Research Journal of Pharmacy and Technology
SCOPUS
  • Year: 2026
  • Volume: 19
  • Issue: 2

Neuroprotective effects of Physical Activity in an Animal Model of Parkinson's Disease Induced by Paraquat and Maneb in Wistar Rats

  • Author:
  • Youssef El Mekhlouf1,2,3,*, Amal Dimaoui1, Abdessamad Ittorahou1, Aissam EL Aliani2, Ahmed Moussaif2, Abdelghani Iddar2, Aboubaker El Hessni1, Mohammed El Mzibri2, Abdellatif Bouayyadi2, Nezha Bouhaddou3, Abdelhalem Mesfioui1
  • Total Page Count: 9
  • Page Number: 683 to 691

1Biology and Health Laboratory – Faculty of Sciences, Ibn Tofail University – Kenitra – Morocco

2Division of Life Sciences – National Center for Energy Sciences and Nuclear Techniques – Rabat – Morocco

3Physiology and Physiopathology Research Team, Faculty of Sciences, Mohammed V University in Rabat – Morocco

*Corresponding Author E-mail: youssef.makhlouf23@gmail.com

Abstract

Neurodegenerative Parkinson's disease (PD) due to loss of nigrostriatal dopaminergic (DA) cells is strongly associated with non-motor and primarily motor symptoms. Therefore, a non-pharmacological approach based on physical exercise could be used to reduce the risk of PD incidence. The aim of the present study was to test the neuroprotective effect of physical activity (PA) in an animal model of Parkinson's disease in the Wistar rat. The animal model of PD was induced in rats by twice-weekly (i.p.) intraperitoneal injection of a mixture of 5 mg/kg parquat (PQ) and 0.05 mg/kg maneb (MB) for 6 weeks. Two groups of six rats each were subjected to PD induction. One of the two groups and a third group were subjected to exercise and forced to undergo rotarod gait training for 4 weeks. A fourth control group received only the vehicle solution (distilled water (dw) + dimethyl sulfoxide (DMSO) à 0,1 %). Catalepsy, akinesia and motor coordination were measured by the catalepsy bar test (CBT), beam walking test (BWT) and rotarod, respectively, to assess motor impairments. Non-motor impairments (anxiety levels, depressive states and cognitive performance) were assessed using the elevated plus maze (EPM), forced swim test (FST) and the object recognition test (NOR), respectively. Biochemical parameters malondialdehyde (MDA), catalase (CAT), superoxide dismutase SOD) were assessed to determine the level of oxidative stress (OS) in the prefrontal cortex (PFC) and striatum (ST). Our results show that rotarod walking exercise, a motor learning modality, improves motor disorders (muscle rigidity, akinesia, and motor coordination) and reduces anxiety and depressive behaviors in rats with improved memory abilities. In addition, exercise attenuates markers of PQMB-induced oxidation.

Keywords

Parkinson's disease, Physical Activity, Wistar rats, Motor symptoms, Non-motor symptoms