Exploring the intricate process of pathogenesis - how microbes like bacteria, viruses, and fungi cause disease through multi-stage campaigns within the human body.
Exploring how pathogens exploit reactive oxygen species (ROS) in infections and the long-term consequences on human health through redox biology.
Explore how zinc and metallothionein form a dynamic defense system protecting liver cells from oxidative damage and their potential clinical applications.
Exploring the revolutionary graphene-zinc sulfide nanocomposites paired with hemoglobin creating next-generation electrochemical biosensors for medical diagnostics.
Explore the paradoxical journey of nitric oxide (NO) from its toxic origins in Earth's early atmosphere to its essential roles in human physiology and modern medicine.
Exploring the structural and functional characterization of redox-regulating proteins in trees and their implications for forest science and climate resilience.
Exploring the seven critical challenges in electrochemical research that will shape our sustainable future from energy storage to space exploration.
Breakthroughs in photosynthesis research from gene-edited super plants to artificial leaves are revolutionizing food security, bioenergy, and climate change solutions.
Exploring how materials chemistry is leveraging ferroptosis to combat drug-resistant and metastatic cancers through innovative therapeutic approaches.
Exploring how nanosensors using carbon nanotubes, nanopores and nanoclusters are transforming detection capabilities at molecular levels