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A supramolecular hydrogel leveraging hierarchical multi-strength hydrogen-bonds hinged strategy achieving a striking adhesive-mechanical balance. | LitMetric

A supramolecular hydrogel leveraging hierarchical multi-strength hydrogen-bonds hinged strategy achieving a striking adhesive-mechanical balance.

Bioact Mater

School of Materials Science and Engineering, Tianjin Key Laboratory of Composite and Functional Materials, Tianjin University, Tianjin, 300350, China.

Published: January 2025

AI Article Synopsis

  • A new type of tissue-adhesive hydrogel has been created that combines self-complementary monomers and acrylic acid with bioactive epigallocatechin gallate, resulting in a strong and effective medical patch.
  • This hydrogel has impressive properties, including a stretchability of 1500%, tensile strength of 2.6 MPa, and rapid adhesion to tissues, outperforming existing commercial sealants.
  • It shows potential for medical applications such as rapid hemorrhage control and effective wound healing, with reduced inflammation and scarring, making it a promising option for sutureless wound closure.

Article Abstract

To obtain high-performance tissue-adhesive hydrogel embodying excellent mechanical integrity, a supramolecular hydrogel patch is fabricated through in situ copolymerization of a liquid-liquid phase separation precursor composed of self-complementary 2-2-ureido-4-pyrimidone-based monomer and acrylic acid coupled with subsequent corporation of bioactive epigallocatechin gallate. Remarkably, the prepared supramolecular hydrogel leverages hierarchical multi-strength hydrogen-bonds hinged strategy assisted by alkyl-based hydrophobic pockets, broadening the distribution of binding strength of physical junctions, striking a canonical balance between superb mechanical performance and robust adhesive capacity. Ultimately, the fabricated supramolecular hydrogel patch stands out as a high stretchability (1500 %), an excellent tensile strength (2.6 MPa), a superhigh toughness (12.6 MJ m), an instant and robust tissue adhesion strength (263.2 kPa for porcine skin), the considerable endurance under cyclic loading and reversible adhesion, a superior burst pressure tolerance (108 kPa) to those of commercially-available tissue sealants, and outstanding anti-swelling behavior. The resultant supramolecular hydrogel patch demonstrates the rapid hemorrhage control within 60 s in liver injury and efficient wound closure and healing effects with alleviated inflammation and reduced scarring in full-thickness skin incision, confirming its medical translation as a promising self-rescue tissue-adhesive patch for hemorrhage prevention and sutureless wound closure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11421952PMC
http://dx.doi.org/10.1016/j.bioactmat.2024.09.014DOI Listing

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