Area of research
Radiology, Nuclear Medicine and Imaging · Biomedical Engineering
Research interest
Research focused on Cancer research and Plasma, with related work in Cefixime, Breast cancer, Food packaging. Notable publications include 'Plasma-activated water: generation, origin of reactive species and biological applications', 'Degradation of cefixime antibiotic in water by atmospheric plasma bubbles: Performance, degradation pathways and toxicity evaluation', and 'Epithelial-to-Mesenchymal Transition Enhances Cancer Cell Sensitivity to Cytotoxic Effects of Cold Atmospheric Plasmas in Breast and Bladder Cancer Systems'.
Next‐Generation Oral Ulcer Management: Integrating Cold Atmospheric Plasma (CAP) with Nanogel‐Based Pharmaceuticals for Inflammation Regulation
FlexiPlasma Microcatheter–Embolic Material (FPM‐EM) Platform: A Non‐Inflammatory Pyroptosis Strategy for Precision Hepatocellular Carcinoma Therapy
Carrier-free Nano-Tetrandrine (PURE-T) for Psoriasis Treatment: Significant Therapeutic Efficacy and Its Regulatory Mechanism on Stratum Corneum Inflammation
Investigation of selenium and selenium species in Cardamine violifolia using in vitro digestion coupled with a Caco-2 cell monolayer model
Epidermal growth factor potentiates EGFR(Y992/1173)-mediated therapeutic response of triple negative breast cancer cells to cold atmospheric plasma-activated medium
4D Additive–Subtractive Manufacturing of Shape Memory Ceramics (Adv. Mater. 39/2023)
Cold atmospheric plasmas target breast cancer stemness via modulating AQP3-19Y mediated AQP3-5K and FOXO1 K48-ubiquitination
Epithelial-to-Mesenchymal Transition Enhances Cancer Cell Sensitivity to Cytotoxic Effects of Cold Atmospheric Plasmas in Breast and Bladder Cancer Systems
In-package plasma: From reactive chemistry to innovative food preservation technologies
Plasma-activated water: generation, origin of reactive species and biological applications
Degradation of cefixime antibiotic in water by atmospheric plasma bubbles: Performance, degradation pathways and toxicity evaluation
Prussian blue analogue nanoenzymes mitigate oxidative stress and boost bio-fermentation