Faraone_2021_Phytochemistry_187_112781

Reference

Title : Screening of in vitro and in silico alpha-amylase, alpha-glucosidase, and lipase inhibitory activity of oxyprenylated natural compounds and semisynthetic derivatives - Faraone_2021_Phytochemistry_187_112781
Author(s) : Faraone I , Russo D , Genovese S , Milella L , Monne M , Epifano F , Fiorito S
Ref : Phytochemistry , 187 :112781 , 2021
Abstract :

Metabolic syndrome has several characteristic manifestations, including insulin resistance and dyslipidaemia, that demand therapeutic approaches, such as the inhibition of enzymes involved in nutrient absorption and digestion.This study aimed to evaluate the potential pharmacological use of natural compounds widespread in the plant kingdom and their semisynthetic compounds against target enzymes. Twenty-three oxyprenylated natural compoundswere investigated for their ability to inhibit alpha-amylase, alpha-glucosidase, and pancreatic lipase enzymes by in vitro assays. Moreover, in silico molecular docking was performed to analyse their binding capabilities into 3D structures. Farnesyloxyferulic acid, geranyloxyvanillic acid, nelumal A, and geranyloxyferulic acid showed the highest inhibition activity in all three in vitro enzyme assays. Moreover, in silico molecular docking of these four compounds was used to analyse their possible binding in 3D structures of the investigated enzymes. The results indicate that these compounds have considerable therapeutic potential for the treatment of metabolic syndrome, and further studies are warranted for their pharmacological development.

PubMedSearch : Faraone_2021_Phytochemistry_187_112781
PubMedID: 33930668

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Citations formats

Faraone I, Russo D, Genovese S, Milella L, Monne M, Epifano F, Fiorito S (2021)
Screening of in vitro and in silico alpha-amylase, alpha-glucosidase, and lipase inhibitory activity of oxyprenylated natural compounds and semisynthetic derivatives
Phytochemistry 187 :112781

Faraone I, Russo D, Genovese S, Milella L, Monne M, Epifano F, Fiorito S (2021)
Phytochemistry 187 :112781