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基于壳聚糖和 L. 提取物的生物材料止血能力评估。

Assessment of hemostatic ability of biomaterial based on chitosan andL. extract.

机构信息

Faculty of Pharmacy, Thanh Do University, Kim Chung, Hoai Duc, Hanoi 10000, Vietnam.

Hanoi-Amsterdam High School for the Gifted, 1 Hoang Minh Giam, Cau Giay, Hanoi 10000, Vietnam.

出版信息

Biomed Mater. 2024 Apr 4;19(3). doi: 10.1088/1748-605X/ad386e.

Abstract

The biomaterials based on chitosan andL. extract have been prepared by microemulsion method and solution method (with and without sodium tripolyphosphate (STPP) as a cross-linking agent). The main component inL. extract is flavonoid groups. The structure of the chitosan/extract biomaterials was studied by infrared spectroscopy. The chitosan/extract biomaterial using STPP cross-linker appeared an absorption band at 1152 cmattributed to the vibrations of C-O-P bonds, which proved that chitosan has crosslinked with STPP. The morphology of the biomaterials was investigated by the dynamic light scattering technique and field emission scanning electron microscopy. The obtained results showed that the particle size of the chitosan/extract biomaterials prepared by microemulsion method and solution method with STPP ranged from 68.06 nm to 1484 nm, with an average particle size of 304.9-1019 nm. The microemulsion method produced biomaterials with much smaller average particle size than the solution method using cross-linkers. The hemostatic ability of the biomaterials was better than that of the control sample based on the time of blood clotting formation and glomerular aggregation ability. The sample with the ratio ofL. extract: chitosan of 1:30 had the lowest hemostasis time (6 min 46 s) and its glomerular aggregation rate after 5 min was 13.05%. This indicated that the biomaterials based on chitosan andL. extract are promising for application in biomedicine as hemostatic materials.

摘要

基于壳聚糖和 L.提取物的生物材料已通过微乳液法和溶液法(有和没有三聚磷酸钠(STPP)作为交联剂)制备。L.提取物的主要成分是类黄酮基团。通过红外光谱研究了壳聚糖/提取物生物材料的结构。使用 STPP 交联剂的壳聚糖/提取物生物材料在 1152 cm 处出现一个吸收带归因于 C-O-P 键的振动,这证明壳聚糖已与 STPP 交联。通过动态光散射技术和场发射扫描电子显微镜研究了生物材料的形态。得到的结果表明,通过微乳液法和溶液法(有和没有 STPP)制备的壳聚糖/提取物生物材料的粒径为 68.06nm 至 1484nm,平均粒径为 304.9nm 至 1019nm。与使用交联剂的溶液法相比,微乳液法制备的生物材料具有更小的平均粒径。基于凝血形成时间和肾小球聚集能力的止血能力,生物材料的止血能力优于对照样品。L.提取物:壳聚糖比例为 1:30 的样品的止血时间最短(6 分 46 秒),其 5 分钟后的肾小球聚集率为 13.05%。这表明基于壳聚糖和 L.提取物的生物材料有望作为止血材料在生物医学中得到应用。

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