Area of research
Molecular Biology · Biomaterials
Research interest
Research interests include Self-healing hydrogels, Materials science, Chemistry, Nanotechnology, Liposome, and Self-healing.
Ultrasound-Enhanced Gelation of Stimuli-Responsive and Biocompatible Phenylalanine-Derived Hydrogels
Biomass-derived isosorbide-based thermoresponsive hydrogel for drug delivery
Graphene-based hybrid materials as promising scaffolds for peripheral nerve regeneration
Neuroprotective Effects of Resveratrol in Ischemic Brain Injury
Sulfonamide as amide isostere for fine-tuning the gelation properties of physical gels
Cationic Niosomes as Non-Viral Vehicles for Nucleic Acids: Challenges and Opportunities in Gene Delivery
Alginate Hydrogels as Scaffolds and Delivery Systems to Repair the Damaged Spinal Cord
On the Race for More Stretchable and Tough Hydrogels
Expanding the limits of amide–triazole isosteric substitution in bisamide-based physical gels
Polymer topology-controlled self-healing properties of polyelectrolyte hydrogels based on DABCO-containing aromatic ionenes
Liposomes‐<i>in</i>‐Chitosan Hydrogels: Challenges and Opportunities for Biomedical Applications
Isosteric Substitution of 4<i>H</i>-1,2,4-Triazole by 1<i>H</i>-1,2,3-Triazole in Isophthalic Derivative Enabled Hydrogel Formation for Controlled Drug Delivery
Boronic acid-modified alginate enables direct formation of injectable, self-healing and multistimuli-responsive hydrogels
Transfection of Antisense Oligonucleotides Mediated by Cationic Vesicles Based on Non-Ionic Surfactant and Polycations Bearing Quaternary Ammonium Moieties
Biodegradable liposome-encapsulated hydrogels for biomedical applications: a marriage of convenience
Nioplexes encapsulated in supramolecular hybrid biohydrogels as versatile delivery platforms for nucleic acids
Magnetic Gel Composites for Hyperthermia Cancer Therapy