| Literature DB >> 35083640 |
Arimi Fujita1,2,3, Saki Noguchi1, Rika Hamada1, Satoko Inoue1, Tsutomu Shimada2,3, Satomi Katakura4, Tetsuo Maruyama4, Yoshimichi Sai2,3, Tomohiro Nishimura1, Masatoshi Tomi5.
Abstract
PURPOSE: Multidrug resistance protein 1 (MDR1) is located at the interface between two syncytiotrophoblast layers in rodent placenta, and may influence fetal drug distribution. Here, we quantitatively compare the functional impact per single MDR1 molecule of MDR1 at the placental barrier and blood-brain barrier in mice.Entities:
Keywords: multidrug resistance protein 1 (MDR1); pharmacokinetic model; placenta; pregnancy; syncytiotrophoblasts
Mesh:
Substances:
Year: 2022 PMID: 35083640 PMCID: PMC9246986 DOI: 10.1007/s11095-022-03165-6
Source DB: PubMed Journal: Pharm Res ISSN: 0724-8741 Impact factor: 4.580
Fig. 1Pharmacokinetic model illustrating the PS products for transplacental transfer of MDR1 substrates in rodents.
Fig. 2MDR1 protein amounts in the placenta. The absolute protein expression amounts of mouse MDR1A and MDR1B in plasma membrane fraction of the mouse placental labyrinth and human MDR1 in human placental microvillous membrane-enriched fraction. Each column represents the mean ± S.E.M. of 4 human donors or 3 independent sample preparations from mouse placenta. The peak data of the peptides were extracted by using 3 sets of SRM transitions and the expression levels of individual donors or samples were determined as the mean of 3 quantitative data. The quantitative data of each SRM transition of individual donors or samples are shown in Supplemental Table S1. *p < 0.05, significant difference between MDR1A and MDR1B at the same gestational day.
Estimated Expression Amounts of MDR1 in Mouse Placental Barrier and Blood-Brain Barrier
| GD | MDR1 Protein (fmol/μg protein) | |
|---|---|---|
| Apical membrane of placental SynT-II | 15.5 | 10 |
| 17.5 | 7.0 | |
| Luminal membrane of brain capillaries | – | 28 |
The expression amount of MDR1 at the apical membrane of placenta SynT-II was estimated to be 8 times larger than that in plasma membrane fraction of the placental labyrinth (Fig. 2). The expression amount of MDR1 at the luminal membrane of brain capillaries was estimated to be twice that in plasma membrane fraction of brain capillaries reported by Uchida et al. (2011)(11)(See Supplemental Text for details)
Distribution of Paclitaxel and Digoxin to Fetal Plasma and Brain in wild-Type(WT) and Mdr1a−/−/1b−/−(KO) Mice
| GD | ||||||||
|---|---|---|---|---|---|---|---|---|
| Paclitaxel | 15.5 | 0.0289 ± 0.0100 | 0.0922 ± 0.0112* | 3.20 ± 0.68 | 0.443 ± 0.080 | 12.3 ± 1.4** | 27.9 ± 2.30 | 12.3 ± 1.3 |
| 17.5 | 0.0112 ± 0.0036 | 0.0837 ± 0.0094** | 7.49 ± 1.48 | |||||
| Digoxin | 15.5 | 0.214 ± 0.014 | 0.298 ± 0.059 | 1.40 ± 0.17 | 0.348 ± 0.056 | 14.8 ± 3.0** | 42.6 ± 3.27 | 17.8 ± 2.1 |
| 17.5 | 0.216 ± 0.041 | 0.307 ± 0.052 | 1.42 ± 0.15 |
The Kp value in fetal plasma and brain was measured after continuous administration of paclitaxel or digoxin at a rate of 1.0 μL/h for 48 or 72 h, respectively, using osmotic pumps filled with 3.51 mM paclitaxel or 230 μM digoxin. The plasma and brain were collected at GD15.5 and 17.5, and Kp,fm was determined according to the gestational day. Kp,brain was determined without distinction of the gestational day. Each value represents the mean ± S.E.M. (n = 3–9). The S.E.M. of the Kp,fm ratio was calculated according to the law of propagation of error. aData from Uchida et al. (2011)(11). *p < 0.05, **p < 0.01, significant difference from Kp in WT
Placenta-to-Brain Ratio (RP/B) and Placenta-to-In Vitro MDR1A Cell Ratio (RP/C) of the Apparent Impact per Single MDR1 Protein Molecule on the Distribution of Paclitaxel and Digoxin
| GD | |||
|---|---|---|---|
| Paclitaxel | 15.5 | 0.232 ± 0.002 | 0.551 ± 0.013 |
| 17.5 | 1.05 ± 0.01 | 2.50 ± 0.06 | |
| Digoxin | 15.5 | 0.0271 ± 0.0002 | 0.0673 ± 0.0021 |
| 17.5 | 0.0443 ± 0.0003 | 0.1100 ± 0.0081 |
The RP/B and RP/C values were determined as the ratio of Kp,fm ratio − 1 per single placental MDR1 molecule to Kp,brain ratio − 1 per single brain MDR1 molecule and to the change of in vitro MDR1A efflux ratio per single MDR1 molecule, respectively. The protein expression amounts of MDR1 and Kp ratios are given in Tables I and II, respectively. Each value represents the mean ± S.E.M. The S.E.M. was calculated according to the law of propagation of error
Unbound Fraction of Paclitaxel and Digoxin in Maternal (fu,mp) and Fetal (fu,fp) Plasma and Albumin Concentration in Maternal and Fetal Plasma of Pregnant Mice
| GD | Paclitaxel | Digoxin | Maternal albumin (mg/mL) | Fetal albumin (mg/mL) | ||
|---|---|---|---|---|---|---|
| 15.5 | 0.0548 ± 0.0027 | 0.198 ± 0.003 | 0.428 ± 0.005 | 0.854 ± 0.001 | 44.1 ± 6.3 | 2.84 ± 0.44 |
| 17.5 | 0.0733 ± 0.0037 | 0.201 ± 0.015 | 0.650 ± 0.007 | 0.777 ± 0.012 | 39.1 ± 3.2 | 8.93 ± 0.81 |
The unbound fraction of paclitaxel (26 nM) and [3H]digoxin (13 nM) was determined by equilibrium dialysis. The albumin concentration in maternal and fetal plasma was measured by ELISA. Each value represents the mean ± S.E.M. (n = 3–5)
Fig. 3Kp,uu,fm values of paclitaxel (A) and digoxin (B) in wild-type (closed bar) and Mdr1a−/−/1b−/− (open bar) mice. Each column represents the mean ± S.E.M. The S.E.M. was calculated according to the law of propagation of error. *p < 0.05, **p < 0.01, significant difference between wild-type and Mdr1a−/−/1b−/− mice in Kp,fm values.