Related Experiment Video
Updated: Aug 5, 2026

Pentylenetetrazole-Induced Kindling Mouse Model
Published on: June 12, 2018
ML-171 Attenuates Pentylenetetrazole-Associated Oxidative and Apoptotic Injury Without Robust Suppression of Seizure
Ahmet Ozan Kaleci1, Ahmet Altun1, Ahmet Şevki Taşkıran2
1Department of Medical Pharmacology, Faculty of Medicine, Sivas Cumhuriyet University, 58140 Sivas, Turkey.
Abstract:
Oxidative stress and apoptosis contribute to seizure-associated neuronal injury, but the effects of ML-171, a pharmacological NOX-1 inhibitor, on PTZ-associated oxidative and apoptotic injury remain insufficiently defined. This study evaluated the effects of the NOX-1 inhibitor ML-171 in pentylenetetrazole (PTZ)-induced cellular and animal models of neuronal injury. SH-SY5Y cells were exposed to PTZ (30 mM, 24 h) after pretreatment with ML-171 or valproic acid (VPA), and cell viability, redox status, apoptosis-related proteins, and Annexin V-based cell death were assessed. Adult male Wistar Albino rats were subjected to PTZ kindling and acutely treated with VPA or ML-171 (0.1, 1, or 10 mg/kg); behavioral seizures, electrocorticographic activity, hippocampal oxidative stress, apoptotic markers, histopathology, and NOX-1 immunoreactivity were evaluated. ML-171 attenuated PTZ-induced cellular injury in SH-SY5Y cells within a restricted concentration window and reduced oxidant burden, oxidative stress index, and apoptotic signaling. In PTZ-kindled rats, ML-171 improved hippocampal oxidative and apoptotic markers but did not robustly suppress behavioral or electrophysiological seizure parameters. Histopathological injury and NOX-1 immunoreactivity showed region- and dose-dependent responses. These findings suggest that ML-171 primarily attenuates PTZ-associated oxidative and apoptotic injury rather than exerting a conventional antiseizure effect.

