Maqsood Maryam1,2, Sang Loon Tan3, Karen Ann Crouse3, Mohamed Ibrahim Mohamed Tahir3, Hui-Yee Chee2. 1. Faculty of Natural Sciences, Sardar Bahadur Khan Women University, Balochistan, Quetta Pakistan. 2. Department of Medical Microbiology and Parasitology, Faculty of Medicine and Health Sciences, Universiti Putra Malaysia, SerdangSelangor Malaysia. 3. Department of Chemistry, Faculty of Science, Universiti Putra Malaysia, Serdang, Selangor Malaysia.
Abstract
A series of Schiff bases have been successfully synthesized through the acid-catalyzed condensation of S-substituted dithiocarbazates and three enantiomerically pure monoterpenes, (1 R )-(+)-camphor, (1 S )-(-)-camphor, (1 R )-(-)-camphorquinone, (1 S )-(+)-camphorquinone, ( R )-(-)-carvone and ( S )-(+)-carvone. Spectroscopic results revealed that the Schiff bases containing camphor or carvone likely adopted an E -configuration along the characteristic imine bond while those containing camphorquinone assumed a Z -configuration. The antidengue potential of these compounds was evaluated based on DENV 2 caused cytopathic effect (CPE) reduction-based in vitro evaluation. The compounds were validated through secondary foci forming unit reduction assay (FFURA). Compounds were also tested for their cytotoxicity against Vero cells. The compounds showed variable degrees of antiviral activity with the camphor compounds displaying the highest antidengue potential. The enantiomers of the compounds behaved almost similarly during the antiviral evaluation.
A series of Schiff bases have been successfully synthesized through the acid-catalyzed condensation of n class="Chemical">S-substituted dithiocarbazates and three enantiomerically pure monoterpenes, (1 R )-(+)-camphor, (1 S )-(-)-camphor, (1 R )-(-)-camphorquinone, (1 S )-(+)-camphorquinone, ( R )-(-)-carvone and ( S )-(+)-carvone. Spectroscopic results revealed that the Schiff bases containing camphor or carvone likely adopted an E -configuration along the characteristic imine bond while those containing camphorquinone assumed a Z -configuration. The antidengue potential of these compounds was evaluated based on DENV 2 caused cytopathic effect (CPE) reduction-based in vitro evaluation. The compounds were validated through secondary foci forming unit reduction assay (FFURA). Compounds were also tested for their cytotoxicity against Vero cells. The compounds showed variable degrees of antiviral activity with the camphor compounds displaying the highest antidengue potential. The enantiomers of the compounds behaved almost similarly during the antiviral evaluation.
Authors: Ahmed M Alafeefy; Adnan A Kadi; Omar A Al-Deeb; Kamal E H El-Tahir; Nabila A Al-Jaber Journal: Eur J Med Chem Date: 2010-08-12 Impact factor: 6.514
Authors: Zumira A Carneiro; Pedro I da S Maia; Renata Sesti-Costa; Carla D Lopes; Tatiana A Pereira; Cristiane M Milanezi; Marcelo A Pereira da Silva; Renata F V Lopez; João S Silva; Victor M Deflon Journal: PLoS Negl Trop Dis Date: 2014-05-08