Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Characterization and Biodegradation Studies for Interpenetrating Polymeric Network (IPN) of Chitosan-Amino Acid Beads"
written by Manjusha Rani, Anuja Agarwal, Yuvraj Singh Negi,
published by Journal of Biomaterials and Nanobiotechnology, Vol.2 No.1, 2011
has been cited by the following article(s):
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[3] IPN beads prepared by tailoring of cassia tora gum and sodium carboxymethyl cellulose using Al+++ for controlled drug delivery
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[4] Study of sorbsion properties of copper (II) ion with chitosan based sorbent
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[6] Removal of Organic Dyes from Aqueous Solutions by Adsorption of Chitosan-Guar Gum-Based Glyoxal Crosslinked Hydrogel
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[7] Development of alginate chitosan hydrogel beads for oral delivery of rifaximin
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[9] Development of pH-Responsive Interpenetrating Polymer Networks of Polyacrylamide-g-Gum Arabica and Sodium Alginate for Gastroprotective Delivery of …
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[10] Three-dimensional Hydrogels of Alginate/chitosan Semi-interpenetrating Polymer Networks and Nanocelluloses
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[11] Easy removal of nitrate and phosphate anions from water by low cost chitosan and activated charcoal
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[12] Research Article Synchrotron FTIR Light Reveals Signal Changes of Biofunctionalized Magnetic Nanoparticle Attachment on Salmonella sp.
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[13] Preparation and Characterization of pH Sensitive Chitosan/3-Glycidyloxypropyl Trimethoxysilane (GPTMS) Hydrogels by Sol-Gel Method
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[14] Synchrotron FTIR Light Reveals Signal Changes of Biofunctionalized Magnetic Nanoparticle Attachment on Salmonella sp.
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[15] Biomaterials and extracellular vesicles in cell-free therapy for bone repair and regeneration: Future line of treatment in regenerative medicine
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[16] Interpenetrating Polymer Network in Microparticulate Systems: Drug Delivery and Biomedical Application
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[17] Comparative Cytotoxicity and Genotoxicity Assessments of Chitosan Amino Acid Derivative Nanoparticles Toward Human Breast Cancer Cell Lines
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[18] Preparação e caracterização de géis de alginato, quitosana e nanoceluloses para aplicações biomédicas.
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[19] Facile fabrication of pH-responsive and swellable slow release microparticles of chlorpheniramine maleate with chitosan-starch matrices and their crosslinks
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[20] Compósitos de alginato como material inteligente, modulação de solubilidade e objeto de ensino
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[21] Preparation and characterization of chitosan beads grafted with poly (methyl methacrylate) for controlled release study
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[25] Synthesis and Evaluation of Some Novel Adsorbents and Sensors for Remediation and Sensing of Chromium
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[26] Caffeine: A novel green precursor for synthesis of magnetic CoFe 2 O 4 nanoparticles and pH-sensitive magnetic alginate beads for drug delivery
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[27] Study of mesenchymal stem cells cultured on a poly (lactic-co-glycolic acid) scaffold containing simvastatin for bone healing.
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[28] Interpenetrating polymer networks hydrogels of chitosan and poly (2-hydroxyethyl methacrylate) for controlled release of quetiapine
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[29] Adsorption of nitrates using quaternized chitosan resin
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[30] Процессы взаимодействия радионуклидов с полимерными материалами на основе хитина и хитозана (фундаментальные и прикладные аспекты …
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[32] A Straw-Housed Paper-based Colorimetric Antibody-Antigen Sensor
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[37] Síntesis y caracterización de una red polimérica interpenetrada de polimetacrilato de 2-hidroxietilo y quitosano como posible matriz de liberación controlada de …
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[38] Adsorption of chromium from aqueous solutions using crosslinked chitosan–diethylenetriaminepentaacetic acid
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[42] Adsorption of Chromium from aqueous solutions using Crosslinked Chitosan-Diethylenetriaminepentaacetic acid
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[43] Síntese e caracterização de hidrogéis de amido retrogradado e goma gelana utilizados como matriz em sistemas de liberação cólon específica de fármacos
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[44] A Proteomic View to Characterize the Effect of Chitosan Nanoparticle to Hepatic Cells: Is Chitosan Nanoparticle an Enhancer of PI3K/AKT1/mTOR Pathway?
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[45] Interpenetrating Polymer Networks as Innovative Drug Delivery Systems
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[46] Design of crosslinked polymer based biosorbents for the removal of toxic metal ions from simulated waste water
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[47] Poly (lactide-co-glycolide acid)/biphasic calcium phosphate composite coating on a porous scaffold to deliver simvastatin for bone tissue engineering
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[48] Electric field responsive chitosan–poly (N, N-dimethyl acrylamide) semi-IPN gel films and their dielectric, thermal and swelling characterization
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[49] EVALUACIÓN DEL TRATAMIENTO FISICOQUÍMICO EN UN EFLUENTE DE UNA INDUSTRIA PROCESADORA DE HARINA.
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[50] Cholorpheniramine tannate complexes: Physicochemical, chemometric, and taste masking evaluation
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[51] Some Physicochemical Measurements of Chitosan/Starch Polymers in Acetic Acid‐Water Mixtures
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[52] Взаимодействие радионуклидов с сорбентами на основе ковалентно-сшитых криогелей хитозана
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[53] Research Article A Proteomic View to Characterize the Effect of Chitosan Nanoparticle to Hepatic Cells: Is Chitosan Nanoparticle an Enhancer of PI3K/AKT1 …
[54] SINTESIS Y CARACTERIZACIÓN DE UN MATERIAL POLIMÉRICO CARGADO CON NOVALURON Y PYRIPROXYFEN, LARVICIDAS EMPLEADOS EN …
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