Design, synthesis and in silico evaluation of benzoxazepino(7,6-b)quinolines as potential antidiabetic agents
Author:
Publisher
Springer Science and Business Media LLC
Subject
Organic Chemistry,General Pharmacology, Toxicology and Pharmaceutics
Link
https://link.springer.com/content/pdf/10.1007/s00044-020-02606-4.pdf
Reference55 articles.
1. Ai Y, Song F-J, Wang S-T, Sun Q, Sun P-H (2010) Molecular modeling studies on 11h-dibenz [b, e] azepine and dibenz [b, f][1, 4] oxazepine derivatives as potent agonists of the human TRPA1 receptor. Molecules 15(12):9364–9379
2. Anderson KW, Tundel RE, Ikawa T, Altman RA, Buchwald SL (2006) Monodentate phosphines provide highly active catalysts for Pd‐catalyzed C-N bond‐forming reactions of heteroaromatic halides/amines and (H) N‐heterocycles. Ange Chem Int Ed 45(39):6523–6527
3. Apostolidis E, Lee C (2010) In vitro potential of ascophyllum nodosum phenolic antioxidant‐mediated α‐glucosidase and α‐amylase inhibition. J Food Sci 75(3):97–102
4. Bajaj K, Kumar A (2004) Synthesis and pharmacological evaluation of newer substituted benzoxazepine derivatives as potent anticonvulsant agents. Eur J Med Chem 39(4):369–376
5. Beletskaya I, Averin A, Bessmertnykh A, Denat F, Guilard R (2010) Palladium-catalyzed amination in the synthesis of polyazamacrocycles. Rus J Org Chem 46(7):947–967
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