Secci_2019_J.Enzyme.Inhib.Med.Chem_34_597

Reference

Title : 4-(3-Nitrophenyl)thiazol-2-ylhydrazone derivatives as antioxidants and selective hMAO-B inhibitors: synthesis, biological activity and computational analysis - Secci_2019_J.Enzyme.Inhib.Med.Chem_34_597
Author(s) : Secci D , Carradori S , Petzer A , Guglielmi P , D'Ascenzio M , Chimenti P , Bagetta D , Alcaro S , Zengin G , Petzer JP , Ortuso F
Ref : J Enzyme Inhib Med Chem , 34 :597 , 2019
Abstract :

A new series of 4-(3-nitrophenyl)thiazol-2-ylhydrazone derivatives were designed, synthesised, and evaluated to assess their inhibitory effect on the human monoamine oxidase (hMAO) A and B isoforms. Different (un)substituted (hetero)aromatic substituents were linked to N1 of the hydrazone in order to establish robust structure-activity relationships. The results of the biological testing demonstrated that the presence of the hydrazothiazole nucleus bearing at C4 a phenyl ring functionalised at the meta position with a nitro group represents an important pharmacophoric feature to obtain selective and reversible human MAO-B inhibition for the treatment of neurodegenerative disorders. In addition, the most potent and selective MAO-B inhibitors were evaluated in silico as potential cholinesterase (AChE/BuChE) inhibitors and in vitro for antioxidant activities. The results obtained from molecular modelling studies provided insight into the multiple interactions and structural requirements for the reported MAO inhibitory properties.

PubMedSearch : Secci_2019_J.Enzyme.Inhib.Med.Chem_34_597
PubMedID: 30727777

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Citations formats

Secci D, Carradori S, Petzer A, Guglielmi P, D'Ascenzio M, Chimenti P, Bagetta D, Alcaro S, Zengin G, Petzer JP, Ortuso F (2019)
4-(3-Nitrophenyl)thiazol-2-ylhydrazone derivatives as antioxidants and selective hMAO-B inhibitors: synthesis, biological activity and computational analysis
J Enzyme Inhib Med Chem 34 :597

Secci D, Carradori S, Petzer A, Guglielmi P, D'Ascenzio M, Chimenti P, Bagetta D, Alcaro S, Zengin G, Petzer JP, Ortuso F (2019)
J Enzyme Inhib Med Chem 34 :597