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1.
Arch Pharm (Weinheim) ; 353(9): e2000023, 2020 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-32596826

RESUMEN

A new series of 1,2,3-triazole-(thio)barbituric acid hybrids 8a-n was designed and synthesized on the basis of potent pharmacophores with urease inhibitory activity. Therefore, these compounds were evaluated against Helicobacter pylori urease. The obtained result demonstrated that all the synthesized compounds, 8a-n, were more potent than the standard urease inhibitor, hydroxyurea. Moreover, among them, compounds 8a, 8c-e, 8g,h, and 8k,l exhibited higher urease inhibitory activities than the other standard inhibitor used: thiourea. Docking studies were performed with the synthesized compounds. Furthermore, molecular dynamic simulation of the most potent compounds, 8e and 8l, showed that these compounds interacted with the conserved residues Cys592 and His593, which belong to the active site flap and are essential for enzymatic activity. These interactions have two consequences: (a) blocking the movement of a flap at the entrance of the active site channel and (b) stabilizing the closed active site flap conformation, which significantly reduces the catalytic activity of urease. Calculation of the physicochemical and topological properties of the synthesized compounds 8a-n predicted that all these compounds can be orally active. The ADME prediction of compounds 8a-n was also performed.


Asunto(s)
Inhibidores Enzimáticos/farmacología , Tiobarbitúricos/farmacología , Triazoles/farmacología , Ureasa/antagonistas & inhibidores , Antibacterianos/síntesis química , Antibacterianos/química , Antibacterianos/farmacología , Inhibidores Enzimáticos/síntesis química , Inhibidores Enzimáticos/química , Helicobacter pylori/efectos de los fármacos , Helicobacter pylori/enzimología , Simulación del Acoplamiento Molecular , Simulación de Dinámica Molecular , Relación Estructura-Actividad , Tiobarbitúricos/síntesis química , Tiobarbitúricos/química , Tiourea/farmacología , Triazoles/síntesis química , Triazoles/química
2.
Med Chem ; 15(1): 8-16, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-29807519

RESUMEN

BACKGROUND: Pyrano[3,2-c]quinoline derivatives 6a-n were synthesized via simple two-step reactions and evaluated for their in vitro α-glucosidase inhibitory activity. METHODS: Pyrano[3,2-c]quinoline derivatives 6a-n derivatives were prepared from a two-step reaction: cycloaddition reaction between 1-naphthyl amine 1 and malonic acid 2 to obtain benzo[h]quinoline-2(1H)-one 3 and reaction of 3 with aryl aldehydes 4 and Meldrum's acid 5. The anti- α-glucosidase activity and kinetic study of the synthesized compounds were evaluated using α-glucosidase from Saccharomyces cerevisiae and p-nitrophenyl-a-D-glucopyranoside as substrate. The α-glucosidase inhibitory activity of acarbose was evaluated as positive control. RESULTS: All of the synthesized compounds, except compounds 6i and 6n, showed more inhibitory activity than the standard drug acarbose and were also found to be non-cytotoxic. Among the synthesized compounds, 1-(2-bromophenyl)-1H-benzo[h]pyrano[3,2-c]quinoline-3,12(2H,11H)-dione 6e displayed the highest α-glucosidase inhibitory activity (IC50 = 63.7 ± 0.5 µM). Kinetic study of enzyme inhibition indicated that the most potent compound, 6e, is a non-competitive inhibitor of α-glucosidase with a Ki value of 72 µM. Additionally, based on the Lipinski rule of 5, the synthesized compounds were found to be potential orally active drugs. CONCLUSION: Our results suggest that the synthesized compounds are promising candidates for treating type 2 diabetes.


Asunto(s)
Inhibidores de Glicósido Hidrolasas/química , Hipoglucemiantes/química , Piranos/química , Quinolinas/química , Línea Celular Tumoral , Diabetes Mellitus Tipo 2/tratamiento farmacológico , Pruebas de Enzimas , Glucósidos/química , Inhibidores de Glicósido Hidrolasas/síntesis química , Inhibidores de Glicósido Hidrolasas/toxicidad , Humanos , Hipoglucemiantes/síntesis química , Hipoglucemiantes/toxicidad , Cinética , Piranos/síntesis química , Piranos/toxicidad , Quinolinas/síntesis química , Quinolinas/toxicidad , Saccharomyces cerevisiae/enzimología , alfa-Glucosidasas/química
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