[19]
Massah, A.R.; Dakhilpour, S.S.; Ebrahimi, S.; Naseri, S.; Nateghi, M. Mild and solvent-free synthesis and antibacterial evaluation of novel sulfonamides containing hydroxyl groups. Org. Chem. Res., 2019, 5(1), 25-31.
[78]
Bhuva, H.; Sahu, D.; Shah, B.; Modi, D.C.; Patel, M.B. Biological profile of thiadiazole. Pharmacologyonline, 2011, 1, 528-543.
[115]
Kachaeva, M.; Pilyo, S.; Demydchuk, B.; Prokopenko, V.; Zhirnov, V.; Brovarets, V. 4-Cyano-1, 3-oxazole-5-sulfonamides as novel promising anticancer lead compounds. Int. J. Curr. Res., 2018, 10(5), 69410-69425.
[162]
Shalini, K.; Sharma, P.K.; Kumar, N. Imidazole and its biological activities: A review. Chem. Sin., 2010, 1(3), 36-47.
[194]
Banerjee, R.; Kumar, H.; Banerjee, M. Medicinal significance of furan derivatives: A review. Int. J. Res. Phytochem. Pharmacol., 2015, 5(3), 48-57.
[200]
Meena, L.R.; Sharma, V.S.; Swarnkar, P. Synthesis and biological activity of novel sulfonamides derivatives of various heterocyclic compounds. World Sci. News, 2020, 142, 120-134.
[239]
Mohamed, M.-A.; Mohamed, Y.; Eid, N.M.; Barsoum, F.F. Synthesis and biological evaluation of some heterocyclic compounds. J. Appl. Pharm. Res., 2018, 6(2), 01-15.
[273]
Kumar, M.; Jeyachandran, V. Antioxidant actions of amino chromene products with alkyl tail: Synthesis and characterisation. Int. J. Mod. Agric., 2020, 9(4), 1054-1058.
[284]
Kaur, L.; Singh, M.P. Synthesis and pharmacological evaluation of substituted n-(3-formyl-4-oxo-4h-chromen-2-yl)-n-phenylbenzenesulfonamide and its derivatives. Int. J. Pharm. Sci. Res., 2017, 8(10), 4461-4472.
[286]
Chopra, A.; Singh, L.; Kapoor, V.; Dhingra, R.; Passi, N. Design, synthesis, molecular docking and evaluation of antimicrobial activity of 4-amino-n-[(4-oxo-2-(phenylamino)-4h-chromen-3-yl) methy-lene]benzenesulfonamide and their derivatives. Int. J. Pharm. Sci. Res., 2019, 10, 3073-3084.
[299]
Irfan, A.; Tahir, O.A.; Umer, M.; Ahmad, S.; Kousar, H. A review on biological studies of Quinoxaline derivatives. World J. Pharm. Sci., 2017, 6(2), 11-30.
[310]
Bhati, S. In silico evaluation of inhibitory potential of sulfonamide derivatives against diadenosine tetraphosphate hydrolase as antimalarial agents. Asian J. Pharm., 2017, 11, S47.
[323]
Aswathy, J. A concise review on phthlazine derivatives and its biological activities. J. Pharm. Sci. Res., 2019, 11(7), 2526-2532.
[326]
El-Hashash, M.A.; Guirguis, D.B.; Abdel-Wahed, N.A.; Kadhim, M.A. Synthesis of novel series of phthalazine derivatives with antibacterial and antifungal evaluation. J. Chem. Eng. Process Technol, 2014, 5(4), 1000191-1000196.
[331]
Singh, A.; Kaur, N.; Sharma, S.; Bedi, P. Recent progress in biologically active xanthones. J. Chem. Pharm. Res., 2016, 8, 75-131.