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◆ RSC advances2026-09-03

ROS/pH dual-responsive tannic acid-coated nanoparticle-integrated hyaluronic acid hydrogel for antibacterial and pro-healing effects on diabetic wounds in vitro.

Weikai Zhang, Yating Fan, Zhangjin Qin, Wei Chen, Hewei Zhang, Fuchao Mao, Quanzhong Yang, Shuang Li, Chongkai Zhai

原始摘要(英文原文)· Original abstract
Diabetic chronic wounds remain a leading cause of non-traumatic lower-extremity amputation, driven by four concurrent pathological processes: multidrug-resistant bacterial infection, excessive reactive oxygen species (ROS), sustained pro-inflammatory macrophage polarization, and impaired neovascularization. Conventional wound dressings address only one or two of these processes, and no single-target approach can interrupt this self-reinforcing pathological network. To address this limitation, we designed TAZNP/ADH-OHA Gel, a ROS/pH dual-responsive composite hydrogel dressing. Mesoporous silica nanoparticles (MSNs) were co-loaded with the antimicrobial peptide Pexiganan (AMP, EE% = 90.10%) and Zn2+ (EE% = 33.71%), then coated with a tannic acid-Zn2+ metal-phenolic network (TA-Zn2+ MPN) to form TAZNP nanoparticles, which were subsequently embedded in a dynamically crosslinked ADH-HA/OHA hydrazone hydrogel matrix. The resulting scaffold exhibited interconnected macroporosity, stable viscoelastic properties (G' > G″, 0.1-10 Hz), a yield strain of ∼175%, tissue adhesion of 3.97 kPa, and an equilibrium swelling ratio of 250-300%. Cumulative AMP release increased from 69.10% under physiological conditions (pH 7.4) to 94.93% under combined diabetic wound conditions (pH 6.0 + 10 mM H2O2 + 25 mM glucose), with Zn2+ reaching 86.41% under identical conditions. Early-stage kinetic analysis further demonstrated highly synchronized AMP/Zn2+ release, with apparent release-rate ratios ranging from 1.05 to 1.22 across the tested microenvironments. In vitro assays demonstrated effective antibacterial and anti-biofilm activity against S. aureus and E. coli, with TAZNP/ADH-OHA Gel outperforming free TAZNP and ADH-OHA Gel alone. The composite hydrogel protected HSFs and HUVECs against high-glucose cytotoxicity, restored HSF wound closure from 37.44% to 70.79%, and rescued HUVEC tube formation, restoring total tube length from 5615.88 µm to 15 486.40 µm and number of segments from 26.68 to 249.33. In LPS-stimulated RAW264.7 macrophages, iNOS and TNF-α mRNA were reduced to 0.59-fold and 0.61-fold, while Arg-1 and IL-10 were elevated to 4.13-fold and 5.12-fold. Flow cytometry confirmed genuine M1-to-M2 phenotypic switching, with the M1 proportion reduced from 60.61% to 25.92% and the M2 proportion increased from 35.11% to 75.44%. These results demonstrate that TAZNP/ADH-OHA Gel integrates microenvironment-responsive synchronized co-delivery with antibacterial, antioxidant, pro-angiogenic, and immunomodulatory activities, providing a promising multifunctional platform for diabetic wound management.
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ROS/pH dual-responsive tannic acid-coated nanoparticle-integrated hyaluronic acid hydrogel for antibacterial and pro-healing effects on diabetic wounds in vitro. — 科研速览 Science Skim