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Issue DateTitleAuthor(s)
2018Organically modified clay supported chitosan/hydroxyapatite-zinc oxide nanocomposites with enhanced mechanical and biological properties for the application in bone tissue engineeringBhowmick A.; Banerjee S.L.; Pramanik N.; Jana P.; Mitra T.; Gnanamani A.; Das M.; Kundu P.P.
2017Development of bone-like zirconium oxide nanoceramic modified chitosan based porous nanocomposites for biomedical applicationBhowmick A.; Pramanik N.; Jana P.; Mitra T.; Gnanamani A.; Das M.; Kundu P.P.
2009DSC studies on the curing kinetics of chitosan-alanine using glutaraldehyde as crosslinkerKumari K.; Raina K.K.; Kundu P.P.
2013Oral insulin delivery by self-assembled chitosan nanoparticles: In vitro and in vivo studies in diabetic animal modelMukhopadhyay P.; Sarkar K.; Chakraborty M.; Bhattacharya S.; Mishra R.; Kundu P.P.
2009Effect of drying processes and curing time of chitosan-lysine semi-IPN beads on chlorpheniramine maleate deliveryKumari K.; Kundu P.P.
2013Blood compatible N-maleyl chitosan-graft-PAMAM copolymer for enhanced gene transfectionSarkar K.; Chatterjee A.; Chakraborti G.; Kundu P.P.
2007Semiinterpenetrating polymer networks of chitosan and L-alanine for monitoring the release of chlorpheniramine maleateKumari K.; Kundu P.P.
2016Multifunctional zirconium oxide doped chitosan based hybrid nanocomposites as bone tissue engineering materialsBhowmick A.; Jana P.; Pramanik N.; Mitra T.; Banerjee S.L.; Gnanamani A.; Das M.; Kundu P.P.
2017Modified bacterial cellulose based self-healable polyeloctrolyte film for wound dressing applicationKhamrai M.; Banerjee S.L.; Kundu P.P.
2009Optimization of chlorpheniramine maleate (CPM) delivery by response surface methodology - four component modeling using various response times and concentrations of chitosan-alanine, glutaraldehyde and CPMKumari K.; Prasad K.; Kundu P.P.