2021
DOI: 10.3390/gels7040188
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Stimuli-Responsive Dual Cross-Linked N-Carboxyethylchitosan Hydrogels with Tunable Dissolution Rate

Abstract: Here, we discuss the applicability of (methylenebis(salicylaldehyde)—MbSA) for the fabrication of the stimuli-responsive N-carboxyethylchitosan (CEC) hydrogels with a tunable dissolution rate under physiological conditions. In comparison with non-covalent salicylimine hydrogels, MbSA cross-linking via covalent bis(‘imine clip’) and non-covalent hydrophobic interactions allowed the fabrication of hydrogels with storage moduli > 1 kPa at ten-fold lower aldehyde/CEC molar ratio with the preservation of pH- and… Show more

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Cited by 20 publications
(20 citation statements)
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References 31 publications
(60 reference statements)
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“…Considering the structure of the chitosan and 2-FPBA reagents and the imine product which resulted between them, it was estimated that the new H-bonds derived from the intermolecular interactions among the hydroxyl units of 2-FPBA and the amine and hydroxyl units of chitosan on one hand, derived and from the intra- and intermolecular interactions between the hydroxyl groups and the nitrogen atom of the new imine units on the other hand. The stabilization of imine units by imino-boronate bonds [ 25 ] by “imine-clip” stabilization [ 26 , 27 , 28 ] is possible too.…”
Section: Resultsmentioning
confidence: 99%
See 2 more Smart Citations
“…Considering the structure of the chitosan and 2-FPBA reagents and the imine product which resulted between them, it was estimated that the new H-bonds derived from the intermolecular interactions among the hydroxyl units of 2-FPBA and the amine and hydroxyl units of chitosan on one hand, derived and from the intra- and intermolecular interactions between the hydroxyl groups and the nitrogen atom of the new imine units on the other hand. The stabilization of imine units by imino-boronate bonds [ 25 ] by “imine-clip” stabilization [ 26 , 27 , 28 ] is possible too.…”
Section: Resultsmentioning
confidence: 99%
“…Considering the structure of the chitosan and 2-FPBA reagents and the imine product which resulted between them, it was estimated that the new H-bonds derived from the intermolecular interactions among the hydroxyl units of 2-FPBA and the amine and hydroxyl units of chitosan on one hand, derived and from the intraand intermolecular interactions between the hydroxyl groups and the nitrogen atom of the new imine units on the other hand. The stabilization of imine units by imino-boronate bonds [25] by "imine-clip" stabilization [26][27][28] is possible too. POM images of the hydrogel showed bright birefringence with a banded texture identified for layered supramolecular architectures, proving that the new formed imine units self-ordered during the hydrogelation into a layered architecture pattern, similar to lyotropic liquid crystals (Figure 4) [29,30].…”
Section: Structural and Supramolecular Characterizationmentioning
confidence: 99%
See 1 more Smart Citation
“…Hydrogel chemical (hydrolytic) stability was investigated at 25 °C in PBS buffer (PanEco Ldt., Moscow, Russia); the pH in the acidic and basic range was adjusted with H 3 PO 4 and NaOH, respectively. Colloid titration of supernatants was used to determine the content of the polymer, which was released from the hydrogels due to the hydrolysis of the cross-links, as described in [ 31 ]. The experiments were performed as follows: 300 mg of the hydrogel was immersed in 15 mL of PBS solution with adjusted pH value and gently agitated for 24 h using a Biosan PSU-20i orbital shaker (Latvia) at 30 rpm.…”
Section: Methodsmentioning
confidence: 99%
“…Flow cytometric analyses were conducted after staining using a CytoFLEX flow cytometer (Beckman-Coulter, Brea, CA, USA) connected to a computer running CytExpert software (version 2.4, Beckman-Coulter). A detailed description of cell cultivation and flow cytometrical analysis is given in [ 31 ].…”
Section: Methodsmentioning
confidence: 99%