Copper-mediated β-amyloid toxicity and its chelation therapy in Alzheimer's disease

Author:

Singh Sandeep Kumar1ORCID,Balendra Vyshnavy2,Obaid Ahmad A3,Esposto Josephine4,Tikhonova Maria A5,Gautam Naveen Kumar6,Poeggeler Burkhard7

Affiliation:

1. Indian Scientific Education and Technology Foundation , Lucknow, 226002, India

2. Saint James School of Medicine , Park Ridge, IL 60068, USA

3. Laboratory Medicine Department, Faculty of Applied Medical Sciences, Umm Al-Qura University , Makkah, Saudi Arabia

4. Department of Environmental and Life Sciences, Trent University , Peterborough, ON K9L 0G2, Canada

5. Laboratory of the Experimental Models of Neurodegenerative Processes, Scientific Research Institute of Neurosciences and Medicine , Timakov st., 4, Novosibirsk, 630117, Russia

6. Department of Urology and Renal Transplantation, Sanjay Gandhi Post Graduate Institute of Medical Sciences , Raebareli Road, Lucknow, Uttar Pradesh 226014, India

7. Johann-Friedrich-Blumenbach-Institute for Zoology & Anthropology, Faculty of Biology and Psychology, Georg-August-University of Göttingen , Am Türmchen 3, 33332 Gütersloh, Germany

Abstract

Abstract The link between bio-metals, Alzheimer's disease (AD), and its associated protein, amyloid-β (Aβ), is very complex and one of the most studied aspects currently. Alzheimer's disease, a progressive neurodegenerative disease, is proposed to occurs due to the misfolding and aggregation of Aβ. Dyshomeostasis of metal ions and their interaction with Aβ has largely been implicated in AD. Copper plays a crucial role in amyloid-β toxicity, and AD development potentially occurs through direct interaction with the copper-binding motif of APP and different amino acid residues of Aβ. Previous reports suggest that high levels of copper accumulation in the AD brain result in modulation of toxic Aβ peptide levels, implicating the role of copper in the pathophysiology of AD. In this review, we explore the possible mode of copper ion interaction with Aβ, which accelerates the kinetics of fibril formation and promote amyloid-β mediated cell toxicity in Alzheimer's disease and the potential use of various copper chelators in the prevention of copper-mediated Aβ toxicity.

Funder

Indian Council of Medical Research

Publisher

Oxford University Press (OUP)

Subject

Metals and Alloys,Biochemistry,Biomaterials,Biophysics,Chemistry (miscellaneous)

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