Shandong Provincial Key Laboratory of Molecular Engineering, School of Chemistry and Chemical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, P. R. China.
Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University, Chengdu 610065, P. R. China.
Biomacromolecules. 2023 Jul 10;24(7):3327-3344. doi: 10.1021/acs.biomac.3c00357. Epub 2023 Jun 27.
Uncontrolled bleeding in emergency situations is a great threat to both military and civilian lives, and an ideal hemostat for effectively controlling prehospital hemorrhage is urgently needed but still lacking. Although hemostatic hydrogels are promising for emergency hemostasis, they are currently challenged by either the mutual exclusion between a short gelation time and strong adhesive network or the insufficient functionality of ingredients and complicated operations for in situ curing. Herein, an extracellular matrix biopolymer-based and multifunctional hemostatic hydrogel that simultaneously integrates rapid thermoresponsive gelation, robust wet adhesion, and ease of use in emergencies is rationally engineered. This hydrogel can be conveniently used via simple injection and achieves instant sol-gel phase transition at body temperature. Its comprehensive performance could be facilely regulated by tuning the proportions of components, and the optimal performance (gelation time 6-8 s, adhesion strength 125 ± 3.6 kPa, burst pressure 282 ± 4.1 mmHg) is established due to the coordinated enhancement of the photo-cross-linking pretreatment and the hydrophilic-hydrophobic balance among various interactions in the hydrogel system. Additionally, it exhibits significant coagulation effect and enables effective hemostasis and wound healing . This work provides a promising platform for versatile applications of hydrogel-based materials, including emergency hemostasis.
在紧急情况下,无法控制的出血对军人和平民的生命都是一个巨大的威胁,因此急需一种理想的止血剂来有效控制院前出血,但目前仍缺乏这种止血剂。尽管止血水凝胶在紧急止血方面很有前景,但它们目前面临着凝胶时间短和粘性网络强之间相互排斥的问题,或者是成分功能不足以及原位固化操作复杂的问题。在这里,合理设计了一种基于细胞外基质生物聚合物的多功能止血水凝胶,它同时集成了快速的温度响应凝胶化、强大的湿粘附性以及在紧急情况下使用的便利性。这种水凝胶可以通过简单的注射方便使用,并在体温下实现即时溶胶-凝胶相转变。通过调整各组分的比例可以方便地调节其综合性能,由于光交联预处理和水凝胶系统中各种相互作用之间的亲水-疏水平衡的协同增强,建立了最佳性能(凝胶时间 6-8 s,粘附强度 125 ± 3.6 kPa,爆破压力 282 ± 4.1 mmHg)。此外,它还表现出显著的凝血效果,能够实现有效的止血和伤口愈合。这项工作为基于水凝胶的材料的多功能应用提供了一个有前途的平台,包括紧急止血。