Arcone_2023_Molecules_28_

Reference

Title : Inhibition of Enzymes Involved in Neurodegenerative Disorders and Abeta(1-40) Aggregation by Citrus limon Peel Polyphenol Extract - Arcone_2023_Molecules_28_
Author(s) : Arcone R , D'Errico A , Nasso R , Rullo R , Poli A , Di Donato P , Masullo M
Ref : Molecules , 28 : , 2023
Abstract :

Alzheimer's (AD) and Parkinson's diseases (PD) are multifactorial neurogenerative disorders of the Central Nervous System causing severe cognitive and motor deficits in elderly people. Because treatment of AD and PD by synthetic drugs alleviates the symptoms often inducing side effects, many studies have aimed to find neuroprotective properties of diet polyphenols, compounds known to act on different cell signaling pathways. In this article, we analyzed the effect of polyphenols obtained from the agro-food industry waste of Citrus limon peel (LPE) on key enzymes of cholinergic and aminergic neurotransmission, such as butyryl cholinesterase (BuChE) and monoamine oxidases (MAO)-A/B, on Abeta(1-40) aggregation and on superoxide dismutase (SOD) 1/2 that affect oxidative stress. In our in vitro assays, LPE acts as an enzyme inhibitor on BuChE (IC(50) ~ 73 microM), MAO-A/B (IC(50) ~ 80 microM), SOD 1/2 (IC(50) ~ 10-20 microM) and interferes with Abeta(1-40) peptide aggregation (IC(50) ~ 170 microM). These results demonstrate that LPE behaves as a multitargeting agent against key factors of AD and PD by inhibiting to various extents BuChE, MAOs, and SODs and reducing Abeta-fibril aggregation. Therefore, LPE is a promising candidate for the prevention and management of AD and PD symptoms in combination with pharmacological therapies.

PubMedSearch : Arcone_2023_Molecules_28_
PubMedID: 37687161

Related information

Citations formats

Arcone R, D'Errico A, Nasso R, Rullo R, Poli A, Di Donato P, Masullo M (2023)
Inhibition of Enzymes Involved in Neurodegenerative Disorders and Abeta(1-40) Aggregation by Citrus limon Peel Polyphenol Extract
Molecules 28 :

Arcone R, D'Errico A, Nasso R, Rullo R, Poli A, Di Donato P, Masullo M (2023)
Molecules 28 :