thermoreversible gelation
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Biomedicines ◽  
2021 ◽  
Vol 9 (9) ◽  
pp. 1113
Author(s):  
Luis Andrés Pérez ◽  
Rebeca Hernández ◽  
José María Alonso ◽  
Raúl Pérez-González ◽  
Virginia Sáez-Martínez

Hyaluronic acid (HA) hydrogels display a wide variety of biomedical applications ranging from tissue engineering to drug vehiculization and controlled release. To date, most of the commercially available hyaluronic acid hydrogel formulations are produced under conditions that are not compatible with physiological ones. This review compiles the currently used approaches for the development of hyaluronic acid hydrogels under physiological/mild conditions. These methods include dynamic covalent processes such as boronic ester and Schiff-base formation and click chemistry mediated reactions such as thiol chemistry processes, azide-alkyne, or Diels Alder cycloaddition. Thermoreversible gelation of HA hydrogels at physiological temperature is also discussed. Finally, the most outstanding biomedical applications are indicated for each of the HA hydrogel generation approaches.


Gels ◽  
2021 ◽  
Vol 7 (3) ◽  
pp. 89
Author(s):  
Fumihiko Tanaka

Theoretical scheme is developed to study thermoreversible gelation interfering with liquid–liquid phase separation in mixtures of reactive f-functional molecules R{Af} and g-functional ones R{Bg} dissolved in a common solvent. Formed polymer networks are assumed to include multiple cross-link junctions containing arbitrary numbers k1 and k2 of functional groups A and B of each species. Sol-gel transition lines and spinodal lines are drawn on the ternary phase plane for some important models of multiple cross-link junctions with specified microscopic structure. It is shown that, if the cross-link structure satisfies a certain simple condition, there appears a special molar ratio of the two functional groups at which gelation takes place with a lowest concentration of the solute molecules, as has been often observed in the experiments. This optimal gelation concentration depends on f and g (functionality) of the solute molecules and the numbers k1 and k2 (multiplicity) of the functional groups in a cross-link junction. For cross-links which allow variable multiplicity, special attention is paid on the perfectly immiscible cross-links leading to interpenetrating polymer networks, and also on perfectly miscible cross-links leading to reentrant sol-gel-sol transition. Results are compared with recent observations on ion-binding polymer solutions, polymer solutions forming recognizable biomolecular complexes, polymer/surfactant mixtures, hydrogen-bonding polymers, and hydrophobically-modified amphiphilic water-soluble polymers.


2019 ◽  
Vol 385 (1) ◽  
pp. 1800162 ◽  
Author(s):  
Jessica Link ◽  
Olivier Sanseau ◽  
Mathieu Tauban ◽  
Frédéric Colbeau‐Justin ◽  
Cédric Lorthioir ◽  
...  

2019 ◽  
Vol 150 (17) ◽  
pp. 174904
Author(s):  
Fumihiko Tanaka ◽  
Yoshiyuki Nakagawa ◽  
Seiichi Ohta ◽  
Taichi Ito

2019 ◽  
Vol 297 (4) ◽  
pp. 493-502 ◽  
Author(s):  
Jerin John ◽  
Kurniawan Ardhianto ◽  
Purushothaman Nandagopalan ◽  
Seung Wook Baek

2018 ◽  
Vol 75 (9) ◽  
pp. 4227-4243 ◽  
Author(s):  
Nalinda Almeida ◽  
Leela Rakesh ◽  
Jin Zhao

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