urine sample has been accomplished by this present method.
Elsevier
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