Hydrogels and biodegradable polymers for bioapplications : developed from a symposium sponsored by the Division of Polymer Chemistry, Inc., at the 208th National Meeting of the American Chemical Society, Washington, DC, August 21-26, 1994 /
| Corporate Authors: | , |
|---|---|
| Other Authors: | , , |
| Format: | eBook |
| Language: | English |
| Published: |
Washington, D.C. :
American Chemical Society,
1996.
|
| Series: | ACS symposium series ;
627. |
| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- Hydrogels in bioapplications
- Glucose-sensitive phase-reversible hydrogels
- New bioartificial hydrogels : characterization and physical properties
- Bioapplication of poly(ethylene glycol)-albumin hydrogels : matrix for enzyme immobilization
- Sulfonylurea-grafted polymers for Langerhans islet stimulatin
- Administration of ovalbumin encapsulated in alginate microspheres to mice
- Activities of extracellular and intracellular depolymerases of polyhydroxyalkanoates
- Poly(L-lactic acid-co-amino acid) graft copolymers : a class of functional biodegradable biomaterials
- Chemical and morphological changes in peroxide-stabilized poly(L-lactide)
- Biodegradability of polycarboxylates : structure-activity studies
- Biodegradatin of poly(vinyl alcohol) and vinyl alcohol block as biodegradable segment
- Soil and marine biodegradation of protein-starch plastics
- Biodegradation of polymer films in marine and soil environments
- Two-dimensional latex assemblies for biosensors
- Molecular recognition at a monolayer interface : 2,4-diaminopyrimidine-succinimide host-guest partners
- Conjugation of DNA with functional vinyl polmyers by using vinyl derivatives of psoralen as a linker
- pH-sensitive swelling and drug-release properties of chitosan-poly(ethylene oxide) semi-interpenetrating polymer network
- Microbes in polmyer chemistry
- Aqueous solution properties of bacterial poly-[gamma]-D-glutamate
- Bioactive polymeric dental materials based on amorphous calcium phosphate : effect of coupling agents.