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Updated: May 20, 2026

Quantitative Immunohistochemistry of the Cellular Microenvironment in Patient Glioblastoma Resections
Published on: July 31, 2017
Multidrug resistance proteins expression in glioma patients with epilepsy
Chiara Calatozzolo1, Bianca Pollo, Andrea Botturi
1Department of Neuropathology, Fondazione IRCCS Istituto Neurologico C. Besta, Via Celoria 11, 20133, Milan, Italy.
Abstract:
Epilepsy occurs in glioma, especially in low-grade glioma (LGG), but also in glioblastoma (GBM). In about 20 % of patients pharmacological treatment with anti-epileptic drugs (AEDs) fails. Refractory epilepsy is a multifactorial phenomenon not yet completely understood. The multidrug resistance phenotype was initially associated to P-glycoprotein (Pgp), an ATP-dependent transporter belonging to the same superfamily of multidrug resistance-associated proteins (MRPs). Glutathione-S-transferase-π (GST-π) is also involved in refractory epilepsy. In the present work we investigated the expression of Pgp, MRP1, MRP3 and GST-π in surgical specimens obtained from 35 patients with glioma and epilepsy. We observed MRP1 expression in tumor and endothelial cells (EC), MRP3 and Pgp expression mainly in ECs and GST-π predominantly in tumor cells (TC). MRP1 and MRP3 were more expressed in high grade glioma (HGG) than in LGG. In 6 cases we could compare tumor and periphery detecting the same MRP1 and Pgp expression, while MRP3 was mainly expressed in the tumor. We observed a trend of a better outcome in seizure control associated with a lower expression of MRP1 and MRP3. MRP3 was statistically more expressed in TCs of HGG than LGG (p = 0.0401) and more expressed in tumor than in periphery, in agreement with recent works that identify MRP3 as a potential target in GBM. Moreover, MRP3 was investigated in association with refractory epilepsy for the first time in our study and it was less expressed in patients with complete response to AEDs (p = 0.0550). Our preliminary data show an association between multidrug resistance transporters and refractory epilepsy in glioma.
Insights
Multidrug resistance transporters like MRP1 and MRP3 are linked to refractory epilepsy in glioma patients. Lower expression of these transporters may correlate with better seizure control, suggesting potential therapeutic targets.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Pharmacology
Background:
- Epilepsy is common in glioma, with anti-epileptic drug (AED) resistance in ~20% of patients.
- Refractory epilepsy in glioma is complex, involving multidrug resistance (MDR) phenotypes.
- Key MDR-associated proteins include P-glycoprotein (Pgp) and glutathione-S-transferase-π (GST-π).
Purpose of the Study:
- To investigate the expression of Pgp, MRP1, MRP3, and GST-π in glioma patients with epilepsy.
- To explore the association between these transporters and refractory epilepsy.
- To evaluate the potential of these transporters as therapeutic targets.
Main Methods:
- Analysis of surgical specimens from 35 glioma patients with epilepsy.
- Immunohistochemical evaluation of Pgp, MRP1, MRP3, and GST-π expression in tumor cells (TC) and endothelial cells (EC).
- Correlation of transporter expression with glioma grade and response to AEDs.
Main Results:
- MRP1 expressed in TC and EC; MRP3 and Pgp mainly in EC; GST-π predominantly in TC.
- MRP1 and MRP3 expression higher in high-grade glioma (HGG) than low-grade glioma (LGG).
- Lower MRP1 and MRP3 expression trended with better seizure control; MRP3 higher in HGG TCs and tumors vs. periphery.
- MRP3 showed lower expression in patients with complete AED response, suggesting a link to refractory epilepsy.
Conclusions:
- Multidrug resistance transporters are associated with refractory epilepsy in glioma.
- MRP3, highly expressed in HGG and tumors, is a potential therapeutic target.
- Further research into these transporters may improve epilepsy management in glioma patients.
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