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首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Experimental design methodology applied to the study of channel dimensions on the elution of red blood cells in gravitational field flow fractionation
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Experimental design methodology applied to the study of channel dimensions on the elution of red blood cells in gravitational field flow fractionation

机译:实验设计方法论应用于重力场流分离中红细胞洗脱通道尺寸的研究

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Field flow fractionation (FFF) separation techniques have gained considerable success with micron-sized species. Living red blood cells (RBCs) of any origin have emerged as ideal models for cell separation development. Their elution mode is now described as "Lift-Hyperlayer". Certain separator dimension parameters are known to playa key role in the separation and band spreading process. Systematic studies of channel dimensions effects on RBC retention. band spreading. peak capacity and on a novel parameter described as "Particle Selectivity" were set up by means of a two-level factorial experimental design. From experimental results and statistical calculations it is confirmed that channel thickness plays a major role in retention ratio, peak variance, peak capacity and particle selectivity. Channel breadth strongly influences plate height, with lower impact on peak capacity and particle selectivity. Retention ratio, peak variance and peak capacity observed results are modulated by second-order interactions between channel dimensions. Preliminary rules for channel configurations are therefore set up and depend on separation goals. It is shown that a very polydisperse population is best disentangled in a thin and narrow channel whatever its length. If a mixture of many different micron-sized species is considered (each of limited polydispersities); a thick and broad channel should be preferred, with length modulating peak capacity to disentangle this polymodal mixture.
机译:场流分级分离(FFF)分离技术已在微米大小的物种上取得了相当大的成功。任何来源的活血红细胞(RBC)都已成为细胞分离发展的理想模型。现在将其洗脱模式称为“提升层”。已知某些分离器尺寸参数在分离和频带扩展过程中起关键作用。渠道尺寸对RBC保留率的系统研究。乐队传播。通过两级因子实验设计,建立了峰容量和一个称为“粒子选择性”的新参数。从实验结果和统计计算可以证实,通道厚度在保留率,峰方差,峰容量和颗粒选择性方面起着重要作用。通道宽度对板高有很大影响,而对峰容量和颗粒选择性的影响较小。保留率,峰方差和峰容量观察到的结果受通道尺寸之间的二阶相互作用调节。因此,建立了通道配置的初步规则,并取决于分离目标。结果表明,无论其长度如何,多分散的种群都最好在细而窄的通道中解开缠结。如果考虑了许多不同的微米级物质的混合物(每种均具有有限的多分散性);较宽的通道应该是优选的,其长度可调节峰容量以解开该多峰混合物。

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