An Ionic Gelation Powder for Ultrafast Hemostasis and Accelerated Wound Healing

材料科学 止血 离子键合 伤口愈合 戊二醛 溶血 生物医学工程 超短脉冲 纳米技术 再生(生物学) 化学工程 自愈水凝胶 胶粘剂 止血剂 血小板粘附 脚手架 止血剂 放血 结冷胶 生物相容性 生物物理学 生物材料 血小板
作者
Youngju Son,Kyusoon Pak,Taehoon Lee,Monica Celine Prayogo,Jinyoung Choi,Sukkyung Kang,Minjoo Kang,Byungkook Oh,Sang Yu Sun,Sanha Kim,Sung Gap Im,Sangyong Jon,Steve Park
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (22) 被引量:2
标识
DOI:10.1002/adfm.202523910
摘要

Abstract Rapid and effective bleeding control remains a clinical priority, particularly for deep or irregular wounds where conventional dressings are inadequate. Here, an ionically responsive, powder‐based hemostatic system (AGCL) composed of alginate, gellan gum, chitosan, and a glutaraldehyde crosslinker is presented. Upon contact with calcium ions in blood, AGCL rapidly forms an adhesive hydrogel network within ≈1 s, enabling ultrafast gelation and a high blood uptake ratio (≈725%). The powder exhibits strong bioadhesion (>40 kPa), excellent sealing under mixed‐mode loading, and robust storage stability for up to 24 months under ambient conditions. In vitro assays confirm minimal hemolysis (<3%), high cytocompatibility, and greater than 99% antibacterial efficacy. In various bleeding models, AGCL significantly reduced blood loss and time to hemostasis compared to TachoSil, a clinical benchmark. Furthermore, AGCL accelerated re‐epithelialization, angiogenesis, and collagen deposition in murine skin and liver wound models, supporting high‐quality tissue regeneration without systemic toxicity. These results demonstrate that AGCL integrates rapid coagulation, strong adhesion, long‐term biostability, and regenerative capacity in a single platform. Its powder format offers distinct advantages in versatility, ease of application, and storability, making it a promising candidate for next‐generation topical hemostats in trauma care, surgery, and emergency medicine.
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