College of Chemistry and Chemical Engineering, College of Materials Science and Engineering, Institute of Biomedical Materials and Engineering, Qingdao University, Qingdao 266071, China.
College of Chemistry and Chemical Engineering, College of Materials Science and Engineering, Institute of Biomedical Materials and Engineering, Qingdao University, Qingdao 266071, China; School of Materials Science and Engineering, Shandong University of Technology, Zibo 255000, China.
Int J Biol Macromol. 2024 Feb;257(Pt 1):128299. doi: 10.1016/j.ijbiomac.2023.128299. Epub 2023 Nov 25.
Bleeding from uncontrollable wounds can be fatal, and the body's clotting mechanisms are unable to control bleeding in a timely and effective manner in emergencies such as battlefields and traffic accidents. For irregular and inaccessible wounds, hemostatic materials are needed to intervene to stop bleeding. Hemostatic microspheres are promising for hemostasis, as their unique structural features can promote coagulation. There is a wide choice of materials for the preparation of microspheres, and the modification of natural macromolecular materials such as chitosan to enhance the hemostatic properties and make up for the deficiencies of synthetic macromolecular materials makes the hemostatic microspheres multifunctional and expands the application fields of hemostatic microspheres. Here, we focus on the hemostatic mechanism of different materials and the preparation methods of microspheres, and introduce the modification methods, related properties and applications (in cancer therapy) for the structural characteristics of hemostatic microspheres. Finally, we discuss the future trends of hemostatic microspheres and research opportunities for developing the next generation of hemostatic microsphere materials.
出血无法控制的伤口可能是致命的,身体的凝血机制无法在战场和交通事故等紧急情况下及时有效地控制出血。对于不规则和难以到达的伤口,需要止血材料进行干预以止血。止血微球在止血方面具有很大的潜力,因为它们独特的结构特征可以促进凝血。用于制备微球的材料选择广泛,对壳聚糖等天然大分子材料进行修饰以增强止血性能并弥补合成大分子材料的不足,使止血微球具有多功能性并扩大了止血微球的应用领域。在这里,我们重点介绍不同材料的止血机制和微球的制备方法,并介绍止血微球结构特征的修饰方法、相关性能和应用(在癌症治疗中)。最后,我们讨论了止血微球的未来趋势和开发下一代止血微球材料的研究机会。