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负载凝血酶的丝素蛋白-明胶止血海绵用于伤口止血和组织再生。

Silk fibroin-gelatine haemostatic sponge loaded with thrombin for wound haemostasis and tissue regeneration.

作者信息

Zhang Yajun, Li Ming, Chang Jing, Li Chang, Hui Yuwen, Wang Yanhua, Xu Weiguo

机构信息

Clinical School/Colledge of Orthopedics, Tianjin Medical University, 406 South Jiefang Road, Hexi District, Tianjin 300270, China.

Trauma Medicine Center, Peking University People's Hospital, 39 Nanfeng West 1st Road, Tongzhou District, Beijing 100044, China.

出版信息

Burns Trauma. 2024 Oct 13;12:tkae026. doi: 10.1093/burnst/tkae026. eCollection 2024.

Abstract

BACKGROUND

Wound haemostasis is an important part of clinical treatments, especially treatments for patients with avulsion injury, destructive injury and large-scale soft tissue injury. Therefore, developing fast and effective haemostatic materials is critical. This study aimed to design a novel and efficient silk fibroin-gelatine composite haemostatic sponge loaded with thrombin (SFG@TB) to assist in wound haemostasis.

METHODS

The SFG@TB composite haemostatic sponge was formed with gelatine, silk fibroin and thrombin through a freeze-drying technique. First, the material characteristics of SFG@TB were measured, including the elastic modulus, swelling rate and porosity. Second, cell coculture experiments, embedding experiments and haemolytic analyses were performed to evaluate the biocompatibility of SFG@TB. Then, coagulation experiments and femoral artery and liver bleeding models were used to evaluate the haemostatic performance of SFG@TB. Finally, the ability of SFG@TB to promote tissue healing was evaluated through experiments with Sprague-Dawley rat models of injury.

RESULTS

Compared with gelatine sponges, SFG@TB exhibited outstanding mechanical properties and water absorption properties. In addition, the excellent biosafety of the composite haemostatic sponge was confirmed by cell experiments, subcutaneous embedding experiments and haemolytic analysis. Based on the coagulation test results, SFG@TB exhibited greater adhesion of red blood cells and platelets and a shorter dynamic coagulation time. Compared to the use of silk fibroin-gelatine composite haemostatic sponges or gelatine sponges, the introduction of thrombin resulted in a shorter haemostasis time and a smaller bleeding volume, as revealed by coagulation tests. The experiments with Sprague-Dawley rat models of injury indicated that SFG@TB accelerated the wound healing process and reduced scar width, which was accompanied by thicker granulation tissue.

CONCLUSIONS

Overall, the SFG@TB composite haemostatic sponge, which exhibits outstanding mechanical properties, good haemostatic performance and high biosafety, promoted wound haemostasis and tissue repair. Therefore, the SFG@TB composite haemostatic sponge could be a promising material for wound haemostasis.

摘要

背景

伤口止血是临床治疗的重要组成部分,尤其是对于撕脱伤、破坏性损伤和大面积软组织损伤患者的治疗。因此,开发快速有效的止血材料至关重要。本研究旨在设计一种新型高效的负载凝血酶的丝素蛋白-明胶复合止血海绵(SFG@TB)以辅助伤口止血。

方法

通过冷冻干燥技术,将明胶、丝素蛋白和凝血酶制成SFG@TB复合止血海绵。首先,测量SFG@TB的材料特性,包括弹性模量、膨胀率和孔隙率。其次,进行细胞共培养实验、包埋实验和溶血分析,以评估SFG@TB的生物相容性。然后,利用凝血实验以及股动脉和肝脏出血模型来评估SFG@TB的止血性能。最后,通过对Sprague-Dawley大鼠损伤模型进行实验,评估SFG@TB促进组织愈合的能力。

结果

与明胶海绵相比,SFG@TB表现出优异的力学性能和吸水性能。此外,细胞实验、皮下包埋实验和溶血分析证实了复合止血海绵具有良好的生物安全性。基于凝血试验结果,SFG@TB对红细胞和血小板的黏附性更强,动态凝血时间更短。凝血试验表明,与使用丝素蛋白-明胶复合止血海绵或明胶海绵相比,引入凝血酶可缩短止血时间,减少出血量。对Sprague-Dawley大鼠损伤模型进行的实验表明,SFG@TB加速了伤口愈合过程,减小了瘢痕宽度,同时肉芽组织更厚。

结论

总体而言,SFG@TB复合止血海绵具有优异的力学性能、良好的止血性能和较高的生物安全性,可促进伤口止血和组织修复。因此,SFG@TB复合止血海绵可能是一种很有前景的伤口止血材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e98/11471902/a116b7af6978/tkae026ga1.jpg

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