Method development for determination of imatinib and its major metabolite, N‐desmethyl imatinib, in biological and environmental samples by SA–SHS–LPME and HPLC

化学 三乙胺 色谱法 去甲基 检出限 高效液相色谱法 固相萃取 代谢物 有机化学 生物化学
作者
Nader Rahimi Kakavandi,Tayebeh Asadi,Behrooz Jannat,Khosrou Abdi,Mahmoud Ghazi‐Khansari,Hossein Shahali,Karim Naraki
出处
期刊:Biomedical Chromatography [Wiley]
卷期号:35 (7): e5088-e5088 被引量:18
标识
DOI:10.1002/bmc.5088
摘要

Abstract A salting‐out‐assisted switchable hydrophilicity solvent‐based liquid phase microextraction (SA–SHS–LPME) was developed for the separation and determination of trace amounts of imatinib and N‐ desmethyl imatinib in biological and environmental samples by HPLC–UV. Triethylamine as a hydrophobic compound and protonated triethylamine carbonate as a hydrophilic one were switched by the addition or elimination of CO 2 . The use of NaOH resulted in the elimination of CO 2 from the sample solution, which led to the conversion of P‐TEA‐C into triethylamine (TEA) and as a result, the analytes was extracted and entered the TEA phase. The salting out was performed to speed up the formation of the TEA in the shape of fine droplets in the specimen solution. Furthermore, the impact of several momentous factors that influence the recovery of the extraction was investigated. Under the optimum conditions, the limit of detection and limit of quantification were obtained in ranges of 0.03–0.05 and 0.1–0.15 μg L −1 for imatinib and 0.04–0.06 and 0.13–0.20 μg L −1 for N‐ desmethyl imatinib, respectively. The preconcentration factor was 250. Inter‐ and intraday precision (RSD, n = 5) was <5%. In the case of imatinib and N‐ desmethyl imatinib in biological and environmental specimens, a range of 97.0–102% was obtained as the recovery.
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