Nephrotoxicity and Kidney Transport Assessment on 3D Perfused Proximal Tubules

被引:0
作者
Marianne K. Vormann
Linda Gijzen
Simon Hutter
Lisette Boot
Arnaud Nicolas
Angelique van den Heuvel
Jelle Vriend
Chee Ping Ng
Tom T. G. Nieskens
Vincent van Duinen
Bjorn de Wagenaar
Rosalinde Masereeuw
Laura Suter-Dick
Sebastiaan J. Trietsch
Martijn Wilmer
Jos Joore
Paul Vulto
Henriette L. Lanz
机构
[1] MIMETAS B.V,Department of Pharmacology and Toxicology
[2] Radboud UMC,Division of Analytical Biosciences
[3] Leiden Academic Center for Drug Research,Division Pharmacology, Department of Pharmaceutical Sciences
[4] Utrecht University,School of Life Sciences
[5] University of Applied Sciences Northwestern Switzerland,undefined
来源
The AAPS Journal | / 20卷
关键词
kidney-on-a-chip; nephrotoxicity; apparent permeability (; ); proximal tubule; transepithelial transport;
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摘要
Proximal tubules in the kidney play a crucial role in reabsorbing and eliminating substrates from the body into the urine, leading to high local concentrations of xenobiotics. This makes the proximal tubule a major target for drug toxicity that needs to be evaluated during the drug development process. Here, we describe an advanced in vitro model consisting of fully polarized renal proximal tubular epithelial cells cultured in a microfluidic system. Up to 40 leak-tight tubules were cultured on this platform that provides access to the basolateral as well as the apical side of the epithelial cells. Exposure to the nephrotoxicant cisplatin caused a dose-dependent disruption of the epithelial barrier, a decrease in viability, an increase in effluent LDH activity, and changes in expression of tight-junction marker zona-occludence 1, actin, and DNA-damage marker H2A.X, as detected by immunostaining. Activity and inhibition of the efflux pumps P-glycoprotein (P-gp) and multidrug resistance protein (MRP) were demonstrated using fluorescence-based transporter assays. In addition, the transepithelial transport function from the basolateral to the apical side of the proximal tubule was studied. The apparent permeability of the fluorescent P-gp substrate rhodamine 123 was decreased by 35% by co-incubation with cyclosporin A. Furthermore, the activity of the glucose transporter SGLT2 was demonstrated using the fluorescent glucose analog 6-NBDG which was sensitive to inhibition by phlorizin. Our results demonstrate that we developed a functional 3D perfused proximal tubule model with advanced renal epithelial characteristics that can be used for drug screening studies.
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