Area of research
Biomaterials · Surgery
Research interest
Research interests include Nanofiber, Materials science, Electrospinning, Tissue engineering, Nanotechnology, and Regeneration (biology).
Edible polymers: An insight into its application in food, biomedicine and cosmetics
Thermally-induced two-way shape memory polymers: Mechanisms, structures, and applications
Fabrication and characterization of two-layered nanofibrous membrane for guided bone and tissue regeneration application
Elastic poly( <i>ε</i> -caprolactone)-polydimethylsiloxane copolymer fibers with shape memory effect for bone tissue engineering
Biocompatible electrically conductive nanofibers from inorganic-organic shape memory polymers
Synergistic effect of topography, surface chemistry and conductivity of the electrospun nanofibrous scaffold on cellular response of PC12 cells
Fabrication of Nerve Growth Factor Encapsulated Aligned Poly(ε-Caprolactone) Nanofibers and Their Assessment as a Potential Neural Tissue Engineering Scaffold
Electrospinning of PLGA/gum tragacanth nanofibers containing tetracycline hydrochloride for periodontal regeneration
Strategies for regeneration of components of nervous system: scaffolds, cells and biomolecules
Drug-loaded emulsion electrospun nanofibers: characterization, drug release and in vitro biocompatibility
Coaxial electrospun poly(lactic acid)/silk fibroin nanofibers incorporated with nerve growth factor support the differentiation of neuronal stem cells
Biocomposite scaffolds for bone regeneration: Role of chitosan and hydroxyapatite within poly-3-hydroxybutyrate-co-3-hydroxyvalerate on mechanical properties and in vitro evaluation
Gum tragacanth/poly(l-lactic acid) nanofibrous scaffolds for application in regeneration of peripheral nerve damage
Drug delivery vehicles on a nano-engineering perspective
Role of size of drug delivery carriers for pulmonary and intravenous administration with emphasis on cancer therapeutics and lung-targeted drug delivery
Emulsion electrospinning of polycaprolactone: influence of surfactant type towards the scaffold properties
Electrospun tecophilic/gelatin nanofibers with potential for small diameter blood vessel tissue engineering
Stem cell-loaded nanofibrous patch promotes the regeneration of infarcted myocardium with functional improvement in rat model
Protein encapsulated core–shell structured particles prepared by coaxial electrospraying: Investigation on material and processing variables
Guiding the orientation of smooth muscle cells on random and aligned polyurethane/collagen nanofibers
Advances in drug delivery via electrospun and electrosprayed nanomaterials
Development of nanofibrous cellulose acetate/gelatin skin substitutes for variety wound treatment applications
Electrospun aligned PHBV/collagen nanofibers as substrates for nerve tissue engineering
Controlled release of multiple epidermal induction factors through core–shell nanofibers for skin regeneration
Artificial neural network for modeling the elastic modulus of electrospun polycaprolactone/gelatin scaffolds
Biocompatibility evaluation of electrically conductive nanofibrous scaffolds for cardiac tissue engineering
Interaction of Schwann cells with laminin encapsulated PLCL core–shell nanofibers for nerve tissue engineering
Tissue engineered plant extracts as nanofibrous wound dressing
Mechanical properties and<i>in vitro</i>behavior of nanofiber–hydrogel composites for tissue engineering applications
Electrospun bio‐composite P(LLA‐CL)/collagen I/collagen III scaffolds for nerve tissue engineering