Area of research
Biomedical Engineering · Biomaterials
Research interest
Research focused on Tissue engineering and Self-healing hydrogels, with related work in Graphene, Drug delivery, Biomedical engineering. Notable publications include 'Self‐Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering?', 'Directed endothelial cell morphogenesis in micropatterned gelatin methacrylate hydrogels', and 'Biopolymers for Antitumor Implantable Drug Delivery Systems: Recent Advances and Future Outlook'.
Composite Graded Melt Electrowritten Scaffolds for Regeneration of the Periodontal Ligament-to-Bone Interface
Multi-leveled Nanosilicate Implants Can Facilitate Near-Perfect Bone Healing
Nanotechnological Approaches in Prostate Cancer Therapy: Integration of engineering and biology
Immunotherapeutic nanoparticles: From autoimmune disease control to the development of vaccines
Emerging immunomodulatory strategies for cell therapeutics
Nanoclay Reinforced Biomaterials for Mending Musculoskeletal Tissue Disorders
3D‐Printed Regenerative Magnesium Phosphate Implant Ensures Stability and Restoration of Hip Dysplasia
Tough magnesium phosphate-based 3D-printed implants induce bone regeneration in an equine defect model
An innovative and eco-friendly modality for synthesis of highly fluorinated graphene by an acidic ionic liquid: Making of an efficacious vehicle for anti-cancer drug delivery
Self‐Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering?
Sulfated polysaccharide-based scaffolds for orthopaedic tissue engineering
Can 4D bioprinting revolutionize drug development?
Self‐Healable Hydrogels: Self‐Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering? (Adv. Sci. 16/2019)
Biopolymers for Antitumor Implantable Drug Delivery Systems: Recent Advances and Future Outlook
An ecofriendly graphene-based nanofluid for heat transfer applications
Layer‐by‐Layer Assembly of 3D Tissue Constructs with Functionalized Graphene
Nanoclay-Enriched Poly(ɛ-caprolactone) Electrospun Scaffolds for Osteogenic Differentiation of Human Mesenchymal Stem Cells
Elastomeric nanocomposite scaffolds made from poly(glycerol sebacate) chemically crosslinked with carbon nanotubes
Directed endothelial cell morphogenesis in micropatterned gelatin methacrylate hydrogels