| Literature DB >> 28993647 |
Hiroshi Arakawa1, Ikumi Washio2, Natsumi Matsuoka1, Hikaru Kubo1, Angelina Yukiko Staub1, Noritaka Nakamichi3, Naoki Ishiguro2, Yukio Kato3, Takeo Nakanishi1, Ikumi Tamai4.
Abstract
Kidney plays a key role in the elimination and reabsorption of drugs and nutrients, however in vitro methods to evaluate renal disposition are limited. In the present study, we investigated usefulness of isolated kidney slice, which had been used for transport only at basolateral membrane of tubular epithelial cells, for evaluation of apical membrane transporters. As transporters that are easy to discriminate between apical and basolateral transports, apical membrane specific and sodium-dependent transporters (SGLTs and OCTNs) and pH-dependent transporters (PEPTs) are selected. Uptake of ergothioneine, carnitine and methyl-α-D-glucopyranoside, which are substrates of apical Octn1, Octn2, and Sglt1/2, respectively, by mice kidney slices showed clear Na+ dependence and reduction by selective inhibitors. In addition, sodium dependence of ergothioneine uptake was negligible in the kidney slice from Octn1-gene deficient mice. Moreover, uptake of PepT1/2 substrate glycyl-sarcosine, was higher than that in the presence of glycyl-leucine, a non-specific Pept inhibitor. The K m and IC 50 values for substrates and inhibitors of each transporter were mostly comparable to those obtained in transporter-transfected cells. In conclusion, it was demonstrated that kidney slices are promising tool to study transporters expressed at the apical membranes as well as basolateral membranes of kidney tubular epithelial cells.Entities:
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Year: 2017 PMID: 28993647 PMCID: PMC5634478 DOI: 10.1038/s41598-017-12828-z
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Carrier-mediated Uptake of [3H]Ergothioneine, [3H]Carnitine, [14C]αMG and [3H]Gly-Sar by Mice Kidney Slices. Uptake of (A) [3H]ergothioneine (1.0 μM), (B) [3H]carnitine (1.3 nM) and (C) [14C]αMG (2.5 μM) was performed in the presence or in the absence of Na+ into mice kidney slices at pH 7.4 and 37 °C for 1, 3, 5, 10, 15 and 20 min. Closed and open circles represent each substrate uptake in the presence or the absence of Na+, respectively. (D) [3H]Gly-Sar (36 nM) was performed in the presence or in the absence of Gly-Leu (5 mM) into mice kidney slices at pH 7.4 and 37 °C for 1, 3, 5, 10, 15 and 20 min. Closed and open circles represent [3H]Gly-Sar uptake in the presence or the absence of Gly-Leu, respectively. Each result represents the mean ± S.E.M (n = 3).* Indicates a significant difference from the uptake in the absence of Na+ or Gly-Leu at each time point (p < 0.05) by Student’s t-test.
Figure 2Uptake of [3H]Ergothioneine by Octn1−/− and Wild-type Mice Kidney Slices. The uptake of [3H]ergothioneine (A) and [14C] αMG (B) into Octn1−/− (open symbol) and wild-type (closed symbol) mice kidney slices. (A) Uptake of [3H]ergothioneine into kidney slices was performed at pH 7.4 and 37 °C for 1, 3, 5, 10, 15 and 20 min in the presence (circle) or the absence (triangle) of Na+. (B) The uptake of [14C]αMG into kidney slices was performed at pH 7.4 and 37 °C for 5 min in the presence (open bars) or absence (closed bars) of Na+. Each result represents the mean ± S.E.M. (n = 3 or 4). * and † indicate a significant difference from the uptake in the absence of Na+ (p < 0.05) or Octn1−/− mice at each time point by Student’s t-test.
