A dynamic wet-adhesive hydrogel loaded with ROS-responsive liposomes for chemotherapy-induced oral mucositis
Danya Zhang1, Peilin Zhuang2, Yunyi Wang1
1Department of Oral and Maxillofacial Surgery, Stomatological Hospital, School of Stomtology, Southern Medical University, Guangzhou, P. R. China.
None:
The clinical management of chemotherapy-induced oral mucositis (CIOM) remains a clinical challenge, primarily due to the moist and mechanically dynamic environment, which limits the adhesion and retention of conventional wound dressings. To address these clinical challenges, we designed a dynamic wet-adhesive hydrogel named AC-PEG-ALIP, which is composed of four-arm polyethylene glycol succinimidyl ester (Tetra-PEG-SS), amino-modified recombinant human type III collagen (rhCOL3-NH2) and reactive oxygen species (ROS)-responsive Alkannin-encapsulated liposomes (Lip@Alk). The AC-PEG-ALIP hydrogel exhibited multiple therapeutic activities, including potent anti-inflammatory activity, robust antioxidant capacity, tissue-repair potential, and anti-senescent effects. Material characterization demonstrated that the material exhibited strong wet-adhesion, with a maximum adhesion stretch of 160 kPa, sustained-release drug, and excellent biocompatibility. In vitro assessments confirmed the hydrogel's excellent biocompatibility. AC-PEG-ALIP enhanced HOK cell migration, achieving 75 % wound closure at 24 h, and significantly decreased the expression of inflammatory cytokines (IL-1β, IL-6, TNF-α) and NF-κB by 50-70 %. In vivo, AC-PEG-ALIP significantly accelerated wound healing in a rat CIOM model, reducing residual wound area to 11.03 % on day 7 versus 61.41 % in untreated controls. Histological analyses further revealed enhanced collagen deposition and a 2-fold increase in angiogenesis on day 3. In conclusion, the dynamic wet-adhesive hydrogel AC-PEG-ALIP provides a promising strategy for CIOM, highlighting the role of bio-interface design in mucosal drug delivery.
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