首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Field- and flow-dependent trapping of red blood cells on polycarbonate accumulation wall in sedimentation field-flow fractionation
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Field- and flow-dependent trapping of red blood cells on polycarbonate accumulation wall in sedimentation field-flow fractionation

机译:沉积场流分馏中聚碳酸酯堆积壁上红细胞的场和流依赖性捕集

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摘要

Sedimentation field-flow fractionation (SdFFF) instrumentation is now mature. Methodological procedure and particle separation development rules are well established even in the case of biological species. However, in some biological applications, retention properties of samples not predicted by any field-flow fractionation (FFF) elution models are observed. It is demonstrated that the trapping of cellular material in the separation system is not related to geometrical instrumentation features but to channel wall characteristics. The physicochemical particle-wass attractive interactions are different depending on the flow-rate and field intensity applied. Separation power in SdFFF for biological species is therefore limited by the intensity of these interactions. In terms of separation, a balance is to be found between external field and flow intensity to limit particle-wall interactions.
机译:沉降场流分馏(SdFFF)仪器现已成熟。即使在生物物种的情况下,方法程序和颗粒分离发展规则也已经很好地建立。但是,在某些生物学应用中,观察到的保留特性未通过任何场流分级分离(FFF)洗脱模型预测。已经证明,细胞物质在分离系统中的捕集与几何仪器特性无关,而与通道壁特性有关。物理化学粒子与瓦斯的吸引作用取决于所应用的流速和场强而有所不同。因此,SdFFF中生物物种的分离能力受到这些相互作用强度的限制。在分离方面,要在外场和流动强度之间找到平衡,以限制颗粒与壁之间的相互作用。

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