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通过天然生物聚合物-纳米粒子杂化粉末将凝聚态血浆转化为黏附凝胶,实现高效止血和伤口愈合。

Cohering Plasma into Adhesive Gel by Natural Biopolymer-Nanoparticle Hybrid Powder for Efficient Hemostasis and Wound Healing.

机构信息

College of Chemistry and Materials Science, Fujian Normal University, Fuzhou,Fujian 350007, China.

Fujian Chuanzheng Communications College, Fuzhou 350007, China.

出版信息

ACS Appl Mater Interfaces. 2024 Mar 6;16(9):11263-11274. doi: 10.1021/acsami.3c17199. Epub 2024 Feb 25.

DOI:10.1021/acsami.3c17199
PMID:38404067
Abstract

Hemostatic powder is commonly used in emergency bleeding control due to its suitability for irregularly shaped wounds, ease of use, and stable storage. However, traditional powder often has limited tissue adhesion and weak thrombus support, which makes it vulnerable to displacement by blood flow. Herein, we have developed a tricomponent hemostatic powder (MQS) composed of mesoporous bioactive glass nanoparticle (MBG), positively charged quaternized chitosan (QCS), and negatively charged catechol-modified alginate (SADA). Upon application to the wound, MBG with its high specific surface area quickly absorbs plasma, concentrating the blood coagulation factor. Simultaneously, the water-soluble QCS and SADA interact with each other and form a net, which can be further cross-linked by MBG. This network efficiently binds and entraps clustered blood coagulation factors, ultimately resulting in the formation of a durable and robust thrombus. Furthermore, the formed net adheres to the injury site, offering protection against thrombus disruption caused by the bloodstream. Benefiting from the synergistic effect of these three components, MQS demonstrates superior hemostatic performance compared to commercial hemostatic powders like Celox in both arterial injuries and noncompressible liver puncture wounds. Furthermore, MQS can effectively accelerate wound healing. In addition, MQS exhibits excellent antibacterial activity, cytocompatibility, and hemocompatibility. These advantages of MQS, including strong blood clotting, wet tissue adherence, antibacterial activity, wound healing ability, biosafety, ease of use, and stable storage, make it a promising hemostatic agent for emergency situations.

摘要

止血粉由于其适用于形状不规则的伤口、使用方便和稳定储存等特点,常用于紧急止血控制。然而,传统的粉末往往具有有限的组织附着力和较弱的血栓支撑力,这使得它容易受到血流的位移。在这里,我们开发了一种由介孔生物活性玻璃纳米粒子(MBG)、带正电荷的季铵化壳聚糖(QCS)和带负电荷的儿茶酚改性海藻酸钠(SADA)组成的三组分止血粉(MQS)。应用于伤口时,具有高比表面积的 MBG 迅速吸收血浆,浓缩血液凝血因子。同时,水溶性 QCS 和 SADA 相互作用形成网络,该网络可进一步与 MBG 交联。该网络有效地结合和捕获聚集的凝血因子,最终形成持久且坚固的血栓。此外,形成的网络附着在损伤部位,防止血流引起的血栓破裂。得益于这三种成分的协同作用,MQS 在动脉损伤和不可压缩性肝穿刺伤口中的止血性能优于 Celox 等商业止血粉。此外,MQS 可以有效地促进伤口愈合。此外,MQS 具有优异的抗菌活性、细胞相容性和血液相容性。MQS 的这些优势,包括强大的凝血、湿组织粘附、抗菌活性、伤口愈合能力、生物安全性、易用性和稳定储存,使其成为一种有前途的紧急情况下的止血剂。

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