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Membrane materials for storing biological samples intended for comparative nanotoxicological testing

机译:用于储存用于比较纳米毒理学测试的生物样品的膜材料

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The study is aimed at identifying the samples of most promising membrane materials for storing dry specimens of biological fluids (Dried Blood Spots, DBS technology). Existing sampling systems using cellulose fiber filter paper have a number of drawbacks such as uneven distribution of the sample spot, dependence of the spot spreading area on the individual biosample properties, incomplete washing-off of the sample due to partially inconvertible sorption of blood components on cellulose fibers, etc. Samples of membrane materials based on cellulose, polymers and glass fiber with applied biosamples were studied using methods of scanning electron microscopy, FT-IR spectroscopy and surface-wetting measurement. It was discovered that cellulose-based membrane materials sorb components of biological fluids inside their structure, while membranes based on glass fiber display almost no interaction with the samples and biological fluid components dry to films in the membrane pores between the structural fibers. This characteristic, together with the fact that membrane materials based on glass fiber possess sufficient strength, high wetting properties and good storage capacity, attests them as promising material for dry samples of biological fluids storage systems.
机译:该研究旨在鉴定用于储存生物流体的干燥标本(干血斑,DBS技术)的最有前途膜材料的样品。使用纤维素纤维滤纸的现有采样系统具有许多缺点,例如样品点的分布不均匀,斑块扩散区域对单独的生物特性,由于血液成分的部分不可逆转吸附而不完全洗涤。利用扫描电子显微镜,FT-IR光谱和表面润湿测量,研究了基于纤维素,聚合物和玻璃纤维的纤维素纤维等基于纤维素,聚合物和玻璃纤维的样品。而基于玻璃纤维显示器上的膜几乎与样品和生物液体组分没有相互作用干燥以在膜中的膜结构纤维之间的孔隙已发现它们的结构内的生物流体的该基于纤维素的膜材料SORB分量。这种特性以及基于玻璃纤维的膜材料具有足够的强度,高润湿性能和良好的储存能力,证明了它们作为生物流体储存系统的干燥样品的有希望的材料。

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