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用于快速止血的自凝胶、可调节粘附性、抗菌且生物相容的季铵化纤维素/单宁酸/聚乙二醇/蒙脱石复合粉末

Self-gelling, tunable adhesion, antibacterial and biocompatible quaternized cellulose/tannic acid/polyethylene glycol/montmorillonite composite powder for quick hemostasis.

作者信息

Liu Xuanyu, Hu Yinchun, Hu Junjie, Bai Miaomiao, Kang Min, Wei Yan, Huang Di

机构信息

Department of Biomedical Engineering, Research Center for Nano-biomaterials & Regenerative Medicine, College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, PR China.

Department of Biomedical Engineering, Research Center for Nano-biomaterials & Regenerative Medicine, College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, PR China.

出版信息

Int J Biol Macromol. 2024 Dec;282(Pt 1):136646. doi: 10.1016/j.ijbiomac.2024.136646. Epub 2024 Oct 21.

DOI:10.1016/j.ijbiomac.2024.136646
PMID:39442851
Abstract

Hemostatic powders are widely used in incompressible or irregularly shaped bleeding wounds, but traditional hemostatic powders exhibit low adhesion, unsatisfactory hemostatic effect, limited infection control, and are not suitable for clinical or emergency situations. This study developed a novel self-gelling hemostatic powder (QTPM) consisting of quaternized cellulose (QC)/ tannic acid (TA)/ polyethylene glycol (PEG)/ montmorillonite (MMT). QTPM could absorb interfacial liquid hydrating to a stable hydrogel which form a switchable adhesion to tissues. Moreover, QTPM exhibits excellent antibacterial property by the synergistic effect of QC and TA. Furthermore, QTPM directly activate intrinsic and extrinsic coagulation hemostatic pathways to enhance hemostasis, and it concentrate coagulation factors. In vivo hemostasis study results show that QTPM significantly accelerated hemostasis and reduced blood loss compared with the blank group (>75 % reduction in hemostatic time, >85 % reduction in blood loss) in liver bleeding model (hemostasis time of 71.67 ± 7.09 s, blood loss of 19.23 ± 2.60 mg) and tail amputation model (hemostasis time of 91.03 ± 12.05 s, blood loss of 15.24 ± 1.77 mg). Therefore, the advantages of QTPM including rapid and effective hemostasis, easy usage, easy storability and adaptability make it a potential biomaterial for rapid hemostasis direction in the clinical setting.

摘要

止血粉广泛应用于不可压缩或形状不规则的出血伤口,但传统止血粉存在粘附性低、止血效果不理想、感染控制有限等问题,不适用于临床或紧急情况。本研究开发了一种新型自凝胶止血粉(QTPM),它由季铵化纤维素(QC)/单宁酸(TA)/聚乙二醇(PEG)/蒙脱石(MMT)组成。QTPM可吸收界面液体并水合形成稳定的水凝胶,该水凝胶对组织具有可切换的粘附性。此外,QTPM通过QC和TA的协同作用表现出优异的抗菌性能。此外,QTPM直接激活内源性和外源性凝血止血途径以增强止血作用,并浓缩凝血因子。体内止血研究结果表明,在肝出血模型(止血时间为71.67±7.09秒,失血量为19.23±2.60毫克)和断尾模型(止血时间为91.03±12.05秒,失血量为15.24±1.77毫克)中,与空白组相比,QTPM显著加速了止血并减少了失血量(止血时间减少>75%,失血量减少>85%)。因此,QTPM具有快速有效止血、使用方便、易于储存和适应性强等优点,使其成为临床环境中快速止血方向的潜在生物材料。

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