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一种新型温敏性促生长胶原纤维复合止血凝胶。

A novel thermosensitive growth-promoting collagen fibers composite hemostatic gel.

机构信息

National Engineering Research Centre of Clean Technology in Leather Industry, Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Chengdu 610065, P. R. China.

College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, P. R. China.

出版信息

J Mater Chem B. 2022 Jun 1;10(21):4070-4082. doi: 10.1039/d1tb02644e.

Abstract

As a feasible solution to massive blood loss in emergencies, ensuring the availability of absorbable exogenous topical hemostatic materials is a major current focus. Among the available materials, collagen is a surprising presence, but that does not mean that it is an ideal material from every aspect. Collagen fibers (CFs) and collagen have the same composition in terms of matter, but they have differing spatial structures and hierarchies. CFs can be directly seen as a slight advance on collagen, yet disadvantages relating to their mono-functionality and dosage form restrict their further utilization. It is worth noting that technology for extracting Bletilla striata polysaccharide (BSP), a natural derivative of Bletilla striata, is becoming more advanced. Based on extensive surveys and development studies, hydrogels can show extraordinary development flexibility. In particular, when it comes to wound adaptability and stimuli responsiveness, gels show many advantages. Therefore, we introduced a collagen-based biocompatible and efficient thermosensitive hemostatic hydrogel material (COF). COF is a stable, safe, and bioactive material, and multiple characterization tests confirm this. Upon adjusting the ratios of different materials, COF-3, showing the most comprehensive performance, best hemostatic effects, good gelation speed, and good cell compatibility, was selected. COF-3 was applied during the hemostasis testing of a rat hemorrhage model, and COF-3 achieved hemostasis within 30 s. COF shows promising application and clinical potential, providing an effective route to the achievement of minimally invasive hemostasis and laying a solid foundation for the development of functional hemostatic gels.

摘要

作为紧急情况下大量失血的可行解决方案,确保可吸收外用地止血材料的可用性是当前的主要关注点。在可用的材料中,胶原蛋白是一个令人惊讶的存在,但这并不意味着它在各个方面都是理想的材料。胶原蛋白纤维 (CFs) 和胶原蛋白在物质组成上是相同的,但它们的空间结构和层次不同。CFs 可以被直接视为胶原蛋白的略微进步,但由于其单一功能和剂型的缺点,限制了它们的进一步利用。值得注意的是,从白芨中提取天然衍生的白芨多糖 (BSP) 的技术越来越先进。基于广泛的调查和开发研究,水凝胶可以显示出非凡的开发灵活性。特别是在伤口适应性和刺激响应性方面,凝胶具有许多优势。因此,我们引入了一种基于胶原蛋白的生物相容性和高效热敏止血水凝胶材料 (COF)。COF 是一种稳定、安全和具有生物活性的材料,多项特性测试证实了这一点。通过调整不同材料的比例,选择了具有最全面性能、最佳止血效果、良好的凝胶化速度和良好的细胞相容性的 COF-3。在大鼠出血模型的止血测试中应用 COF-3,COF-3 在 30 秒内实现止血。COF 具有广阔的应用前景和临床潜力,为实现微创止血提供了有效的途径,并为功能性止血凝胶的发展奠定了坚实的基础。

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