Area of research
Molecular Biology · Oncology
Research interest
Research interests include Biology, Chemistry, DNA damage, Oxidative stress, Dihydroxyacetone, and XRCC1.
Physiological Responses Vary with Molecular Damage Outcomes after Recovery from Constant Light
Maintenance of Physiological and Molecular Processes Through Food Restriction During Offspring Provisioning in the Adult Zebra Finch
Developmental Heat Conditioning Alters the Adult Glucocorticoid Response and DNA Damage While Mediating Lifespan Variation in Zebra Finches (<i>Taeniopygia Castanotis</i>)
Acute exposure to dihydroxyacetone promotes genotoxicity and chromosomal instability in lung, cardiac, and liver cell models
Heat Shock Factor 1 Inhibition: A Novel Anti-Cancer Strategy with Promise for Precision Oncology
Spatial mapping of the DNA adducts in cancer
Impact of Bisphenol A on Structure and Function of Mitochondria: A Critical Review
Repair-Assisted Damage Detection Reveals Biological Disparities in Prostate Cancer between African Americans and European Americans
Solution Chemistry of Dihydroxyacetone and Synthesis of Monomeric Dihydroxyacetone
Glucose Increases STAT3 Activation, Promoting Sustained XRCC1 Expression and Increasing DNA Repair
Resolving the Rules of Robustness and Resilience in Biology Across Scales
Dihydroxyacetone induces G2/M arrest and apoptotic cell death in A375P melanoma cells