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A Biodegradable Hemostatic Gelatin/Polycaprolactone Composite for Surgical Hemostasis

医学 聚己内酯 止血 生物相容性 复合数 明胶 生物医学工程 复合材料 外科 材料科学 生物化学 化学 冶金 聚合物
作者
Niann‐Tzyy Dai,Keng‐Yen Fu,Pai‐Shan Hsieh,Yu-Min Hung,Yun-Lung Fang,Nien-Chi Huang,Tzu-Wei Lu,Lien‐Guo Dai,Shyi-Gen Chen,Tim-Mo Chen
出处
期刊:Annals of Plastic Surgery [Lippincott Williams & Wilkins]
卷期号:78 (3): S124-S128 被引量:12
标识
DOI:10.1097/sap.0000000000001017
摘要

Massive bleeding is the leading cause of battlefield-related deaths and the second leading cause of deaths in civilian trauma centers. One of the challenges of managing severe wounds is the need to promote hemostasis as quickly as possible, which can be achieved by using hemostatic dressings. In this study, we fabricated 2 kinds of gelatin/polycaprolactone composites with 2 ratios of gelatin/polycaprolactone, 1:1 and 2:1 (GP11 and GP21, respectively). Scanning electron microscopy revealed that the GP11 composite exhibited rougher and more porous structure than the GP21 composite did. Furthermore, both composites showed similar biocompatibility as that of tissue culture polystyrene. Moreover, both GP composites tended to show a gradual decrease in contact angle to zero within 40 minutes. The in vitro blood plasma coagulation assay revealed that the prothrombin time was significantly longer for the GP composites than it was for the Quikclot composite, whereas the activated partial thromboplastin time of the GP11 composite was significantly shorter than that of the gauze. Furthermore, the GP11 had the largest platelet adsorption of all the composites. The in vivo coagulation test showed an obvious shortening of the bleeding time with the Quikclot and GP21 compared with gauze sample. In conclusion, the GP composites showed superior biocompatibility and hemostasis to the gauze and comparable effects with the Qickclot composite. Therefore, the GP composites have the potential for development as biodegradable surgical hemostatic agents.
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