硝酸纤维素微孔薄层的色谱性能

Maria Lönnberg , Jan Carlsson
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引用次数: 18

摘要

在125 μm的多孔硝化纤维素层上,在聚酯衬底上进行层析,在10 ~ 20 μm的板高范围内具有良好的分离效率。流量由毛细管力控制,在单个一次性装置之间显示出低速率变化。将带正电荷的基团引入硝化纤维素中,在较短的迁移距离(1 cm)后,发现转铁蛋白异构体的有效分离仅相差0.1 pI单位。上表面未被覆盖,允许添加样品和试剂,并且透明的背面允许检测。色谱可以很容易地与敏感的免疫分析检测在线结合到pM(10−12 M)范围内。这种微型组合装置在分析生物化学中具有广泛的应用前景。
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Chromatographic performance of a thin microporous bed of nitrocellulose

Chromatography along thin (125 μm) porous beds of nitrocellulose, layered on top of an polyester backing, shows good separation efficiency with plate heights of 10–20 μm. Flow is controlled by capillary forces and shows low rate variations between the individual disposable devices. Positively charged groups were introduced into the nitrocellulose and efficient separation of transferrin isoforms, differing by only 0.1 pI units, was found after a short migration distance (1 cm). The upper surface is not covered, which allows sample and reagents to be added, and the clear backing permits detection. The chromatography can easily be combined on-line with sensitive immunoassay detection down to the pM (10−12 M) range. This microscaled combination device should have a wide range of applications in analytical biochemistry.

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