Related Experiment Video
Updated: Mar 12, 2026

Methods to Study Epithelial Transport Protein Function and Expression in Native Intestine and Caco-2 Cells Grown in 3D
Published on: March 16, 2017
Microvilli Morphology Can Affect Efflux Active P-Glycoprotein in Confluent MDCKII -hMDR1-NKI and Caco-2 Cell
Zhou Meng1, Sylvain Le Marchand1, Deep Agnani1
1Department of Biology, Drexel University, Philadelphia, Pennsylvania (Z.M., S.L.M., D.A., J.B.); and Drug Metabolism and Pharmacokinetics, GlaxoSmithKline Pharmaceuticals, King of Prussia, Pennsylvania (Z.M., M.S., H.E.).
Abstract:
From fits of drug transport kinetics across confluent MDCKII-hMDR1-NKI and Caco-2 cell monolayers we estimated the levels of efflux active P-glycoprotein (P-gp) in these two cell lines (companion paper). In the present work, we compared the efflux active P-gp number to the total P-gp level, using liquid chromatography-tandem mass spectrometry, and showed that in Caco-2 cells total P-gp is about 10-fold greater than efflux active P-gp, whereas in MDCKII-hMDR1-NKI cells these values are within twofold. We further visualized the microvilli in MDCKII-hMDR1-NKI and Caco-2 cells using three-dimensional structured illumination super-resolution microscopy and found that the microvilli in Caco-2 cells are taller and more densely packed than those in MDCK-hMDR1-NKI cells. We hypothesized over 10 years ago that only P-gp at the tips of the microvilli contribute significantly to efflux activity, whereas the remaining P-gp are involved in a futile cycle of efflux of amphipathic drugs from the microvillus membrane, followed by their reabsorption into the same or nearby microvillous membranes. The difference between the levels of total and efflux active P-gp in Caco-2 cells can be explained by the more densely packed microvilli in Caco-2 cells, which would lead to a substantial fraction of P-gp not contributing to final release of drug into the apical chamber. Our results suggest that the effect of microvilli morphology differences between in vitro and in vivo systems must be considered when scaling transporter activity for efflux transporters of amphipathic compounds, for example, P-gp.
Insights
Efflux active P-glycoprotein (P-gp) levels differ significantly between Caco-2 and MDCKII-hMDR1-NKI cells. Microvilli morphology in Caco-2 cells explains the discrepancy between total and efflux-active P-gp, impacting drug transport scaling.
Area of Science:
- Pharmacology
- Cell Biology
- Biophysics
Background:
- P-glycoprotein (P-gp) is a key efflux transporter involved in drug disposition.
- Understanding the relationship between total and active P-gp is crucial for accurate drug transport modeling.
- Cellular microvilli structure can influence transporter function and drug absorption.
Purpose of the Study:
- To compare the levels of efflux-active P-gp versus total P-gp in Caco-2 and MDCKII-hMDR1-NKI cell lines.
- To investigate the role of microvilli morphology in P-gp efflux activity.
- To inform the scaling of transporter activity from in vitro models to in vivo systems.
Main Methods:
- Quantification of efflux-active P-gp using drug transport kinetics.
- Measurement of total P-gp levels via liquid chromatography-tandem mass spectrometry.
- Visualization of cell microvilli using three-dimensional structured illumination super-resolution microscopy.
Main Results:
- Caco-2 cells exhibit a 10-fold higher ratio of total P-gp to efflux-active P-gp compared to MDCKII-hMDR1-NKI cells (within twofold).
- Caco-2 cells possess taller and more densely packed microvilli than MDCKII-hMDR1-NKI cells.
- The dense microvilli in Caco-2 cells likely sequester a significant fraction of P-gp, reducing net efflux.
Conclusions:
- Microvilli morphology significantly impacts the functional expression of P-gp.
- Differences in microvilli structure between in vitro cell models and in vivo systems can lead to discrepancies in drug transporter activity.
- Consideration of microvilli morphology is essential for accurate prediction of drug transport and disposition.
Related Concept Videos
Microvilli
These microvilli are predominantly present in cells lining the small intestine, kidney tubules, and certain cells in the respiratory and reproductive systems. By significantly expanding the surface area of the cell membrane, microvilli enhance the cell's capacity...
Carrier-Mediated Transport
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
Methods for Studying Drug Absorption: In vitro
The diffusion cell method uses a two-compartment cell, including a donor compartment with the drug solution, which simulates the environment where the drug is applied, and a receptor compartment with a buffer solution, which simulates the environment...

