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.

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.

Related Concept Videos

Antiepileptic Drugs: GABAergic Pathway Potentiators01:18

Antiepileptic Drugs: GABAergic Pathway Potentiators

γ-aminobutyric acid or GABA, plays a pivotal role as an inhibitory neurotransmitter in the brain. GABA pathway potentiators, also known as GABAergic drugs, are a class of pharmaceutical agents designed to enhance the functioning of the GABAergic system. These medications primarily treat epilepsy, a neurological disorder characterized by recurrent seizures.
The key GABA pathway potentiators used in epilepsy management are as follows.
Benzodiazepines are a well-known class of drugs used for their...
Antiepileptic Drugs: Glutamate Antagonists01:14

Antiepileptic Drugs: Glutamate Antagonists

Glutamate is a fundamental neurotransmitter in the central nervous system, playing a vital role in neuronal communication and various cognitive processes. Glutamate stands as the principal excitatory neurotransmitter in the brain. Its presence is crucial for the communication between neurons, underpinning essential processes such as synaptic transmission, neuronal excitability, and plasticity. These functions are vital for higher-order cognitive processes, including learning and memory. The...
Antiepileptic Drugs: Potassium Channel Activators01:20

Antiepileptic Drugs: Potassium Channel Activators

Ezocgabine or retigabine, an antiepileptic drug of remarkable efficacy, has revolutionized the management of seizures. It is a potassium channel activator, explicitly targeting the family of Q subtype potassium channels. It enhances the transmembrane potassium currents, regulating neuronal excitability. This action stabilizes the resting membrane potential, a pivotal factor in mitigating the hyperexcitability that characterizes epilepsy.
Ezogabine has gained approval as an adjunctive treatment...
Epilepsy and Seizures: Overview01:24

Epilepsy and Seizures: Overview

Epilepsy is a chronic neurological disease marked by recurrent, unpredictable seizures. These seizures are caused by abnormal electrical discharges in the brain, leading to behavior, sensation, or consciousness alterations. They can also cause transient impairment of awareness, interfering with daily activities.
Various factors can trigger epilepsy, including genetic factors, brain damage, metabolic causes, and unknown etiology. Diagnosis of epilepsy involves electroencephalography (EEG), which...
Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein01:20

Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein

Antiepileptic drugs, such as levetiracetam (Keppra) and brivaracetam (Briviact), have emerged as crucial tools in managing epilepsy. These medications exert their therapeutic effects by targeting the synaptic vesicle protein SV2A, a transmembrane glycoprotein primarily found in the brain.
SV2A is a transmembrane glycoprotein located predominantly in the brain, modulating the release of neurotransmitters for neuronal communication. Both levetiracetam and brivaracetam exhibit a high affinity for...