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伤口护理中的止血材料。

Hemostatic materials in wound care.

作者信息

Yu Peiyu, Zhong Wen

机构信息

Department of Biosystems Engineering, University of Manitoba, 75A Chancellor's Circle, Winnipeg, MB, R3T 2N2 Canada.

出版信息

Burns Trauma. 2021 Sep 15;9:tkab019. doi: 10.1093/burnst/tkab019. eCollection 2021.

Abstract

Blood plays an essential role in the human body. Hemorrhage is a critical cause of both military and civilian casualties. The human body has its own hemostatic mechanism that involves complex processes and has limited capacity. However, in emergency situations such as battlefields and hospitals, when the hemostatic mechanism of the human body itself cannot stop bleeding effectively, hemostatic materials are needed for saving lives. In this review, the hemostatic mechanisms and performance of the most commonly used hemostatic materials, (including fibrin, collagen, zeolite, gelatin, alginate, chitosan, cellulose and cyanoacrylate) and the commercial wound dressings based on these materials, will be discussed. These materials may have limitations, such as poor tissue adhesion, risk of infection and exothermic reactions, that may lessen their hemostatic efficacy and cause secondary injuries. High-performance hemostatic materials, therefore, have been designed and developed to improve hemostatic efficiency in clinical use. In this review, hemostatic materials with advanced performances, such as antibacterial capacity, superhydrophobicity/superhydrophilicity, superelasticity, high porosity and/or biomimicry, will be introduced. Future prospects of hemostatic materials will also be discussed in this review.

摘要

血液在人体中起着至关重要的作用。出血是导致军事和 civilian 伤亡的关键原因。人体自身具有止血机制,该机制涉及复杂的过程且能力有限。然而,在战场和医院等紧急情况下,当人体自身的止血机制无法有效止血时,就需要止血材料来挽救生命。在本综述中,将讨论最常用的止血材料(包括纤维蛋白、胶原蛋白、沸石、明胶、藻酸盐、壳聚糖、纤维素和氰基丙烯酸酯)及其基于这些材料的商用伤口敷料的止血机制和性能。这些材料可能存在局限性,如组织粘附性差、感染风险和放热反应等,这可能会降低它们的止血效果并导致二次损伤。因此,已经设计和开发了高性能止血材料以提高临床使用中的止血效率。在本综述中,将介绍具有先进性能的止血材料,如抗菌能力、超疏水性/超亲水性、超弹性、高孔隙率和/或仿生学。本综述还将讨论止血材料的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f13c/8445204/107fbf83988d/tkab019f1.jpg

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