Sun Yi, Nguyen Nam-Trung, Kwok Yien Chian
National Institute of Education, Nanyang Technological University, 1 Nanyang Walk, Singapore, 637616, Singapore.
Anal Bioanal Chem. 2009 Jul;394(6):1707-10. doi: 10.1007/s00216-009-2833-6. Epub 2009 May 27.
Joule heating generated by the electrical current in capillary electrophoresis leads to a temperature gradient along the separation channel and consequently affects the separation quality. We describe a method of reducing the Joule heating effect by incorporating photonic crystal fiber into a micro capillary electrophoresis chip. The photonic crystal fiber consists of a bundle of extremely narrow hollow channels, which ideally work as separation columns. Electrophoretic separation of DNA fragments was simultaneously but independently carried out in 54 narrow capillaries with a diameter of 3.7 microm each. The capillary bundle offers more efficient heat dissipation owing to the high surface-to-volume ratio. Under the same electrical field strength, notable improvement in resolution was obtained in the capillary bundle chip.
毛细管电泳中电流产生的焦耳热会导致沿分离通道的温度梯度,从而影响分离质量。我们描述了一种通过将光子晶体光纤并入微毛细管电泳芯片来降低焦耳热效应的方法。光子晶体光纤由一束极窄的中空通道组成,理想情况下可作为分离柱。DNA片段的电泳分离在54根直径均为3.7微米的狭窄毛细管中同时但独立地进行。由于高的表面积与体积比,毛细管束具有更高的散热效率。在相同电场强度下,毛细管束芯片的分辨率有显著提高。