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硅质骨针理化特性对止血效果的影响。

Influence of the physicochemical characteristics of diatom frustules on hemorrhage control.

机构信息

Key Laboratory of Mariculture, Ocean University of China, Ministry of Education, Qingdao 266003, China.

出版信息

Biomater Sci. 2019 Apr 23;7(5):1833-1841. doi: 10.1039/c9bm00099b.

DOI:10.1039/c9bm00099b
PMID:30907899
Abstract

Uncontrollable hemorrhage is the main cause of death in military and civilian accidents. It is therefore necessary and an urgent requirement to develop a safe and efficient hemostatic material. In this study, the hemostatic performance of frustules of three centric diatom species (Thalassiosira weissflogii, Thalassiosira sp., and Cyclotella cryptica) with similar shapes and different sizes was investigated. The complicated structure of T. weissflogii, leading to its highest BET surface area (169.5 m2 g-1) and liquid absorption (51.4 ± 1.6 times the weight of liquid), exhibited the shortest hemostasis time (158 ± 8.19 s) in in vitro blood coagulation. Thalassiosira sp. had a shorter hemostasis time (167.33 ± 14.74 s) than that of QuikClot® and C. cryptica, indicating that diatom size also played an important role in hemostasis due to the interface reaction between the material and plasma protein. The in vivo hemostasis results further confirmed this conclusion. Diatom frustules also exhibited favorable blood compatibility (<5%), and no significant cell toxicity could be observed from the three frustules. Our results suggest that the coagulation effect of frustules is strengthened upon a decrease in the size and increase in the liquid absorbability. This report provides valuable information for the medical application of diatom frustules in the field of hemorrhage control.

摘要

不可控制的出血是军事和民用事故中死亡的主要原因。因此,开发安全有效的止血材料是必要的和紧迫的要求。在这项研究中,研究了三种中心硅藻物种(Thalassiosira weissflogii、Thalassiosira sp.和Cyclotella cryptica)的壳的止血性能,它们具有相似的形状和不同的大小。T. weissflogii 的复杂结构导致其具有最高的 BET 表面积(169.5 m2 g-1)和液体吸收(重量为液体的 51.4 ± 1.6 倍),在体外血液凝固中表现出最短的止血时间(158 ± 8.19 s)。Thalassiosira sp. 的止血时间(167.33 ± 14.74 s)比 QuikClot®和 C. cryptica 短,这表明由于材料与血浆蛋白之间的界面反应,硅藻大小也在止血中起重要作用。体内止血结果进一步证实了这一结论。硅藻壳还表现出良好的血液相容性(<5%),从三种壳中均未观察到明显的细胞毒性。我们的结果表明,壳的凝血效果随着尺寸的减小和液体吸收能力的增加而增强。本报告为硅藻壳在控制出血领域的医学应用提供了有价值的信息。

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