Manganese chloride (MnCl2) induced novel model of Parkinson’s disease in adult Zebrafish; Involvement of oxidative stress, neuroinflammation and apoptosis pathway

Faculty Pharmacy Year: 2022
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Biomedicine & Pharmacotherapy ELSEVIER Volume:
Keywords : Manganese chloride (MnCl2) induced novel model    
Abstract:
Parkinson’s disease (PD) is a progressive neurodegenerative disorder imposing a severe health and socioeconomic burden worldwide. Existing pharmacological approaches for developing PD are poorly developed and do not represent all the characteristics of disease pathology. Developing cost-effective, reliable Zebrafish (ZF) model will meet this gap. The present study was conceived to develop a reliable PD model in the ZF using manganese chloride (MnCl2). Here, we report that chronic exposure to 2 mM MnCl2 for 21 days produced non-motor and motor PD-like symptoms in adult ZF. Compared with control fish, MnCl2-treated fish showed reduced locomotory activity, indicating a deficit in motor function. In the light-dark box test, MnCl2-treated fish exhibited anxiety and depression-like behavior. MnCl2-treated fish exhibited a less olfactory preference for amino acids, indicating olfactory dysfunction. These behavioral symptoms were associated with decreased dopamine and increased DOPAC levels. Furthermore, oxidative stress-mediated apoptotic pathway, decreased brain derived neurotropic factor (BDNF) and increased pro-inflammatory cytokines levels were observed upon chronic exposure to MnCl2 in the brain of ZF. Thus, MnCl2-induced PD in ZF can be a cost-effective PD model in the drug discovery process. Moreover, this model could be potentially utilized to investigate the molecular pathways underlying the multifaceted pathophysiology which leads to PD using relatively inexpensive species. MnCl2 being heavy metal may have other side effects in addition to neurotoxicity. Our model recapitulates most of the hallmarks of PD, but not all pathological processes are involved. Future studies are required to recapitulate the complete pathophysiology of PD.
   
     
 
       

Author Related Publications

  • Amr Selim Ahmed Ali Abu Lila, "Activation of TLR9 by incorporated pDNA within PEG-coated lipoplex enhances anti-PEG IgM production", nature, 2014 More
  • Amr Selim Ahmed Ali Abu Lila, "Treatment of pulmonary arterial hypertension by vardenafil-solid dispersion lozenges as a potential alternative drug delivery system", Elsevier, 2020 More
  • Amr Selim Ahmed Ali Abu Lila, "Doxorubicin Embedded into Nanofibrillated Bacterial Cellulose (NFBC) Produces a Promising Therapeutic Outcome for Peritoneally Metastatic Gastric Cancer in Mice Models via Intraperitoneal Direct Injection", MDPI, 2021 More
  • Amr Selim Ahmed Ali Abu Lila, "Efficacy of SPG-ODN 1826 Nanovehicles in Inducing M1 Phenotype through TLR-9 Activation in Murine Alveolar J774A.1 Cells: Plausible Nano-Immunotherapy for Lung Carcinoma", MDPI, 2021 More
  • Amr Selim Ahmed Ali Abu Lila, "Not Only Antimicrobial: Metronidazole Mitigates the Virulence of Proteus mirabilis Isolated from Macerated Diabetic Foot Ulcer", MDPI, 2021 More

Department Related Publications

  • Ahmed Samer Zedan, "Physicochemical characterization and dissolution properties of rofecoxib complexes with cyclodextrins", لايوجد, 1900 More
  • Ahmed Samer Zedan, "Preparation and characterization of rofecoxib solid dispersions with polyethylene glycols and urea", لايوجد, 1900 More
  • Mahmoud Mokhtar AhmedIbrahiem, "Effect of some formulation parameters on flurbiprofen encapsulation and release rates of niosomes prepared from proniosomes", لايوجد, 1900 More
  • Amr Selim Ahmed Ali Abu Lila, "Use of polyglycerol (PG), instead of polyethylene glycol (PEG), prevents induction of the accelerated blood clearance phenomenon against long-circulating liposomes upon repeated administration", Elsevier, 2013 More
  • Amr Selim Ahmed Ali Abu Lila, "Tumor-type-dependent vascular permeability constitutes a potential impediment to the therapeutic efficacy of liposomal oxaliplatin", Elsevier, 2012 More
Tweet