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Research Intern at Molecular Diagnosis
Ask questions about Dhrubo Ahmed Khan's research, publications, and ongoing work
Comprehensive analysis of Quercetin's anti-cancer activities in ROS-mediated cancer and cancer stem cells, highlighting its potential therapeutic applications.
Investigated the advanced implications of nanotechnology in disease control and environmental perspectives, contributing to the understanding of its potential in biomedicine.
Evaluated the in vitro and in silico anti-inflammatory potential of selected medicinal plants from Bangladesh against the cyclooxygenase-II enzyme.
Utilized molecular dynamics simulation and pharmacoinformatic analysis to assess bioactive phytochemicals from Azadirachta indica (Neem) for treating diabetes mellitus.
Evaluated Melongosides as potential inhibitors of the NS2B-NS3 activator-protease of Dengue Virus (Serotype 2) using molecular docking and dynamics simulation.
Revolutionized anti-cancer drug discovery against breast cancer and lung cancer by modification of natural genistein using computational and drug design approaches.
Identified Amazon plant-derived compounds that suppress Dengue NS5 protein using computational drug development and network pharmacology.
Demonstrated amebicidal and antiadhesion activities of Knema retusa extract against Acanthamoeba triangularis T4 genotype on contact lenses, using modeling simulation.
Dhrubo Ahmed Khan is a research intern specializing in computational drug discovery and bioinformatics, with a focus on identifying potential therapeutic compounds for cancer, infectious diseases, and metabolic disorders. His work integrates in silico modeling, molecular dynamics simulations, and network pharmacology to accelerate drug development.
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