Jeon Byoung-Jin, Muthukumar Murugappan
Department of Polymer Science and Engineering, University of Massachusetts , Amherst, Massachusetts 01003, United States.
ACS Macro Lett. 2014 Sep 16;3(9):911-915. doi: 10.1021/mz500404e. Epub 2014 Sep 2.
We introduce a single molecular analysis technique for the evaluation of molecular weight distributions of polyelectrolyte solutions by measuring translocation times of sodium polystyrenesulfonate (NaPSS) chains in a mixture passing through an α-hemolysin protein nanopore. The ionic current through an α-hemolysin nanopore is partially blocked transiently when the pore is occupied by a polymer chain with an average residence time proportional to the molecular weight of the polymer chain. We have measured the translocation times for an equimolar mixture of four different molecular weight NaPSS standards and observed distinct translocation time distribution peaks, each of which corresponding to the different components in the mixture. Size exclusion chromatography analyses were performed on the equimolar and equiweight NaPSS mixtures of the same components and compared with the translocation time measurements. The experimental results demonstrate that measuring translocation times can be a competitive technique for estimating the broad molecular weight distributions of polyelectrolytes.
我们介绍了一种单分子分析技术,通过测量聚苯乙烯磺酸钠(NaPSS)链在穿过α-溶血素蛋白纳米孔的混合物中的转运时间,来评估聚电解质溶液的分子量分布。当纳米孔被聚合物链占据时,通过α-溶血素纳米孔的离子电流会被部分短暂阻断,其平均停留时间与聚合物链的分子量成正比。我们测量了四种不同分子量的NaPSS标准品等摩尔混合物的转运时间,并观察到明显的转运时间分布峰,每个峰对应混合物中的不同组分。对相同组分的等摩尔和等重量NaPSS混合物进行了尺寸排阻色谱分析,并与转运时间测量结果进行了比较。实验结果表明,测量转运时间可以成为估算聚电解质宽分子量分布的一种有竞争力的技术。