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High-Capacity Conductive Nanocellulose Paper Sheets for Electrochemically Controlled Extraction of DNA Oligomers

机译:用于电化学控制DNA低聚物提取的大容量导电纳米纤维素纸

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摘要

Highly porous polypyrrole (PPy)-nanocellulose paper sheets have been evaluated as inexpensive and disposable electrochemically controlled three-dimensional solid phase extraction materials. The composites, which had a total anion exchange capacity of about 1.1 mol kg−1, were used for extraction and subsequent release of negatively charged fluorophore tagged DNA oligomers via galvanostatic oxidation and reduction of a 30–50 nm conformal PPy layer on the cellulose substrate. The ion exchange capacity, which was, at least, two orders of magnitude higher than those previously reached in electrochemically controlled extraction, originated from the high surface area (i.e. 80 m2 g−1) of the porous composites and the thin PPy layer which ensured excellent access to the ion exchange material. This enabled the extractions to be carried out faster and with better control of the PPy charge than with previously employed approaches. Experiments in equimolar mixtures of (dT)6, (dT)20, and (dT)40 DNA oligomers showed that all oligomers could be extracted, and that the smallest oligomer was preferentially released with an efficiency of up to 40% during the reduction of the PPy layer. These results indicate that the present material is very promising for the development of inexpensive and efficient electrochemically controlled ion-exchange membranes for batch-wise extraction of biomolecules.
机译:高度多孔的聚吡咯(PPy)-纳米纤维素纸页已被评估为廉价且可丢弃的电化学控制三维固相萃取材料。该复合物的总阴离子交换能力约为1.1 mol kg-1,用于通过恒电流氧化和还原纤维素底物上的30–50 nm保形PPy层来提取和随后释放带负电荷的荧光团标记的DNA低聚物。 。离子交换容量至少比以前电化学控制的提取高出两个数量级,这源于多孔复合材料的高表面积(即80 m2 g-1)和薄的PPy层,从而确保了离子交换材料的绝佳通道。与以前采用的方法相比,这可以更快地进行提取,并且可以更好地控制PPy电荷。在(dT)6,(dT)20和(dT)40 DNA低聚物的等摩尔混合物中进行的实验表明,可以提取所有低聚物,并且在还原过程中,最小的低聚物以40%的效率被优先释放。 PPy层。这些结果表明,本发明材料对于开发用于分批提取生物分子的廉价且有效的电化学控制离子交换膜非常有前途。

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