1,5-Benzoheteroazepines through eco-friendly general condensation reactions (original) (raw)

1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents

Molecules

Considering the importance of benzothiazepine pharmacophore, an attempt was carried out to synthesize novel 1,5-benzothiazepine derivatives using polyethylene glycol-400 (PEG-400)-mediated pathways. Initially, different chalcones were synthesized and then subjected to a cyclization step with benzothiazepine in the presence of bleaching clay and PEG-400. PEG-400-mediated synthesis resulted in a yield of more than 95% in less than an hour of reaction time. Synthesized compounds 2a–2j were investigated for their in vitro cytotoxic activity. Moreover, the same compounds were subjected to systematic in silico screening for the identification of target proteins such as human adenosine kinase, glycogen synthase kinase-3β, and human mitogen-activated protein kinase 1. The compounds showed promising results in cytotoxicity assays; among the tested compounds, 2c showed the most potent cytotoxic activity in the liver cancer cell line Hep G-2, with an IC50 of 3.29 ± 0.15 µM, whereas the standar...

Azines and azoles: CXXIII. Three-component condensation of 5-acetyl-4-hydroxy-3,6-dihydro-2H-1,3-thiazine-2,6-dione with o-phenylenediamine and carbonyl compounds as a convenient synthesis of substituted 1,5-benzodiazepines

Russian Journal of General Chemistry, 2006

ABSTRACT Readily accessible 5-acetyl-4-hydroxy-3,6-dihydro-2H-1,3-thiazine-2,6-dione reacted with an equimolar amount of o-phenylenediamine under mild conditions (propan-2-ol, 5 min, reflux) to give the corresponding Schiff base. Reactions of the latter with aldehydes and ketones in propan-1-ol in the presence of a catalytic amount of trifluoroacetic acid or in acetic acid led to the formation of 4-hydroxy-5-(2-R-2,3-dihydro-1H-1,5-benzodiazepin-4-yl)-2H-1,3-thiazine-2,6-diones.

Synthesis of 1,5-Benzodiazepine and Its Derivatives by Condensation Reaction Using H-MCM-22 as Catalyst

Journal of Biomedicine and Biotechnology, 2012

A simple and versatile method for the synthesis of 1,5-benzodiazepines is via condensation of o-phenylenediamines (OPDA) and ketones in the presence of catalytic amount of H-MCM-22 using acetonitrile as solvent at room temperature. In all the cases, the reactions are highly selective and are completed within 1–3 h. The method is applicable to both cyclic and acyclic ketones without significant differences. The reaction proceeds efficiently under ambient conditions with good-to-excellent yields.

Eco-friendly Synthesis: A greener route preparation of new 1, 5-benzodiazepines and its antimicrobial activity

A simple, efficient, single step and environmentally benign synthesis of a new series of pyrazole containing 1, 5-benzodiazepines was described here by the condensation of pyrazolone with o-phenylenediamine using piperidine in polyethylene glycol (PEG-400) as a reaction solvent. The advantages of this protocol are mild reaction condition, easy work-up, excellent yield, and avoidance of volatile organic solvent. Furthermore, these newly synthesized compounds were analyzed by spectrum and screened for their antimicrobial activity.