Bow Hansen, Fu Jianping, Han Jongyoon
Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Electrophoresis. 2008 Dec;29(23):4646-51. doi: 10.1002/elps.200800256.
Conventional methods for separating biomolecules are based on steric interactions between the biomolecules and randomly oriented gel fibers. The recently developed artificial molecular sieves also rely on steric interactions for separation. In this work, we present an experimental investigation of a method that can be used in these sieves to increase separation selectivity and resolution. This method exploits the electrostatic repulsion between the charged molecules and the charged nanofluidic structure. Although this method has been mentioned in the previous work, it has not been examined in detail. We characterize this method by comparing the selectivity with that achieved in devices with different dimensions. The results of this study are relevant to the optimization of chip-based gel-free biomolecule separation and analysis.
传统的生物分子分离方法基于生物分子与随机取向的凝胶纤维之间的空间相互作用。最近开发的人工分子筛在分离时同样依赖空间相互作用。在这项工作中,我们对一种可用于这些分子筛以提高分离选择性和分辨率的方法进行了实验研究。该方法利用了带电分子与带电纳米流体结构之间的静电排斥作用。尽管此方法在之前的工作中已被提及,但尚未进行详细研究。我们通过将该方法的选择性与不同尺寸装置所实现的选择性进行比较来对其进行表征。本研究结果与基于芯片的无凝胶生物分子分离和分析的优化相关。