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Jean Coudane — IBMM Polymers for Health and Biomaterials
Jean Coudane — IBMM Polymers for Health and Biomaterials

Jean COUDANE | Head of Department | Full Professor | Université de  Montpellier, Montpellier | UM1 | Faculté de Pharmacie | Research profile
Jean COUDANE | Head of Department | Full Professor | Université de Montpellier, Montpellier | UM1 | Faculté de Pharmacie | Research profile

Mechanical Properties and Lipase-Catalyzed Biodegradation of  α-Methyl, ε-Caprolactone/ ε-Caprol
Mechanical Properties and Lipase-Catalyzed Biodegradation of α-Methyl, ε-Caprolactone/ ε-Caprol

Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM |  French National Centre for Scientific Research, Paris | CNRS | IBMM |  Research profile
Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM | French National Centre for Scientific Research, Paris | CNRS | IBMM | Research profile

Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM |  French National Centre for Scientific Research, Paris | CNRS | IBMM |  Research profile
Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM | French National Centre for Scientific Research, Paris | CNRS | IBMM | Research profile

PDF) Biodegradable networks for soft tissue engineering by thiol–yne photo  cross-linking of multifunctional polyesters | Jean Coudane - Academia.edu
PDF) Biodegradable networks for soft tissue engineering by thiol–yne photo cross-linking of multifunctional polyesters | Jean Coudane - Academia.edu

Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM |  French National Centre for Scientific Research, Paris | CNRS | IBMM |  Research profile
Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM | French National Centre for Scientific Research, Paris | CNRS | IBMM | Research profile

1 Supporting Information PLA-Poloxamer/Poloxamine Copolymers for Ligament  Tissue Engineering: Sound Macromolecular Design for De
1 Supporting Information PLA-Poloxamer/Poloxamine Copolymers for Ligament Tissue Engineering: Sound Macromolecular Design for De

Jean COUDANE | Senior Researcher | Doctor of Engineering | Université de  Montpellier, Montpellier | UM1 | Institut des Biomolécules Max Mousseron  (IBMM) - UMR 5247 | Research profile
Jean COUDANE | Senior Researcher | Doctor of Engineering | Université de Montpellier, Montpellier | UM1 | Institut des Biomolécules Max Mousseron (IBMM) - UMR 5247 | Research profile

Polyiodizedв•'PCL as multisite transfer agent: Towards an enlarged library  of degradable graft copolymers
Polyiodizedв•'PCL as multisite transfer agent: Towards an enlarged library of degradable graft copolymers

Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM |  French National Centre for Scientific Research, Paris | CNRS | IBMM |  Research profile
Jean COUDANE | professor, head of dept "Artificial Biopolymers" of IBMM | French National Centre for Scientific Research, Paris | CNRS | IBMM | Research profile

PDF) Synthesis of PCL� graft�PS by combination of ROP, ATRP, and click  chemistry | Jean Coudane - Academia.edu
PDF) Synthesis of PCL� graft�PS by combination of ROP, ATRP, and click chemistry | Jean Coudane - Academia.edu

Jean Coudane — IBMM Polymers for Health and Biomaterials
Jean Coudane — IBMM Polymers for Health and Biomaterials

PDF) Synthesis of [3H]-labelled poly(?-caprolactone) | Jean Coudane -  Academia.edu
PDF) Synthesis of [3H]-labelled poly(?-caprolactone) | Jean Coudane - Academia.edu

10+ "Coudane" profiles | LinkedIn
10+ "Coudane" profiles | LinkedIn

jean coudane | LinkedIn
jean coudane | LinkedIn

PDF) Zn lactate as initiator of dl-lactide ring opening polymerization and  comparison with Sn octoate | Jean Coudane - Academia.edu
PDF) Zn lactate as initiator of dl-lactide ring opening polymerization and comparison with Sn octoate | Jean Coudane - Academia.edu

Ultrafast in situ forming poly(ethylene glycol)-poly(amido amine) hydrogels  with tunable drug release properties via controllabl
Ultrafast in situ forming poly(ethylene glycol)-poly(amido amine) hydrogels with tunable drug release properties via controllabl

PDF) Poly(Lactic Acid)-Based Graft Copolymers: Syntheses Strategies and  Improvement of Properties for Biomedical and Environmentally Friendly  Applications: A Review
PDF) Poly(Lactic Acid)-Based Graft Copolymers: Syntheses Strategies and Improvement of Properties for Biomedical and Environmentally Friendly Applications: A Review

Regioselective Halogenation of Poly(lactide) by Freeв•'<fc>R</fc>adical  Process<link href='#mren20130013
Regioselective Halogenation of Poly(lactide) by Freeв•'<fc>R</fc>adical Process<link href='#mren20130013

Jean Coudane — IBMM Polymers for Health and Biomaterials
Jean Coudane — IBMM Polymers for Health and Biomaterials

Ultrafast in situ forming poly(ethylene glycol)-poly(amido amine) hydrogels  with tunable drug release properties via controllable degradation rates -  ScienceDirect
Ultrafast in situ forming poly(ethylene glycol)-poly(amido amine) hydrogels with tunable drug release properties via controllable degradation rates - ScienceDirect

Design and Development of Immunomodulatory Antigen Delivery Systems Based  on Peptide/PEG–PLA Conjugate for Tuning Immunity - ScienceDirect
Design and Development of Immunomodulatory Antigen Delivery Systems Based on Peptide/PEG–PLA Conjugate for Tuning Immunity - ScienceDirect

Supporting Information for Synthesis and evaluation of triazole-linked  poly(ε-caprolactone)-graft- poly(2-methyl-2-oxazoline)
Supporting Information for Synthesis and evaluation of triazole-linked poly(ε-caprolactone)-graft- poly(2-methyl-2-oxazoline)

From Polyesters to Polyamides Via ON Acyl Migration: An Original  Multiâ•'Transfer Reaction
From Polyesters to Polyamides Via ON Acyl Migration: An Original Multiâ•'Transfer Reaction

PDF) Stereocopolymers for parenteral sustained-release of peptides: Release  of GRF29NH2 from a PLA/GA matrix | Jean Coudane - Academia.edu
PDF) Stereocopolymers for parenteral sustained-release of peptides: Release of GRF29NH2 from a PLA/GA matrix | Jean Coudane - Academia.edu

Direct Photomodification of Polymer Surfaces: Unleashing the Potential of  Aryl-Azide Copolymers
Direct Photomodification of Polymer Surfaces: Unleashing the Potential of Aryl-Azide Copolymers