丝素
止血
化学
自愈水凝胶
渗透(HVAC)
生物医学工程
多孔性
粘附
胶粘剂
组织工程
细胞粘附
脚手架
丝绸
再生(生物学)
伤口愈合
生物相容性材料
纳米技术
血小板
血小板粘附
生物相容性
组织粘连
材料科学
生物物理学
再生医学
止血剂
纤维化
炎症
止血剂
作者
yajing Liu,Bo Zou,Zhenhao Teng,Litao Wang,Ning Zhang,Na Zhao,Xiaofeng Wang,Qian Li,Xiaomeng Li
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-12-30
卷期号:27 (1): 764-782
标识
DOI:10.1021/acs.biomac.5c02040
摘要
Rapid hemorrhage control and effective tissue regeneration are essential for improving outcomes in trauma and surgical wound management. Adhesive hydrogels adapt to irregular wounds but lack sufficient interconnected macroporosity for effective cell infiltration and tissue remodeling. Herein, a macroporous silk fibroin methacryloyl (SilMA) hydrospongel was developed via a simple foaming strategy. The foamed hydrospongel exhibits gel-like behavior before cross-linking and can be further stabilized through in situ photo-cross-linking. The SilMA hydrospongel achieves rapid hemostasis by absorbing blood and enhancing platelet aggregation and clot formation. Beyond hemostatic performance, its interconnected porous structure facilitates cellular infiltration and supports tissue integration, while its conformability and adhesion ensure seamless conformity to irregular wounds. Furthermore, the hydrospongel reduces fibrosis and scar formation in cutaneous and cardiac wounds by modulating the immune microenvironment. Collectively, this study demonstrates the translational potential of the hydrospongel as a multifunctional system for hemostasis, tissue regeneration, and drug delivery.
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