TY - JOUR
T1 - Population pharmacokinetics of tacrolimus whole blood and peripheral blood mononuclear cell concentrations in stable kidney-transplanted patients
AU - Agergaard, Katrine
AU - Thiesson, Helle C
AU - Carstens, Jan
AU - Staatz, Christine E
AU - Järvinen, Erkka
AU - Nielsen, Flemming
AU - Christensen, Heidi Dahl
AU - Juhl-Sandberg, Rikke
AU - Brøsen, Kim
AU - Stage, Tore Bjerregaard
AU - Andersen, Dorte Terp
AU - Kjellsson, Maria C
AU - Bergmann, Troels K
N1 - © 2024 The Author(s). British Journal of Clinical Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society.
PY - 2025/3
Y1 - 2025/3
N2 - AIM: Therapeutic drug monitoring of tacrolimus based on whole blood drug concentrations is routinely performed. The concentration of tacrolimus in peripheral blood mononuclear cells (PMBCs) is likely to better reflect drug exposure at the treatment target site. We aimed to describe the relationship between tacrolimus whole blood and PBMC concentrations, and the influence of patient characteristics on this relationship by developing a population pharmacokinetic model.METHODS: We prospectively enrolled 63 stable adult kidney-transplanted patients and collected dense (12-h, n = 18) or sparse (4-h, n = 45) pharmacokinetic profiles of tacrolimus. PBMCs were isolated from whole blood (Ficoll density gradient centrifugation), and drug concentrations in whole blood and PBMCs were analysed using liquid chromatography-mass spectrometry. Patient genotype (CYP3A4/5, ABCB1, NR1I2) was assessed with PCR. Population pharmacokinetic modelling and statistical evaluation was performed using NONMEM.RESULTS: Tacrolimus whole blood concentrations were well described using a two-compartment pharmacokinetic model with a lag-time and first-order absorption and elimination. Tacrolimus PBMC concentrations were best estimated from whole blood concentrations with the use of a scaling factor, the ratio of whole blood to PBMC concentrations (R
C:PBMC), which was the extent of tacrolimus distribution into PBMC. CYP3A5*1 non-expressors and NR1I2-25 385T allele expressors demonstrated higher R
C:PBMC ratios of 42.4% and 60.7%, respectively.
CONCLUSION: Tacrolimus PBMC concentration could not be accurately predicted from whole blood concentrations and covariates because of significant residual unexplained variability in the distribution of tacrolimus into PBMCs and may need to be measured directly if required for future studies.
AB - AIM: Therapeutic drug monitoring of tacrolimus based on whole blood drug concentrations is routinely performed. The concentration of tacrolimus in peripheral blood mononuclear cells (PMBCs) is likely to better reflect drug exposure at the treatment target site. We aimed to describe the relationship between tacrolimus whole blood and PBMC concentrations, and the influence of patient characteristics on this relationship by developing a population pharmacokinetic model.METHODS: We prospectively enrolled 63 stable adult kidney-transplanted patients and collected dense (12-h, n = 18) or sparse (4-h, n = 45) pharmacokinetic profiles of tacrolimus. PBMCs were isolated from whole blood (Ficoll density gradient centrifugation), and drug concentrations in whole blood and PBMCs were analysed using liquid chromatography-mass spectrometry. Patient genotype (CYP3A4/5, ABCB1, NR1I2) was assessed with PCR. Population pharmacokinetic modelling and statistical evaluation was performed using NONMEM.RESULTS: Tacrolimus whole blood concentrations were well described using a two-compartment pharmacokinetic model with a lag-time and first-order absorption and elimination. Tacrolimus PBMC concentrations were best estimated from whole blood concentrations with the use of a scaling factor, the ratio of whole blood to PBMC concentrations (R
C:PBMC), which was the extent of tacrolimus distribution into PBMC. CYP3A5*1 non-expressors and NR1I2-25 385T allele expressors demonstrated higher R
C:PBMC ratios of 42.4% and 60.7%, respectively.
CONCLUSION: Tacrolimus PBMC concentration could not be accurately predicted from whole blood concentrations and covariates because of significant residual unexplained variability in the distribution of tacrolimus into PBMCs and may need to be measured directly if required for future studies.
KW - ATP Binding Cassette Transporter, Subfamily B/genetics
KW - Adult
KW - Aged
KW - Cytochrome P-450 CYP3A/genetics
KW - Drug Monitoring/methods
KW - Female
KW - Genotype
KW - Humans
KW - Immunosuppressive Agents/pharmacokinetics
KW - Kidney Transplantation
KW - Leukocytes, Mononuclear/metabolism
KW - Male
KW - Middle Aged
KW - Models, Biological
KW - Pregnane X Receptor/genetics
KW - Prospective Studies
KW - Tacrolimus/pharmacokinetics
U2 - 10.1111/bcp.16277
DO - 10.1111/bcp.16277
M3 - Journal article
C2 - 39390741
SN - 0306-5251
VL - 91
SP - 761
EP - 773
JO - British Journal of Clinical Pharmacology
JF - British Journal of Clinical Pharmacology
IS - 3
ER -