Calcium Peroxide Embedded in Dopamine-Grafted Hyaluronic Acid Hydrogel with Tunable Physicochemical Properties and
Quan Minh Vo1,2, Kieu Thi-Thuy Nguyen1,2, Khanh-Linh Le1,2
1Lab of Tissue Engineering & Regenerative Medicines, School of Biomedical Engineering, International University, Ho Chi Minh City 700000, Vietnam.
Abstract:
Adhesive hydrogels are pivotal biomaterials in tissue engineering. Recently, calcium peroxide (CaO2) has gained attention for its oxygen-releasing capacity to promote healing, holding potential for diverse applications. However, the uncontrolled release of H2O2 from CaO2 hydrolysis poses cytotoxicity challenges. This study developed a biocompatible adhesive hydrogel system, DaHC, comprising dopamine-grafted hyaluronic acid and a low concentration of CaO2 (0.2 mg/mL), with horseradish peroxidase (HRP) enzyme to mitigate H2O2 toxicity, accelerate gelation, and enhance the biomedical performance of the adhesive hydrogel. The presence of HRP enzyme significantly accelerated the gelation time (from 2022 ± 150 s to 69 ± 32 s for the enzyme concentration of 0.8 U/mL) and improved rheological properties, with DaHC-0.4 (with 0.4 U/mL HRP) exhibiting the highest storage modulus (110.1 ± 8.4 Pa). HRP-containing hydrogels (0.02 to 0.6 U/mL) showed enhanced compressive strength and adhesion (∼300 Pa). The DaHC hydrogels exhibited controlled release of H2O2 and sustained release of Ca2+ ions over 7 days. All DaHC samples demonstrated hemocompatibility (hemolysis rate <5%) and significantly accelerated blood clotting time (<500 s). Cytotoxicity tests confirmed non-cytotoxicity (>95% cell viability) via extracts and improved cell viability with HRP inclusion in direct contact. In vivo experimental models underscore the DaHC hydrogel's potential with short-term biocompatibility (subcutaneous implantation) and hemostasis properties (reducing blood loss in a liver puncture model to approximately 30-40 mg). These findings suggest that the introduced material may serve as a promising candidate for soft tissue, surgical hemostats, and wound dressings.