Figure 3Inhibitory Effects of Various Compounds on Uptake by Mice Kidney Slices and Transporter-expressing HEK293 Cells. (A) Uptake of [3H]ergothioneine (1.0 μM) into mice kidney slices was performed in the presence or the absence of the indicated compounds at pH 7.4 and 37 °C for 3 min. Each bar represents the mean ± S.E.M. (n = 3 or 4) after subtraction of the uptake of [3H]ergothioneine in the absence of Na+. (B) Uptake of [3H]ergothioneine (1.0 μM) into Octn1-expressing HEK293 cells was performed in the presence or the absence of the indicated compounds at pH 7.4 and 37 °C for 15 sec. Each bar represents the mean ± S.E.M. (n = 3) after subtraction of the uptake of [3H]ergothioneine in the mock cells. (C) Effect of pH or Pept inhibitors on [3H]Gly-Sar uptake in mice kidney slices was performed at pH 7.4 or 6.0, and 37 °C for 5 min. Each bar represents the mean ± S.E.M. (n = 3). (D) Effect of dapagliflozin combination with D-galactose (30 mM) on [14C]αMG uptake into kidney mice slices was performed at pH 7.4 and 37 °C for 5 min. Each bar represents the mean ± S.E.M. (n = 3) after subtraction of the uptake of [14C]αMG in the absence of Na+. (E) Effect of dapagliflozin combination with D-glucose (0, 1 and 10 mM) on [14C]αMG uptake was performed at pH 7.4 and 37 °C for 5 min. Each bar represents the mean ± S.E.M. (n = 3) after subtraction of the uptake of [14C]αMG in the absence of Na+. * indicates a significant difference from the control (p < 0.05) by dunnett test.
Figure 4Concentration Dependences of Uptake by Mice Kidney Slices. (A) Uptake of [3H]Ergothioneine (1, 5, 10, 50, 100 and 250 μM) into mice kidney slices was measured at pH 7.4 and 37 °C for 3 min. The data were fitted to the Michaelis-Menten equation and Eadie-Hofstee plot by a nonlinear least-squares regression analysis. Each point represents the mean ± S.E.M. (n = 3 or 4), after subtraction of the uptake of [3H]Ergothioneine (1,000 μM). (B) Uptake of [3H]Gly-Sar (10, 30, 50, 100, 300 μM) into mice kidney slices was measured at pH 7.4 and 37 °C for 5 min. The data were fitted to the Michaelis-Menten equation and Eadie-Hofstee plot by a nonlinear least-squares regression analysis. Each point represents the mean ± S.E.M. (n = 3 or 4), after subtraction of the uptake of [3H]Gly-Sar (10 mM). (C) Uptake of [3H]ergothioneine (1.0 μM) into mice kidney slices was performed at pH 7.4 and 37 °C for 3 min in the absence or presence of verapamil (10, 30, 100, 300 and 1,000 μM). Each point represents the mean ± S.E.M. (n = 3), after subtraction of the uptake of [3H]ergothioneine in the absence of Na+. (D) Uptake of [3H]carnitine (1.0 μM) into mice kidney slices was performed at pH 7.4 and 37 °C for 3 min in the absence or the presence of verapamil (10, 30, 100, 300 and 1,000 μM). Each point represents the mean ± S.E.M. (n = 3), after subtraction of the uptake of [3H]carnitine in the absence of Na+. (E) Uptake of [14C]αMG (1.0 μM) into mice kidney slices was performed at pH 7.4 and 37 °C for 3 min in the absence or presence of phloridzin (10, 30, 100, 300, 1,000, 3,000 and 10,000 nM). Each point represents the mean ± S.E.M. (n = 3), after subtraction of the uptake of [14C]αMG in the absence of Na+.
Summary of the calculated K and IC 50 values.
| Transporter | Compound | Mice Kidney Slice (µM) | Expression Model (µM) |
|---|---|---|---|
| Octn1 | Ergothioneine ( | 69.8 ± 27.6 | 4.68[ |
| Verapamil ( | 151 ± 46 | 271 ± 44 | |
| Octn2 | Verapamil ( | 363 ± 142 | 94.1 ± 8.9 |
| Sglt1/2 | Phloridzin ( | 0.265 ± 0.084 | 0.299 (Sglt1)[ |
| 0.0726 (Sglt2)[ | |||
| Pept1/2 | Gly-Sar ( | 161 ± 17 | 600 (PEPT1)[ |
| 79.5 (PEPT2)[ |