Redox Homeostasis and Prospects for Therapeutic Targeting in Neurodegenerative Disorders

Author:

Akanji Musbau Adewumi1ORCID,Rotimi Damilare Emmanuel23,Elebiyo Tobiloba Christiana3,Awakan Oluwakemi Josephine23ORCID,Adeyemi Oluyomi Stephen23ORCID

Affiliation:

1. Department of Biochemistry, University of Ilorin, Ilorin, Nigeria

2. Landmark University SDG 3 (Good Health and Well-being Research Group), PMB 1001, Omu-Aran 251101, Nigeria

3. Department of Biochemistry, Medicinal Biochemistry, Nanomedicine & Toxicology Laboratory, Landmark University, KM 4 Ipetu Road, Omu-Aran 251101, Kwara State, Nigeria

Abstract

Reactive species, such as those of oxygen, nitrogen, and sulfur, are considered part of normal cellular metabolism and play significant roles that can impact several signaling processes in ways that lead to either cellular sustenance, protection, or damage. Cellular redox processes involve a balance in the production of reactive species (RS) and their removal because redox imbalance may facilitate oxidative damage. Physiologically, redox homeostasis is essential for the maintenance of many cellular processes. RS may serve as signaling molecules or cause oxidative cellular damage depending on the delicate equilibrium between RS production and their efficient removal through the use of enzymatic or nonenzymatic cellular mechanisms. Moreover, accumulating evidence suggests that redox imbalance plays a significant role in the progression of several neurodegenerative diseases. For example, studies have shown that redox imbalance in the brain mediates neurodegeneration and alters normal cytoprotective responses to stress. Therefore, this review describes redox homeostasis in neurodegenerative diseases with a focus on Alzheimer’s and Parkinson’s disease. A clearer understanding of the redox-regulated processes in neurodegenerative disorders may afford opportunities for newer therapeutic strategies.

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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