Title of article :
Expressional Study of Permeability Glycoprotein and Multidrug Resistance Protein 1 in Drug-resistant Mesial Temporal Lobe Epilepsy
Author/Authors :
Kaur ، Mandeep Department of Anatomy - Institute of Medical Education and Research , Gupta ، Tulika Department of Anatomy - Institute of Medical Education and Research , Gupta ، Mili Department of Biochemistry - Singh Judge Institute of Dental Sciences and Hospital - Panjab University , Singla ، Navneet Department of Neurosurgery - Institute of Medical Education and Research , Kharbanda ، Parampreet S Department of Neurology - Institute of Medical Education and Research , Bansal ، Yogender Singh Department of Forensic Medicine - Institute of Medical Education and Research , Sahni ، Daisy Department of Anatomy - Institute of Medical Education and Research , Radotra ، Bishan Das Department of Histopathology - Institute of Medical Education and Research , Gupta ، Sunil Kumar Department of Neurosurgery - Institute of Medical Education and Research
From page :
615
To page :
630
Abstract :
Introduction: About 30% of patients with epilepsy do not respond to anti-epileptic drugs, leading to refractory seizures. The pathogenesis of drug-resistance in mesial temporal lobe epilepsy (MTLE) is not completely understood. Increased activity of drug-efflux transporters might be involved, resulting in subclinical concentrations of the drug at the target site. The major drug-efflux transporters are permeability glycoprotein (P-gp) and multidrug-resistance associated protein-1 (MRP-1). The major drawback so far is the expressional analysis of transporters in equal numbers of drug-resistant epileptic tissue and age-matched non-epileptic tissue. Methods: We have studied P-gp and MRP-1 drug-efflux transporters in the sclerotic hippocampal tissues resected from the epilepsy surgery patients (n=15) and compared their expression profile with the tissues resected from non-epileptic autopsy cases (n=15). Results: Statistically significant over expression of both P-gp (P #60;0.0001) and MRP-1 (P=0.01) at gene and protein levels were found in the MTLE cases. The fold change of P-gp was more pronounced than MRP-1. Immunohistochemistry of the patient group showed increased immunoreactivity of P-gp at blood-brain barrier and increased reactivity of MRP-1 in the parenchyma. The results were confirmed by confocal immunofluorescence microscopy. Conclusion: Our results suggested that P-gp in association with MRP-1 might be responsible for the multi-drug resistance in epilepsy. P-gp and MRP-1 could be important determinants of bio availability and tissue distribution of anti-epileptic drugs in the brain which can pharmacologically inhibited to achieve optimal drug penetration to target site.
Keywords :
Drug , efflux transporters , Drug , resistant epilepsy , Mesial temporal lobe epilepsy (MTLE) , Permeability glycoprotein (P , gp) , Multi , drug resistance 1 (MDR1) , Multidrug resistance protein 1 (MRP1)
Journal title :
Basic and Clinical Neuroscience
Journal title :
Basic and Clinical Neuroscience
Record number :
2753765
Link To Document :
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