Hyun Changbae, Kaur Harpreet, McNabb David S, Li Jiali
Department of Physics, University of Arkansas, Fayetteville AR 72701, USA.
Nanotechnology. 2015 Mar 27;26(12):125501. doi: 10.1088/0957-4484/26/12/125501. Epub 2015 Mar 5.
In this work, we studied the stretching of λ phage DNA molecules immobilized on an optical fiber tip attached to a force sensitive tuning fork under ac electric fields. We designed a two electrodes stretching system in a small chamber: one is a gold-coated optical fiber tip electrode, and the other is a gold-coated flat electrode. By applying a dielectrophoretic (DEP) force, the immobilized λ DNA molecules on the tip are stretched and the stretching process is monitored by a fluorescent microscope. The DNA stretching in three-dimensional space is optimized by varying electrode shape, electrode gap distance, ac frequency, and solution conductivity. By observing the vibrational amplitude change of a quartz tuning fork, we measured the effects due to Joule heating and the DEP force on the tethered DNA molecules in solution. This work demonstrates a method to manipulate and characterize immobilized λ DNA molecules on a probe tip for further study of single DNA molecules.
在这项工作中,我们研究了在交流电场作用下,固定在与力敏音叉相连的光纤尖端上的λ噬菌体DNA分子的拉伸情况。我们在一个小腔室中设计了一个双电极拉伸系统:一个是涂金的光纤尖端电极,另一个是涂金的平面电极。通过施加介电泳(DEP)力,使尖端上固定的λ DNA分子被拉伸,拉伸过程由荧光显微镜监测。通过改变电极形状、电极间隙距离、交流频率和溶液电导率,优化了三维空间中的DNA拉伸。通过观察石英音叉的振动幅度变化,我们测量了焦耳热和DEP力对溶液中束缚的DNA分子的影响。这项工作展示了一种在探针尖端上操纵和表征固定的λ DNA分子的方法,以便进一步研究单个DNA分子。