KAOLIN-BASED HEMOSTATIC MATERIAL WITH ANTI-INFLAMMATORY FUNCTION AND PREPARATION METHOD AND USE THEREOF
卷宗概要
申请人
CHINA UNIVERSITY OF GEOSCIENCES (WUHAN)
发明人
Huaming YANG; Qianwen WU; Hao WANG
IPC 分类
CPC 分类
The present disclosure relates to the technical field of hemostatic materials, and particularly relates to a kaolin-based hemostatic material with an anti-inflammatory function and a preparation method and use thereof. The kaolin-based hemostatic material with the anti-inflammatory function in the present disclosure includes CeOnanoparticle-loaded kaolin. The preparation method includes: mixing kaolin, cerium chloride, sodium carbonate, and sodium chloride in a mass ratio, and ball-milling to produce a precursor; and roasting the precursor to produce the kaolin-based hemostatic material with the anti-inflammatory function. In the present disclosure, with low-cost and abundantly-available kaolinite and the conventional CeOas raw materials, a CeO-loaded kaolin-based nanomaterial is prepared through mechanochemical synthesis. The prepared CeO/K nanomaterial has synergistic anti-inflammatory and hemostatic activities.
原文(中文)
The present disclosure relates to the technical field of hemostatic materials, and particularly relates to a kaolin-based hemostatic material with an anti-inflammatory function and a preparation method and use thereof. The kaolin-based hemostatic material with the anti-inflammatory function in the present disclosure includes CeOnanoparticle-loaded kaolin. The preparation method includes: mixing kaolin, cerium chloride, sodium carbonate, and sodium chloride in a mass ratio, and ball-milling to produce a precursor; and roasting the precursor to produce the kaolin-based hemostatic material with the anti-inflammatory function. In the present disclosure, with low-cost and abundantly-available kaolinite and the conventional CeOas raw materials, a CeO-loaded kaolin-based nanomaterial is prepared through mechanochemical synthesis. The prepared CeO/K nanomaterial has synergistic anti-inflammatory and hemostatic activities.