AI Article Synopsis

  • * Upon exposure to UV light, this solution quickly transforms into a gel, with the gelation time decreasing significantly as the concentration of HA-DAZ and DPI increases, indicating enhanced performance for medical applications.
  • * The resulting HA-DAZ/DPI hydrogel not only exhibits strong adhesion and self-healing properties but also outperforms traditional fibrin glue in reinforcing tissue, as demonstrated in tests on porcine esophageal mucosa.

Article Abstract

In the present study, we report the first synthesis of diazirine-modified hyaluronic acid (HA-DAZ). In addition, we also produced a precursor polymer solution composed of HA-DAZ and dendritic polyethyleneimine (DPI) that showed strong shear-thinning properties. Furthermore, its viscosity was strongly reduced (, from 5 × 10 mPa s at 10 s to 6 × 10 mPa s at 10 s), substantially, which enhanced solution injectability using a 21 G needle. After ultraviolet irradiation at 365 nm and 6 mW cm, the HA-DAZ/DPI solution achieved rapid gelation, as measured using the stirring method, and its gelation time decreased from 200 s to 9 s as the total concentrations of HA-DAZ and DPI increased. Following UV irradiation, the storage modulus increased from 40 to 200 Pa. In addition, reversible sol-gel transition and self-healing properties were observed even after UV irradiation. This suggests that the HA-DAZ/DPI hydrogel was crosslinked in multiple ways, , covalent bonding between the diazirine and amine groups and intermolecular interactions, including hydrogen bonding, electrostatic interactions, and hydrophobic interactions. A lap shear test showed that the HA-DAZ/DPI hydrogel exhibited strong adhesiveness as a fibrin glue following UV irradiation. Finally, the HA-DAZ/DPI hydrogel showed higher tissue reinforcement than fibrin glue in an burst pressure test of the porcine esophageal mucosa.

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Source
http://dx.doi.org/10.1039/d3bm01279dDOI Listing

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