Neuroprotective effects of gemfibrozil in neurological disorders: Focus on inflammation and molecular mechanisms

Author:

Ivraghi Mehraveh Sadeghi1,Zamanian Mohammad Yasin23ORCID,Gupta Reena4,Achmad Harun5,Alsaab Hashem O.6,Hjazi Ahmed7,Romero‐Parra Rosario Mireya8,Alwaily Enas R.9,Hussien Beneen M.10,Hakimizadeh Elham11

Affiliation:

1. School of Medicine Qazvin University of Medical Sciences Qazvin Iran

2. Neurophysiology Research Center Hamadan University of Medical Sciences Hamadan Iran

3. Department of Pharmacology and Toxicology, School of Pharmacy Hamadan University of Medical Sciences Hamadan Iran

4. Institute of Pharmaceutical Research, GLA University Mathura India

5. Department of Pediatric Dentistry, Faculty of Dentistry Hasanuddin University Makassar Indonesia

6. Pharmaceutics and Pharmaceutical Technology Taif University Taif Saudi Arabia

7. Department of Medical Laboratory Sciences College of Applied Medical Sciences, Prince Sattam bin Abdulaziz University Al‐Kharj Saudi Arabia

8. Universidad Continental Lima Peru

9. Microbiology Research Group College of Pharmacy, Al‐Ayen University Thi‐Qar Iraq

10. Medical Laboratory Technology Department College of Medical Technology, The Islamic University Najaf Iraq

11. Physiology‐Pharmacology Research Center Research Institute of Basic Medical Sciences, Rafsanjan University of Medical Sciences Rafsanjan Iran

Abstract

AbstractBackgroundGemfibrozil (Gem) is a drug that has been shown to activate PPAR‐α, a nuclear receptor that plays a key role in regulating lipid metabolism. Gem is used to lower the levels of triglycerides and reduce the risk of coronary heart disease in patients. Experimental studies in vitro and in vivo have shown that Gem can prevent or slow the progression of neurological disorders (NDs), including cerebral ischemia (CI), Alzheimer's disease (AD), Parkinson's disease (PD), and multiple sclerosis (MS). Neuroinflammation is known to play a significant role in these disorders.MethodThe literature review for this study was conducted by searching Scopus, Science Direct, PubMed, and Google Scholar databases.ResultThe results of this study show that Gem has neuroprotective effects through several cellular and molecular mechanisms such as: (1) Gem has the ability to upregulate pro‐survival factors (PGC‐1α and TFAM), promoting the survival and function of mitochondria in the brain, (2) Gem strongly inhibits the activation of NF‐κB, AP‐1, and C/EBPβ in cytokine‐stimulated astroglial cells, which are known to increase the expression of iNOS and the production of NO in response to proinflammatory cytokines, (3) Gem protects dopamine neurons in the MPTP mouse model of PD by increasing the expression of PPARα, which in turn stimulates the production of GDNF in astrocytes, (4) Gem reduces amyloid plaque pathology, reduces the activity of glial cells, and improves memory, (5) Gem increases myelin genes expression (MBP and CNPase) via PPAR‐β, and (6) Gem increases hippocampal BDNF to counteract depression.ConclusionAccording to the study, Gem was investigated for its potential therapeutic effect in NDs. Further research is needed to fully understand the therapeutic potential of Gem in NDs.

Publisher

Wiley

Subject

Pharmacology (medical),Physiology (medical),Psychiatry and Mental health,Pharmacology

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1. Special Issue “Neurogenetics in Neurology”;International Journal of Molecular Sciences;2024-01-15

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