首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Fibre-based electrofluidics on low cost versatile 3D printed platforms for solute delivery, separations and diagnostics; from small molecules to intact cells
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Fibre-based electrofluidics on low cost versatile 3D printed platforms for solute delivery, separations and diagnostics; from small molecules to intact cells

机译:低成本多功能3D打印平台上的基于纤维的电流体,用于溶质输送,分离和诊断;从小分子到完整细胞

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摘要

A novel and effective fibre-based microfluidic methodology was developed to move and isolate charged solutes, biomolecules, and intact bacterial cells, based upon a novel multi-functional 3D printed supporting platform, with potential applications in the fields of microfluidics and biodiagnostics. Various on-fibre electrophoretic techniques are demonstrated to separate, pre-concentrate, move, split, or cut and collect the isolated zones of target solutes, including proteins and live bacterial cells. The use of knotting to link different fibre materials, and the unique ability of this approach to physically concentrate solutes in different locations are shown such that the concentrated solutes can be physically isolated and easily transferred to other fibres. Application of this novel fibre-based technique within a potential diagnostic platform for urinary tract infection is shown, together with the post-electrophoretic incubation of live bacterial cells, demonstrating the cell survival following on-fibre electrophoretic concentration.
机译:基于新型的多功能3D打印支持平台,开发了一种新颖且有效的基于纤维的微流体方法,以移动和分离带电的溶质,生物分子和完整的细菌细胞,在微流体和生物诊断领域具有潜在的应用。各种纤维上电泳技术被证明可以分离,预浓缩,移动,分裂或切割和收集目标溶质的分离区域,包括蛋白质和活细菌细胞。显示了使用打结连接不同纤维材料的方法,以及这种方法在不同位置物理浓缩溶质的独特能力,因此可以将分离的溶质进行物理隔离,并轻松转移到其他纤维上。显示了这种基于纤维的新技术在尿路感染的潜在诊断平台中的应用,以及活细菌细胞的电泳后孵育,证明了纤维上电泳浓缩后的细胞存活率。

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