Due to its selectivity and sensitivity, capillary electrophoresis coupled to laser-induced fluorescence has evolved as a useful analytical tool for determining drugs in biological samples. This paper describes a simple, sensitive, efficient, and rapid method for analyzing propranolol without derivatization in plasma by CE-LIF using a diode solid-state laser at 266nm. An experimental design methodology was assessed for the investigation of electrophoretic parameters and a Box-Behnken design was selected to optimize both sensitivity and efficiency. The CE-LIF method was linear over the concentration range of 50-850ngmL(-1) and successfully applied to a real forensic sample
A method based on capillary electrophoresis has been developed for the analysis of the novel antidep...
A capillary electrophoresis system using laser induced fluorescence detection is described. A Raman ...
Novel and sensitive CE methods coupled with LIF and LINF detection using a series of separation mode...
The aim of this study was to develop a fast capillary electrophoresis method for the determination o...
Artículo publicado en: BIOPHARMACEUTICS & DRUG DISPOSITION Biopharm. Drug Dispos.2001; 22: 273–289.C...
A capillary electrophoresis-amperometric detection system was developed for the determination of pro...
A laser-induced fluorescence detector for both capillary electrophoresis (CE) and high performance l...
The use of diode laser-induced fluorescence (DIO-LIF) detection in the field of capillary electropho...
Due to high separation efficiency and low sample volume requirements, capillary zone electrophoresis...
Laser-induced fluorometry (LIF) has achieved the detection of single molecules, which ranks it among...
This Ph.D. Thesis describes several separation and detection schemes for the analysis of small volum...
The trend towards high throughput applications and miniaturization necessitates approaches capable o...
Two instrumental/assay schemes based on capillary electrophoresis (CE) and laser-induced fluorescenc...
In this work we have developed a new sensitive method for quantitation of MDA in\nbiological samples...
Despite the ongoing war on drugs the seizure rates for phenethylamines and their analogues have be...
A method based on capillary electrophoresis has been developed for the analysis of the novel antidep...
A capillary electrophoresis system using laser induced fluorescence detection is described. A Raman ...
Novel and sensitive CE methods coupled with LIF and LINF detection using a series of separation mode...
The aim of this study was to develop a fast capillary electrophoresis method for the determination o...
Artículo publicado en: BIOPHARMACEUTICS & DRUG DISPOSITION Biopharm. Drug Dispos.2001; 22: 273–289.C...
A capillary electrophoresis-amperometric detection system was developed for the determination of pro...
A laser-induced fluorescence detector for both capillary electrophoresis (CE) and high performance l...
The use of diode laser-induced fluorescence (DIO-LIF) detection in the field of capillary electropho...
Due to high separation efficiency and low sample volume requirements, capillary zone electrophoresis...
Laser-induced fluorometry (LIF) has achieved the detection of single molecules, which ranks it among...
This Ph.D. Thesis describes several separation and detection schemes for the analysis of small volum...
The trend towards high throughput applications and miniaturization necessitates approaches capable o...
Two instrumental/assay schemes based on capillary electrophoresis (CE) and laser-induced fluorescenc...
In this work we have developed a new sensitive method for quantitation of MDA in\nbiological samples...
Despite the ongoing war on drugs the seizure rates for phenethylamines and their analogues have be...
A method based on capillary electrophoresis has been developed for the analysis of the novel antidep...
A capillary electrophoresis system using laser induced fluorescence detection is described. A Raman ...
Novel and sensitive CE methods coupled with LIF and LINF detection using a series of separation mode...