2012CHINESE JOURNAL OF ANALYTICAL CHEMISTRY (CHINESE VERSION)Requires access

Rapid Separation of Human Serum Proteins by Microchip Electrophoresis

Xu Zhong

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Abstract

This study focused on the separation of human serum proteins by microchip electrophoresis.It was illustrated the sample injection time and applied voltages significantly affected the final detection and quantitative analysis on a cross microchip.The developed background electrolyte(BGE) was consisted of 100mmol / L H 3 BO 3,50mmol / L NaCl,5% dextran(pH 8.3adjusted by NaOH).Five protein fractions,α1,α2,β,γ-globulins and albumin in human serum,could be separated,moreover,their effective mobilities were estimated in the range of 5.15~47.2×10-5 cm 2 V -1 s -1 in this buffer system.The injection and separation were finished within 2min in the chip,which was faster than traditional capillary zone electrophoresis.

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What this paper is about

This study focused on the separation of human serum proteins by microchip electrophoresis.It was illustrated the sample injection time and applied voltages significantly affected the final detection and quantitative analysis on a cross microchip.The developed background electrolyte(BGE) was consisted of 100mmol / L H 3 BO 3,50mmol / L NaCl,5% dextran(pH 8.3adjusted by NaOH).Five protein fractions,α1,α2,β,γ-globulins and albumin in human serum,could be separated,moreover,their effective mobilities were estimated in the range of 5.15~47.2×10-5 cm 2 V -1 s -1 in this buffer system.The injection and separation were finished within 2min in the chip,which was faster than traditional capillary zone electrophoresis.

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Available abstract

This study focused on the separation of human serum proteins by microchip electrophoresis.It was illustrated the sample injection time and applied voltages significantly affected the final detection and quantitative analysis on a cross microchip.The developed background electrolyte(BGE) was consisted of 100mmol / L H 3 BO 3,50mmol / L NaCl,5% dextran(pH 8.3adjusted by NaOH).Five protein fractions,α1,α2,β,γ-globulins and albumin in human serum,could be separated,moreover,their effective mobilities were estimated in the range of 5.15~47.2×10-5 cm 2 V -1 s -1 in this buffer system.The injection and separation were finished within 2min in the chip,which was faster than traditional capillary zone electrophoresis.

Key concepts: Chemistry, Capillary electrophoresis, Chromatography, Electrophoresis, Electrolyte, Human serum albumin, Dextran, Capillary action

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