Publications
2025
PEG-PLA micelles for targeted codelivery of chemotherapy agents for ovarian cancer
Journal of Macromolecular Science Part A-Pure and Applied Chemistry , 62 (12) , 1154-1166 , 2025 , Impact Factor: 2.4 , Q3
Dual-Functionalizable Hydrogel Coatings: Enabling Redox-Responsive Targeted Therapeutic Delivery to Cells at Interfaces
ACS Applied Polymer Materials , 7 (24) , 16926-16938 , 2025 , Impact Factor: 4.8 , Q1
Engineering polymeric micelles for targeted drug delivery: “click” chemistry enabled bioconjugation strategies and emerging applications
Journal of Materials Chemistry B , 14 (1) , 12-44 , 2025 , Impact Factor: 5.8 , Q2
Polymer brush coated magnetic nanoparticles: dual-functionalization using reversible and non-reversible conjugations for targeted drug delivery
European Polymer Journal , 238 , 114207 , 2025 , Impact Factor: 6.3 , Q1
Polymer Brush-Coated Magnetic Nanoparticles: Diels-Alder/Retro-Diels-Alder Chemistry-Mediated Dual Functionalization for Targeted Drug Delivery
ACS Applied Polymer Materials , 7 (18) , 12500-12509 , 2025 , Impact Factor: 4.8 , Q1
Orthogonally Functionalizable Redox-Responsive Polymer Brushes: Catch and Release Platform for Proteins and Cells
Journal of the American Chemical Society , 147 (28) , 24672-24683 , 2025 , Impact Factor: 15.7 , Q1
Treatment of lung diseases via nanoparticles and nanorobots: Are these viable alternatives to overcome current treatments?
Materials Today Bio , 31 , 101616 , 2025 , Impact Factor: 10.2 , Q1
Combination of Dendrimers and Exosomes: Implications for Biomedical Applications
Macromolecular Bioscience , 25 (6) , 2500014 , 2025 , Impact Factor: 4.1 , Q2
Redox-Responsive Cleavable Polymeric Brush Coated Magnetic Nanoparticles: Fabrication and Post-Polymerization Modification for Cellular Targeting
Biomacromolecules , 26 (3) , 1555-1570 , 2025 , Impact Factor: 5.4 , Q1
Stimuli-responsive polymers at the interface with biology
Biomacromolecules , 26 (3) , 1387-1390 , 2025 , Impact Factor: 5.4 , Q1
Redox-responsive micellar nanoparticles using benzothiazole-disulfide terminated polymers: employing host-guest complexation for targeted delivery of curcumin
Polymer Chemistry , 16 (11) , 1272-1284 , 2025 , Impact Factor: 3.9 , Q2






