止血
伤口愈合
海绵
生物相容性
化学
粘附
酵母
葡聚糖
胶粘剂
体外
微生物学
生物化学
生物医学工程
药理学
外科
生物
医学
有机化学
图层(电子)
植物
作者
Zongbao Zhou,Jiangwei Xiao,Sheng Huang,Hengpeng Wu,Shuwen Guan,Tingting Wu,Shan Yu,Shuai Huang,Botao Gao
标识
DOI:10.1016/j.ijbiomac.2023.123158
摘要
Local hemostats still face obstacles to efficiently achieving hemostasis and promoting wound healing. Herein, a series of multifunctional well-degradable hemostatic sponges based-on carboxymethylated yeast β-glucan (CMYG) were fabricated by lyophilization. The porous CMYG sponge not only could absorb blood quickly (44.12 g/g), but also possessed unexpected tissue adhesion (∼30 kPa), and it represented good biocompatibility in vitro on fibroblasts and red blood cells. Notably, compared with the commercial Celox™, the CMYG sponge achieved more rapid hemostasis and significantly reduced blood loss in liver injury rat models by rapid wound block. Interestingly, the developed sponge showed an outstanding effect on antioxidant, anti-infection, anti-inflammatory, and cell proliferation, which are beneficial for further wound repair. Overall, these results suggest that the CMYG sponge is a promising candidate for the clinical management of uncontrollable hemorrhage and the further development of wound dressing materials throughout skin defect repair.
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