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Emerging Nanoclay Composite for Effective Hemostasis

ADVANCED FUNCTIONAL MATERIALS(2018)

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Abstract
Uncontrolled bleeding following trauma is associated with a high risk of death. Here, an emerging kaolinite nanoclay composite (iron oxide-kaolinite, alpha-Fe2O3-kaolin(KAc)) is developed, based on the natural hemostat hematitum used in traditional Chinese medicine to effectively control hemorrhage. alpha-Fe2O3-kaolin(KAc) stops bleeding in approximate to 183 +/- 16 s and exhibits higher hemostatic activity than the related compounds FeOOH-kaolin(KAc) (298 +/- 14 s), gamma-Fe2O3-kaolin(KAc) (212 +/- 11 s), and Fe3O4-kaolin(KAc) (218 +/- 15 s). This rapid effect is attributed to efficient absorption of the fluid in blood, activation of blood platelets, and induction of the coagulation cascade by kaolinite and the aggregation of red blood cells induced by alpha-Fe2O3. alpha-Fe2O3-kaolin(KAc) shows slight hemolysis (<0.11%) as compared to kaolinite (30%), which accelerates wound healing. The biocompatibility, hemostatic activity, and low cost of alpha-Fe2O3-kaolin(KAc) make it a safe and effective agent for preventing massive blood loss after traumatic injury.
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Key words
biocompatibility,hemostasis,iron oxide,kaolinite nanoclay,wound healing
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