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一种源自大鲵皮肤分泌物的仿生止血粉,可实现快速止血和口腔内伤口愈合。

A Bioinspired Hemostatic Powder Derived from the Skin Secretion of Andrias davidianus for Rapid Hemostasis and Intraoral Wound Healing.

机构信息

Chongqing Key Laboratory of Oral Disease and Biomedical Sciences and Chongqing Municipal Key Laboratory of Oral Biomedical Engineering of Higher Education and Stomatological Hospital of Chongqing Medical University, Chongqing, 401174, China.

Division of Engineering in Medicine, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Cambridge, MA, 02139, USA.

出版信息

Small. 2022 Jan;18(3):e2101699. doi: 10.1002/smll.202101699. Epub 2021 Nov 23.

Abstract

High-performance hemostasis has become increasingly essential in treating various traumas. However, available topical hemostats still have various drawbacks and side-effects. Herein, hemostatic powders derived from the skin secretion of Andrias davidianus (SSAD) with controllable particle size are prepared using feasible frozen-ball milling following lyophilization for hemorrhage-control. Scanning electron microscopy, rheometry, and Brunauer-Emmett-Teller test are used to characterize the coagulation-promoting surface topography, rheological properties, and porous structure of the SSAD particles. The blood-coagulation assays showed that the SSAD powders can induce blood-absorption in a particle size-dependent manner. Particle sizes of the SSAD powders larger than 200 µm and smaller than 800 µm greatly affect the blood-clotting rate. Associated with the thromboelastography (TEG) and amino acid/protein composition analyses, the accessibility and diffusion of blood are mainly dependent on the wettability, adhesivity, and clotting factors of the SSAD particles. Rapid hemostasis in vivo further involves three hemorrhage models (liver, femoral artery, and tail) as well as an oral wound model, which suggest favorable hemostatic and simultaneous regenerative effects of the SSAD hemostatic powder. Considering its degradability and good biocompatibility, SSAD can be an optimal candidate for a new class of inexpensive, natural, and promising hemostatic and wound-dressing agent.

摘要

高性能止血在治疗各种创伤中变得越来越重要。然而,现有的局部止血剂仍然存在各种缺点和副作用。本文通过冻干后的可行冷冻球磨法,制备了源自大鲵皮肤分泌物(SSAD)的、具有可控粒径的止血粉末,用于控制出血。扫描电子显微镜、流变仪和 Brunauer-Emmett-Teller 测试用于表征 SSAD 颗粒的促凝血表面形貌、流变性能和多孔结构。血液凝固试验表明,SSAD 粉末可以以粒径依赖的方式诱导血液吸收。粒径大于 200μm 且小于 800μm 的 SSAD 粉末极大地影响了凝血速率。与血栓弹性图(TEG)和氨基酸/蛋白质组成分析相关,血液的可及性和扩散主要取决于 SSAD 颗粒的润湿性、粘附性和凝血因子。体内快速止血进一步涉及三种出血模型(肝脏、股动脉和尾巴)以及口腔伤口模型,这表明 SSAD 止血粉末具有良好的止血和同时再生效果。考虑到其可降解性和良好的生物相容性,SSAD 可以成为一种新型廉价、天然、有前途的止血和伤口敷料的最佳候选材料。

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