TY - JOUR
T1 - Rapid detection of ags using microchip capillary electrophoresis contactless conductivity detection
AU - Zhu, Gangzhi
AU - Bao, Chunjie
AU - Liu, Wenfang
AU - Yan, Xingxing
AU - Liu, Lili
AU - Xiao, Jian
AU - Chen, Chuanpin
N1 - Publisher Copyright:
© 2019 Bentham Science Publishers.
PY - 2019
Y1 - 2019
N2 - Background: In order to realize current aminoglycosides supervision in food and environment, our team improved the sensitivity and separation efficiency of the portable ITO detector, based on the technology of microchip capillary electrophoresis and contactless conductivity detection. Experiment: Parameters (the separation voltage, buffer concentration, electrodes gap, elicitation frequency, elicitation voltage) were optimized for the detection of three aminoglycosides, gentamicin, kanamycin and streptomycin and the separation of their mixture in background electrolyte consists of 2-(N-Morpholino) ethanesulfonic acid (MES) and L-Histidine (His). The enhanced method was also applied to other types of aminoglycosides. Results: Under optimal conditions, the monitoring of three types of aminoglycosides obtained such a sensitive response that the limits of detection of gentamicin sulfate, kanamycin sulfate and streptomycin sulfate were calculated as 3.1 μg/ml, 0.89 μg/ml and 0.96 μg/ml, at signal-to-noise ratio 3, respectively. In addition they got separated completely from each other only in 40 s. The results of other varieties of aminoglycosides including tobramycin sulfate and amikacin sulfate also met the standard. Conclusion: We successfully proposed here an unprecedentedly portable, miniaturized and rapid microchip capillary electrophoresis contactless conductivity detection system to realize current aminoglycosides supervision in food and environment.
AB - Background: In order to realize current aminoglycosides supervision in food and environment, our team improved the sensitivity and separation efficiency of the portable ITO detector, based on the technology of microchip capillary electrophoresis and contactless conductivity detection. Experiment: Parameters (the separation voltage, buffer concentration, electrodes gap, elicitation frequency, elicitation voltage) were optimized for the detection of three aminoglycosides, gentamicin, kanamycin and streptomycin and the separation of their mixture in background electrolyte consists of 2-(N-Morpholino) ethanesulfonic acid (MES) and L-Histidine (His). The enhanced method was also applied to other types of aminoglycosides. Results: Under optimal conditions, the monitoring of three types of aminoglycosides obtained such a sensitive response that the limits of detection of gentamicin sulfate, kanamycin sulfate and streptomycin sulfate were calculated as 3.1 μg/ml, 0.89 μg/ml and 0.96 μg/ml, at signal-to-noise ratio 3, respectively. In addition they got separated completely from each other only in 40 s. The results of other varieties of aminoglycosides including tobramycin sulfate and amikacin sulfate also met the standard. Conclusion: We successfully proposed here an unprecedentedly portable, miniaturized and rapid microchip capillary electrophoresis contactless conductivity detection system to realize current aminoglycosides supervision in food and environment.
KW - Aminoglycosides
KW - Contactless conductivity detection
KW - ITO-coated PET film
KW - Method validation
KW - Microchip capillary electrophoresis
KW - Optimization
UR - http://www.scopus.com/inward/record.url?scp=85059278061&partnerID=8YFLogxK
U2 - 10.2174/1573412913666170918160004
DO - 10.2174/1573412913666170918160004
M3 - Article
AN - SCOPUS:85059278061
SN - 1573-4129
VL - 15
SP - 9
EP - 16
JO - Current Pharmaceutical Analysis
JF - Current Pharmaceutical Analysis
IS - 1
ER -