Publications by authors named "Talha Islam"

Article Synopsis
  • Dihydrofolate reductase (DHFR) is an important enzyme linked to folate metabolism, making it a key target for cancer and antimicrobial treatments.
  • Researchers synthesized a series of 4-pyrrolidine-based thiosemicarbazones and tested their ability to inhibit DHFR, finding that these compounds showed significant inhibitory effects with IC values ranging from 12.37 to 54.10 μM, with compound 5d being the most effective.
  • The study included molecular docking and ADME analysis to explore how these compounds bind to DHFR and to identify those with desirable properties for the development of new therapeutic agents.
View Article and Find Full Text PDF

Dihydrofolate reductase (DHFR), an essential enzyme in folate metabolism, presents a promising target for drug development against various diseases, including cancer and tuberculosis. Herein, we present an integrated approach combining in vitro biochemical assays with in silico molecular docking analysis to evaluate the inhibitory potential of 4-piperidine-based thiosemicarbazones 5(a-s) against DHFR. In our in vitro study, a novel series of 4-piperidine-based thiosemicarbazones 5(a-s) were assessed for their inhibitory activity against DHFR enzyme.

View Article and Find Full Text PDF

Tyrosinase inhibitors are studied in the cosmetics and pharmaceutical sectors as tyrosinase enzyme is involved in the biosynthesis and regulation of melanin, hence these inhibitors are beneficial for the management of melanogenesis and hyperpigmentation-related disorders. In the current work, a novel series of diphenyl urea derivatives containing a halo-pyridine moiety (5a-t) was synthesized via a multi-step synthesis. In vitro, tyrosinase inhibitory assay results showed that, except for two compounds, the derivatives were excellent inhibitors of human tyrosinase.

View Article and Find Full Text PDF