Determination of thiopurine S-methyltransferase activity using reverse-phase high-performance liquid chromatography assay with ultraviolet detection: Reference values for the Indian population
JOURNAL OF PHARMACOLOGY & PHARMACOTHERAPEUTICS
Authors: Prabha, Ratna; Mathew, Sumith K.; Joseph, A. J.; Mathew, Binu Susan
Abstract
Objective: To determine thiopurine S-methyltransferase (TPMT) activity and the range of TPMT activity values for the Indian population. Methods: An isocratic reversed-phase high-performance liquid chromatography method with ultraviolet detection for the determination of TPMT activity in red blood cells was developed and validated. TPMT activity (nmol of 6-methylmercaptopurine [6-MMP]/h/ml erythrocytes) was measured based on the conversion of 6-mercaptopurine to 6-MMP with S-adenosyl-l-methionine. The stability of erythrocyte lysate at -20 degrees C and the whole-blood specimens for TPMT activity were determined at 4 degrees C. TPMT enzyme activity was measured in 150 patients who were not on azathioprine (AZA), and population difference in TPMT enzyme activity was evaluated. Results: The assay was linear from 1.0 to 60.14 nmol 6-MMP concentrations. The chromatogram peaks obtained were baseline separated for 6-MMP and the internal standard. The bias and precision of low-, medium-, and high-quality controls (QC) were within acceptable limits. Stock and lysate specimens were found to be stable in -20 degrees C. The Indian populations have a considerable number of patients with low- and intermediate-TPMT activity. The wide range of TPMT activity in the study population (3.85-35.68 nmol/h/ml erythrocytes) is suggestive of high inter-individual variability in the formation of 6-thioguanine nucleotide formation, and therefore clinical efficacy and safety of AZA. Conclusion: A simple isocratic method was developed and validated for measuring TPMT activity in erythrocytes. Measuring TPMT activity before initiating AZA may help to decide the initial dose of AZA in patient management.
ASSESSMENT OF MERCAPTOPURINE (6MP) METABOLITES AND 6MP METABOLIC KEY-ENZYMES IN CHILDHOOD ACUTE LYMPHOBLASTIC LEUKEMIA
NUCLEOSIDES NUCLEOTIDES & NUCLEIC ACIDS
Authors: Wojtuszkiewicz, Anna; Barcelos, Ana; Dubbelman, Boas; De Abreu, Ronney; Brouwer, Connie; Bokkerink, Jos P.; de Haas, Valerie; de Groot-Kruseman, Hester; Jansen, Gerrit; Kaspers, Gertjan L.; Cloos, Jacqueline; Peters, G. J.
Abstract
Pediatric acute lymphoblastic leukemia (ALL) is treated with combination chemotherapy including mercaptopurine (6MP) as an important component. Upon its uptake, 6MP undergoes a complex metabolism involving many enzymes and active products. The prognostic value of all the factors engaged in this pathway still remains unclear. This study attempted to determine which components of 6MP metabolism in leukemic blasts and red blood cells are important for 6MP's sensitivity and toxicity. In addition, changes in the enzymatic activities and metabolite levels during the treatment were analyzed. In a cohort (N = 236) of pediatric ALL patients enrolled in the Dutch ALL-9 protocol, we studied the enzymes inosine-5'-monophosphate dehydrogenase (IMPDH), thiopurine S-methyltransferase (TPMT), hypoxanthine guanine phosphoribosyl transferase (HGPRT), and purine nucleoside phosphorylase (PNP) as well as thioguanine nucleotides (TGN) and methylthioinosine nucleotides (meTINs). Activities of selected enzymes and levels of 6MP derivatives were measured at various time points during the course of therapy. The data obtained and the toxicity related parameters available for these patients were correlated with each other. We found several interesting relations, including high concentrations of two active forms of 6MP-TGN and meTIN-showing a trend toward association with better in vitro antileukemic effect of 6MP. High concentrations of TGN and elevated activity of HGPRT were found to be significantly associated with grade III/IV leucopenia. However, a lot of data of enzymatic activities and metabolite concentrations as well as clinical toxicity were missing, thereby limiting the number of assessed relations. Therefore, although a complex study of 6MP metabolism in ALL patients is feasible, it warrants more robust and strict data collection in order to be able to draw more reliable conclusions.