Unilateral thermosensitive Janus hemostatic dressing for matching coagulation physiological processes

凝结 止血剂 止血 止血剂 医学 生物医学工程 外科 内科学
作者
C Chen,Yicheng Zhang,Siqi Chen,Qinhui Chen
出处
期刊:Journal of Materials Chemistry B [Royal Society of Chemistry]
卷期号:13 (17): 5138-5149 被引量:1
标识
DOI:10.1039/d4tb02871f
摘要

Hemostatic dressings are a simple and effective method for managing bleeding emergencies. Based on the blood coagulation process, hemostatic dressings work optimally by aggregating hemocytes and releasing coagulation factors, sealing blood in a sequential manner. Janus materials, which have different compartmentalized components, have the ability to independently perform multiple functions. In this study, a Janus nonwoven fabric with thermo-sensitivity on one side, is designed to be consistent with the physiological process of coagulation. When utilized for hemostasis, the poly(N-isopropylacrylamide) (PNIPAM) side of the Janus material undergoes a phase transition within 1 minute. Prior to this, it adsorbs blood at the injured site and aggregates hemocytes to form a primary thrombus; afterwards, it helps sealing the site to decrease blood loss. During this process, the bioactive glass (BG) side continuously releases SiO44- and Ca2+ to activate coagulation factors and accelerate the cascade reaction. The phase transition and hydrophilic/hydrophobic transition of the material are triggered by body temperature and are rapidly completed, just like clicking a switch. In a rat femoral artery model, the blood loss using Janus BG-PNIPAM was only 0.15 g, which is 17.4% and 20.0% the blood loss level achieved by CN and QuikClot® gauze, respectively. Furthermore, the biosafety profile of Janus BG-PNIPAM provides assurance for potential clinical applications.
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