生物相容性
止血剂
伤口愈合
止血
抗菌剂
止血器
凝血
海绵
生物医学工程
纤维素
纳米纤维素
材料科学
医学
药理学
外科
化学
微生物学
生物化学
冶金
生物
植物
作者
Shengyu Li,Xijin Wu,Ningning Bai,Jianyu Ni,Xianli Liu,Weiye Mao,Lu Jin,Hai Xiang,Huiying Fu,Qiyang Shou
标识
DOI:10.1021/acsbiomaterials.3c00018
摘要
Uncontrolled hemorrhage and infection are the main reasons for many trauma-related deaths in both clinic and battlefield. However, most hemostatic materials have various defects and side effects, such as low hemostatic efficiency, poor biocompatibility, weak degradation ability, and lack of antimicrobial properties. Herein, an oxidized cellulose (OC) sponge with antibacterial properties and biosafety was fabricated for hemorrhage control and wound healing. The as-prepared OC sponges were prone to water triggered expansion and superabsorbent capacity, which could facilitate blood component concentration effectively. Importantly, they had significant biodegradability with little irritation to the skin. This hemostat could also reduce the plasma clotting time to 53.54% in vitro and demonstrated less blood loss than commercially available hemostatic agents (GS) in a mouse model of bleeding from liver defects. Furthermore, the biocompatibility antimicrobial properties and possible hemostatic mechanism of the OC sponge were also systematically evaluated. Importantly, the potential wound healing applications have also been demonstrated. Therefore, the materials have broad clinical application prospects.
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