Huang Lotien Richard, Cox Edward C, Austin Robert H, Sturm James C
Center for Photonics and Optoelectronic Materials (POEM), Departments of Electrical Engineering, Molecular Biology, and Physics, Princeton University, Princeton, New Jersey 08544, USA.
Anal Chem. 2003 Dec 15;75(24):6963-7. doi: 10.1021/ac0348524.
In this paper, we report a factor of 3 improvement in the resolution and a factor of 10 improvement in the speed of fractionation of approximately 100-kb DNA molecules in Brownian ratchet arrays. In our device, the electrophoretic flow is tilted at a small angle relative to the array axis. Tilting accelerates the fractionation speed because a higher fraction of the diffusing molecules is "ratcheted" at each step in the array. Molecules of lengths 48.5 and 164 kb can be separated in approximately 70 min with a resolution of approximately 3.8, using a 12-mm-long array. The Brownian ratchet arrays are not limited to DNA separation, but can, in principle, be used for any particle in this size range.
在本文中,我们报告了在布朗棘轮阵列中对约100 kb DNA分子进行分离时,分辨率提高了3倍,分离速度提高了10倍。在我们的装置中,电泳流相对于阵列轴倾斜一个小角度。倾斜加速了分离速度,因为在阵列的每一步中,更高比例的扩散分子被“棘齿化”。使用12毫米长的阵列,长度为48.5 kb和164 kb的分子可在约70分钟内分离,分辨率约为3.8。布朗棘轮阵列不仅限于DNA分离,原则上可用于该尺寸范围内的任何粒子。