Ko Young-Gwang, Kim Byeong Nam, Kim Eun Jin, Chung Ho Yun, Park Seong Yong, Kim Young-Jin, Kwon Oh Hyeong
Department of Polymer Science and Engineering, Kumoh National Institute of Technology, Gumi 39177, Korea.
Theracion Biomedical Co., Ltd., Seongnam 13201, Korea.
Polymers (Basel). 2022 Sep 19;14(18):3909. doi: 10.3390/polym14183909.
In contrast to hemostatic fabrics, foams, and gels, hemostatic spray powders may be conveniently applied on narrow and complex bleeding sites. However, powdered hemostatic agents are easily desorbed from the bleeding surface because of blood flow, which seriously decreases their hemostatic function. In this study, the hemostatic performance of a bioabsorbable powder with decreased desorption was investigated. The proposed hemostatic powder (OOZFIXTM) is an ionic assembly of carboxymethyl starch and calcium. The microstructure and chemical properties of the hemostatic powder were analyzed. The hemostatic performance (blood absorption, blood absorption rate, and coagulation time), thromboelastography (TEG), rheology, adhesion force, and C3a complement activation of the OOZFIXTM were evaluated and compared with those of the carboxymethyl starch-based commercial hemostatic powder (AristaTM AH). The in vivo rat hepatic hemorrhage model for hemostasis time and bioabsorption of the OOZFIXTM showed quick biodegradation (<3 weeks) and a significantly improved hemostasis rate (78 ± 17 s) compared to that of AristaTM AH (182 ± 11) because of the reduced desorption. The bioabsorbable hemostatic powder OOZFIXTM is expected to be a promising hemostatic agent for precise medical surgical treatments.
与止血织物、泡沫和凝胶不同,止血喷雾粉末可方便地应用于狭窄和复杂的出血部位。然而,由于血流的原因,粉末状止血剂很容易从出血表面解吸,这严重降低了它们的止血功能。在本研究中,对一种解吸减少的可生物吸收粉末的止血性能进行了研究。所提出的止血粉末(OOZFIXTM)是羧甲基淀粉和钙的离子组装体。分析了止血粉末的微观结构和化学性质。评估了OOZFIXTM的止血性能(血液吸收、血液吸收率和凝血时间)、血栓弹力图(TEG)、流变学、粘附力和C3a补体激活,并与基于羧甲基淀粉的商用止血粉末(AristaTM AH)进行了比较。OOZFIXTM在体内大鼠肝出血模型中的止血时间和生物吸收显示出快速生物降解(<3周),并且由于解吸减少,与AristaTM AH(182±11)相比,止血率显著提高(78±17秒)。可生物吸收的止血粉末OOZFIXTM有望成为精确医疗手术治疗中有前景的止血剂。