144293-92-5Relevant academic research and scientific papers
Acylhydrazones as isoniazid derivatives with multi-target profiles for the treatment of Alzheimer's disease: Radical scavenging, myeloperoxidase/acetylcholinesterase inhibition and biometal chelation
Henriques, Ruan Roberto,Junior, Marcos Antonio de Abreu Lopes,Nogueira, Thayssa Lisboa do Couto,Romeiro, Nelilma Correia,Silva, Leandro Louback da,Farias, André Borges,Quimas, Jo?o Victor Fernandes,Santos, Daniela Corrêa,Souza, Andréa Luzia Ferreira de
, (2020/04/15)
Acylhydrazones 1a-o, derived from isoniazid, were synthesized and evaluated for Myeloperoxidase (MPO) and Acetylcholinesterase (AChE) inhibition, as well as their antioxidant and metal chelating activities, with the purpose of investigating potential multi-target profiles for the treatment of Alzheimer's disease. Synthesized compounds were tested using the 2,2-diphenyl-2-picrylhydrazyl (DPPH) method and 1i, 1j and 1 m showed radical scavenging ability. Compounds 1b, 1 h, 1i, 1 m and 1o inhibited MPO activity (10 μM) at 96.1 ± 5.5%, 90 ± 2.1%, 100.3 ± 1.7%, 80.1 ± 9.4% and 82.2 ± 10.6%, respectively, and only compound 1 m was able to inhibit 54.2 ± 1.7% of AChE activity (100 μM). Docking studies of the most potent compound 1 m were carried out, and the computational results provided the theoretical basis of enzyme inhibition. Furthermore, compound 1 m was able to form complexes with Fe2+ and Zn2+ ions in a 2:1 ligand:metal ratio according to the Job Plot method.
Drug design, synthesis, in vitro and in silico evaluation of selective monoaminoxidase B inhibitors based on 3-acetyl-2-dichlorophenyl-5-aryl-2,3-dihydro-1,3,4-oxadiazole chemical scaffold
Distinto, Simona,Meleddu, Rita,Yanez, Matilde,Cirilli, Roberto,Bianco, Giulia,Sanna, Maria Luisa,Arridu, Antonella,Cossu, Pietro,Cottiglia, Filippo,Faggi, Cristina,Ortuso, Francesco,Alcaro, Stefano,Maccioni, Elias
, p. 542 - 552 (2015/12/30)
With the aim to identify new, potent and selective monoamine oxidase B (MAO-B) inhibitors, molecular interaction field analysis has been applied to a MAO-B complex with 3-acetyl-2,5-diaryl-2,3-dihydro-1,3,4-oxadiazole chemical structure, known as a privileged scaffold for this target. Several compounds displayed potent in vitro activity, exhibiting IC50 values in the medium to low nanomolar range. The enantiomers of most promising derivatives were separated by enantioselective HPLC and in vitro evaluated. Experimental results, according to theoretical drug design, clearly indicated a key role of the ligand stereochemistry in the target recognition/inhibition. In particular the (R)- enantiomers showed the best activity with respect to the (S)- stereoisomer. Finally, docking experiments coupled to molecular dynamics (MD) simulations, were applied for understanding the putative MAO -B binding modes of the new compounds providing detailed information for further structural optimization.
Preparation and antitubercular activities in vitro and in vivo of novel Schiff bases of isoniazid
Hearn, Michael J.,Cynamon, Michael H.,Chen, Michaeline F.,Coppins, Rebecca,Davis, Jessica,Joo-On Kang, Helen,Noble, Abigail,Tu-Sekine, Becky,Terrot, Marianne S.,Trombino, Daniella,Thai, Minh,Webster, Eleanor R.,Wilson, Rebecca
experimental part, p. 4169 - 4178 (2009/12/04)
Structural modification of the frontline antitubercular isonicotinic acid hydrazide (INH) provides lipophilic adaptations (3-46) of the drug in which the hydrazine moiety of the parent compound has been chemically blocked from the deactivating process of N2-acetylation by N-arylaminoacetyl transferases. As a class, these compounds show high levels of activity against Mycobacterium tuberculosis in vitro and in tuberculosis-infected macrophages. They provide strong protection in tuberculosis-infected mice and have low toxicity. With some representatives of this class achieving early peak plasma concentrations approximately three orders of magnitude above minimum inhibitory concentration, they may serve as tools for improving our understanding of INH-based treatment modalities, particularly for those patients chronically underdosed in conventional INH therapy.
Halogenated isoniazid derivatives as possible antitubercular and antineoplastic agents. Note 1
Vigorita,Basile,Zappala,Gabrielli,Pizzimenti
, p. 893 - 906 (2007/10/02)
Halogenated arylhydrazones, 2-aryl-4-thiazolidinones and their 1,1-dioxides containing isoniazid (INI) moieties were prepared and explored for antimicrobial (against bacteria, Candida and mycobacteria) and antitumor activities. None of the tested compound
