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Controlled release using ionotropic polyphosphazene hydrogels
Alexander K. Andrianov
, Smadar Cohen
, Karyn B. Visscher
, Lendon G. Payne
, Harry R. Allcock
, Robert Langer
Chemistry
Materials Research Institute (MRI)
Research output
:
Contribution to journal
›
Article
›
peer-review
67
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Scopus citations
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Keyphrases
Polyphosphazene
100%
Controlled Release
100%
Poly-L-lysine
100%
Ionotropic
100%
Phosphazene
83%
Polyphosphazene Microspheres
33%
Reaction Time
16%
Divalent Cations
16%
Chelating Agent
16%
Polyelectrolyte
16%
Aqueous Media
16%
Coating Process
16%
Release Rate
16%
Membrane Coating
16%
Outer Membrane
16%
Liquefaction
16%
Partial Coating
16%
Ionic Crosslinking
16%
Calcium Chloride
16%
Controlled Drug Release
16%
Ion Exchange Reaction
16%
Monovalent Salts
16%
Microcapsules
16%
Polystyrene Beads
16%
Saline Solution
16%
Release Profile
16%
Outward Diffusion
16%
Macromolecular Substrate
16%
Hydrogel Matrix
16%
Engineering
Microsphere
100%
Hydrogel
100%
Polyphosphazenes
100%
Controlled Release
100%
Phosphazene
83%
Molecular Weight
50%
Molecular Mass
50%
Saline Solution
33%
Exchange Reaction
16%
Crosslinker
16%
Process Result
16%
Release Rate
16%
Single Solution
16%
Aqueous Medium
16%
Release Profile
16%
Ion Exchange
16%
Pharmacology, Toxicology and Pharmaceutical Science
Controlled Release
100%
Lysine
100%
Microsphere
100%
Divalent Cation
16%
Chelating Agent
16%
Styrofoam
16%
Calcium Chloride
16%
Table Salt
16%
Material Science
Microsphere
100%
Hydrogel
100%
Lysine
100%
Polystyrene
16%
Coating Process
16%
Ion Exchange Reaction
16%
Chloride
16%
Chemical Engineering
Hydrogel
100%
Polystyrene
33%
Ion Exchange
33%
Calcium Chloride
33%