Liu Jianhua, Itoh Jun-Ichi
Department of Applied and Environmental Chemistry, Kitami Institute of Technology, 165 Koen chyo, Kitami 090-8507, Japan.
Talanta. 2006 Nov 15;70(4):791-6. doi: 10.1016/j.talanta.2006.01.039. Epub 2006 Feb 28.
A kinetic method for the determination of cysteine on flow injection system is described. Cysteine was found as a catalyst for the complexation reaction of Cu(II) with an ultra sensitive colorimetric reagent of 5,10,15,20-tetrakis (4-N-trimethylammino-phenyl) porphyrin (TTMAPP) (varepsilon=4.8x10(5)cm(-1)M(-1) at 433nm), which was used as the indicator reaction in this paper. Soret band of either the porphyrin or the produced complex (varepsilon=4.6x10(5)cm(-1)M(-1) at 411nm) can be used for detection. The continuous flow injection system greatly enhanced the analytic precision and efficiency of the kinetic method, giving a relative standard deviation of 0.73% for a 0.1mugml(-1) cysteine with 10 injections at a throughput of 30h(-1). The detection limits (3S/N) in this case was 15ngml(-1) and the working dynamic range was over 25ngml(-1) to 1mugml(-1). Sugars, organic acids and amino acids that are possible in coexistence with cysteine could be tolerated at high concentrations. This method was critically compared with the Ellman's reagent in the determinations of cysteine contents of three pharmaceutical injections for hepatic diseases and one permanent wave agent and showed better applicability in the respect of matrix interferences.