The potential role of brain renin‐angiotensin system in the neuropathology of Parkinson disease: Friend, foe or turncoat?

Author:

Al‐Qahtani Zainah1ORCID,Al‐kuraishy Hayder M.2,Al‐Gareeb Ali I.2,Albuhadily Ali K.2,Ali Naif H.3,Alexiou Athanasios4567ORCID,Papadakis Marios8,Saad Hebatallah M.9ORCID,Batiha Gaber El‐Saber10

Affiliation:

1. Neurology Section, Internal Medicine Department, College of Medicine King khaled university Abha Saudi Arabia

2. Clinical pharmacology and medicine, college of medicine Mustansiriyah University Baghdad Iraq

3. Department of Internal Medicine, Medical College Najran University Najran Saudi Arabia

4. University Centre for Research & Development Chandigarh University Mohali India

5. Department of Science and Engineering Novel Global Community Educational Foundation Hebersham New South Wales Australia

6. Department of Research & Development, Funogen Athens Greece

7. Department of Research & Development AFNP Med Wien Austria

8. Department of Surgery II University Hospital Witten‐Herdecke Wuppertal Germany

9. Department of Pathology, Faculty of Veterinary Medicine Matrouh University Matrouh Egypt

10. Department of Pharmacology and Therapeutics, Faculty of Veterinary Medicine Damanhour University Damanhour AlBeheira Egypt

Abstract

AbstractParkinson disease (PD) is one of the most common neurodegenerative diseases of the brain. Of note, brain renin‐angiotensin system (RAS) is intricate in the PD neuropathology through modulation of oxidative stress, mitochondrial dysfunction and neuroinflammation. Therefore, modulation of brain RAS by angiotensin receptor blockers (ARBs) and angiotensin‐converting enzyme inhibitors (ACEIs) may be effective in reducing the risk and PD neuropathology. It has been shown that all components including the peptides and enzymes of the RAS are present in the different brain areas. Brain RAS plays a critical role in the regulation of memory and cognitive function, and in the controlling of central blood pressure. However, exaggerated brain RAS is implicated in the pathogenesis of different neurodegenerative diseases including PD. Two well‐known pathways of brain RAS are recognized including; the classical pathway which is mainly mediated by AngII/AT1R has detrimental effects. Conversely, the non‐classical pathway which is mostly mediated by ACE2/Ang1‐7/MASR and AngII/AT2R has beneficial effects against PD neuropathology. Exaggerated brain RAS affects the viability of dopaminergic neurons. However, the fundamental mechanism of brain RAS in PD neuropathology was not fully elucidated. Consequently, the purpose of this review is to disclose the mechanistic role of RAS in in the pathogenesis of PD. In addition, we try to revise how the ACEIs and ARBs can be developed for therapeutics in PD.

Publisher

Wiley

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