科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Acta biomaterialia2026-09-01

Smart Hydrogels Modulate Neutrophil Fate to Restore Immune Surveillance and Homeostasis in Diabetic Wound Healing.

Kaixin Ou, Yongyu Liang, Yanli Li, Liyang Tian, Jiacong Chen, Jiaxing Wang, Wanbo Zhu, Luwen Zhuang, Qiaojie Wang, Teng Gong

原始摘要(英文原文)· Original abstract
Diabetic wounds are highly susceptible to bacterial infection and exhibit impaired healing largely driven by defective neutrophil function. Herein, we developed an immunomodulatory hydrogel hybridized with a diselenide-bridged polymer (HHD) to regulate neutrophil fate for effective wound management. HHD demonstrates stepwise, glucose- and ROS-responsive drug release. The initially released L-arginine and pyridoxamine improve wound microenvironment by promoting angiogenesis and suppressing advanced glycation end products. Upon infection, this remodeled microenvironment enhances the recruitment and antibacterial capacity of neutrophils, enabling diabetic wounds to regain the ability to form early inflammatory zones and promptly clear invasive bacteria. Furthermore, excessive ROS generated from antimicrobial immunity degrades neutrophil-targeted polymers, releasing an NLRP3 inhibitor that suppresses inflammasome overactivation and accelerates neutrophil apoptosis, thereby facilitating macrophage efferocytosis to initiate tissue repair. We tracked HHD-shaped neutrophils and confirmed their efficacy in preventing infection and accelerating wound healing. Collectively, HHD represents a promising treatment platform for neutrophil-dependent diabetic wound care. STATEMENT OF SIGNIFICANCE: Neutrophil dysfunction is a key factor leading to infection and impaired healing of diabetic wounds. Significant challenges remain in achieving comprehensive regulation of neutrophil fate. In this work, we construct an immunomodulatory composite hydrogel to regulate neutrophil fate in diabetic wounds: 1) Improving the wound microenvironment, enhancing neutrophil recruitment, and strengthening its antibacterial activity; 2) Inducing neutrophil apoptosis through the neutrophil-targeting polymer; 3) Facilitating macrophage efferocytosis and phenotypic switching via apoptotic neutrophils, thereby expediting tissue repair.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Smart Hydrogels Modulate Neutrophil Fate to Restore Immune Surveillance and Homeostasis in Diabetic Wound Healing. — 科研速览 Science Skim