DOI: 10.1002/jbm.b.70157 ISSN: 1552-4973

Stage‐Adaptive Polymeric Platforms: Design of an Alginate/ CMC Hydrogel Co‐Loaded With Silver Nanoparticles and α‐Pinene ‐Rich Essential Oil for Wound R

Nasrin Kakaei, Abbas Ahmadi, Veria Naseri, Arvin Shajeie, Bahram Nikkhoo, Maryamsadat Mirtalebiesfarjani, Sara Chavoshinezhad, Bijan Nori

ABSTRACT

Managing infected wounds requires a delicate balance between rapid antimicrobial activity and continued tissue repair. To meet this challenge, we developed a porous carboxymethyl cellulose (CMC)/alginate hydrogel loaded with Silver nanoparticles and a Pistacia atlantica essential oil rich in α‐pinene . The hydrogel displayed remarkable swelling (up to 6362% over 72 h) and changed the essential oil release from a rapid, volatile burst to a sustained, controlled profile (73% steady release over 96 h). In vitro tests revealed potent antibacterial activity against Staphylococcus aureus (MIC = 650 μg/mL), significant antioxidant properties, and excellent cytocompatibility. Importantly, in vivo studies in mice demonstrated a stage‐adaptive healing mechanism. Silver nanoparticles allowed rapid early infection control (47.4% wound closure by Day 4). Subsequently, the sustained release of the essential oil promoted robust tissue regeneration during the proliferative phase (82.6% closure by Day 7), driven by an enhanced TAC‐mediated antioxidant defense, reduced MDA levels, and accelerated hydroxyproline‐associated collagen synthesis. By Day 13, re‐epithelialization was near‐complete (93.6%), matching commercial controls. Ultimately, this synergistic integration of plant‐derived bioactives and metal antimicrobials presents a highly effective, stage‐specific platform for accelerated wound healing.