Hydrogel Synthesis and Stabilization via Tetrazine Click‐Induced Secondary Interactions
- 9 June 2020
- journal article
- research article
- Published by Wiley in Macromolecular Rapid Communications
- Vol. 41 (14), e2000287
- https://doi.org/10.1002/marc.202000287
Abstract
The discovery of tetrazine click‐induced secondary interactions is reported as a promising new tool for polymeric biomaterial synthesis. This phenomenon is first demonstrated as a tool for poly(ethylene glycol) (PEG) hydrogel assembly via purely non‐covalent interactions and is shown to yield robust gels with storage moduli one to two orders of magnitude higher than other non‐covalent crosslinking methods. In addition, tetrazine click‐induced secondary interactions also enhance the properties of covalently crosslinked hydrogels. A head‐to‐head comparison of PEG hydrogels crosslinked with tetrazine‐norbornene and thiol‐norbornene click chemistry reveals an approximately sixfold increase in storage modulus and unprecedented resistance to hydrolytic degradation in tetrazine click‐crosslinked gels without substantial differences in gel fraction. Molecular dynamic simulations attribute these differences to the presence of secondary interactions between the tetrazine‐norbornene cycloaddition products, which are absent in the thiol‐norbornene crosslinked gels.Funding Information
- National Institute of Arthritis and Musculoskeletal and Skin Diseases (R21 AR071625)
This publication has 26 references indexed in Scilit:
- Hydrolytically-degradable click-crosslinked alginate hydrogelsBiomaterials, 2018
- Rapid Bioorthogonal Chemistry Enables in Situ Modulation of the Stem Cell Behavior in 3D without External TriggersACS Applied Materials & Interfaces, 2018
- Cellular interactions with hydrogel microfibers synthesized via interfacial tetrazine ligationBiomaterials, 2018
- Core–shell patterning of synthetic hydrogels via interfacial bioorthogonal chemistry for spatial control of stem cell behaviorChemical Science, 2018
- Rapid Bioorthogonal Chemistry Turn-on through Enzymatic or Long Wavelength Photocatalytic Activation of Tetrazine LigationJournal of the American Chemical Society, 2016
- Click‐Crosslinked Injectable Gelatin HydrogelsAdvanced Healthcare Materials, 2016
- Versatile click alginate hydrogels crosslinked via tetrazine–norbornene chemistryBiomaterials, 2015
- Interfacial Bioorthogonal Cross-LinkingACS Macro Letters, 2014
- Synthetically Tractable Click Hydrogels for Three-Dimensional Cell Culture Formed Using Tetrazine–Norbornene ChemistryBiomacromolecules, 2013
- Theory of Molecular Size Distribution and Gel Formation in Branched-Chain PolymersThe Journal of Chemical Physics, 1943