Versatile tuning of supramolecular hydrogels through metal complexation of oxidation-resistant catechol-inspired ligands.
basic_science · Level V
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- Record sourced from PubMed, PMID 24285981.
- Also identified by DOI 10.1039/C3SM51824H and PMC identifier 3838863.
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Abstract
The mussel byssal cuticle employs DOPA-Fe<sup>3+</sup> complexation to provide strong, yet reversible crosslinking. Synthetic constructs employing this design motif based on catechol units are plagued by oxidation-driven degradation of the catechol units and the requirement for highly alkaline pH conditions leading to decreased performance and loss of supramolecular properties. Herein, a platform based on a 4-arm poly(ethylene glycol) hydrogel system is used to explore the utility of DOPA analogues such as the parent catechol and derivatives, 4-nitrocatechol (nCat) and 3-hydroxy-4-pyridinonone (HOPO), as structural crosslinking agents upon complexation with metal ions. HOPO moieties are found to hold particular promise, as robust gelation with Fe<sup>3+</sup> occurs at physiological pH and is found to be largely resistant to oxidative degradation. Gelation is also shown to be triggered by other biorelevant metal ions such as Al<sup>3+</sup>, Ga<sup>3+</sup> and Cu<sup>2+</sup> which allows for tuning of the release and dissolution profiles with potential application as injectable delivery systems.