The use of the Liebermann–Burchard reaction in this study has been explored in the development of a simple, reliable, and robust quantitative electrochemical method to assay cholesterol, and hence provide a good alternative to colorimetric methods. The optimization of batch mode operation for electrochemical oxidation of cholesterol in the Liebermann–Burchard reagents included the applied potential and acidic volume. Tested using chronoamperometry, the developed method showed a high sensitivity (14.959 μA mM−1) and low detection limit (19.78 nM) over a 0.025–3 mM concentration range, with remarkable linearity (R2 = 0.999), proving an analytical performance either higher or comparable to most of the cholesterol sensors discussed in literatur...
A cholesterol oxidase from Streptomycin sp. was immobilized onto pencil graphite rod and employed fo...
This review summarizes electrochemical methods used for the investigation, determination, and monito...
A simple and robust cholesterol biosensor was designed by immobilizing cholesterol oxidase (ChOx) on...
In this rapid and specific micro-scale electrochemical enzymic assay for cholesterol and cholesterol...
We report on a voltammetric sensor for the detection of total cholesterol. The sensor was fabricated...
Cholesterol is an irreplaceable sterol found in animal cells, lathosterol is one of its precursors. ...
[[abstract]]A prototype chronoamperometric biosensor for the determination of total cholesterol was ...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
A cholesterol oxidase from Streptomycin sp. was immobilized onto pencil graphite rod and employed fo...
This review summarizes electrochemical methods used for the investigation, determination, and monito...
A simple and robust cholesterol biosensor was designed by immobilizing cholesterol oxidase (ChOx) on...
In this rapid and specific micro-scale electrochemical enzymic assay for cholesterol and cholesterol...
We report on a voltammetric sensor for the detection of total cholesterol. The sensor was fabricated...
Cholesterol is an irreplaceable sterol found in animal cells, lathosterol is one of its precursors. ...
[[abstract]]A prototype chronoamperometric biosensor for the determination of total cholesterol was ...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
© 2016 The Royal Society of Chemistry. Cholesterol is a major modifiable risk factor in cardiovascul...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
Coronary vascular disease (CVD) is the number one cause of death worldwide. According to a WHO repor...
A cholesterol oxidase from Streptomycin sp. was immobilized onto pencil graphite rod and employed fo...
This review summarizes electrochemical methods used for the investigation, determination, and monito...
A simple and robust cholesterol biosensor was designed by immobilizing cholesterol oxidase (ChOx) on...