焦耳加热
化学
毛细管电泳
炸薯条
色散(光学)
电泳
温度控制
消散
分析化学(期刊)
色谱法
复合材料
材料科学
电气工程
热力学
光学
物理
工程类
作者
Jingjing Xue,Qiang Zhang,Jun Cao,Youli Tian,Genhan Zha,Xiaoping Li,Weiwen Liu,Yuxing Wang,Dingkun Gui,Cheng-Xi Cao
标识
DOI:10.1021/acs.analchem.1c03635
摘要
Gel electrophoresis (GE) is one of the most general tools in biomedicine. However, it suffers from low resolution, and its mechanism has not been fully revealed yet. Herein, we presented the dispersion model of w2 (t) ∝ Tt, showing the band dispersion (w) via temperature (T) and running time (t) control. Second, we designed an efficient GE chip via the time control and rapid Joule heat self-dissipation by thermal conductive plastic (TCP) and electrode buffer. Third, we conducted the simulations on TCP and polymethylmethacrylate (PMMA) chips, unveiling that (i) the temperature of TCP was lower than the PMMA one, (ii) the temperature uniformity of TCP was better than the PMMA one, and (iii) the resolution of TCP was superior to the PMMA one. Fourth, we designed both TCP and PMMA chips for experimentally validating the dispersion model, TCP chip, and simulations. Finally, we applied the TCP chip to thalassemia and model urine protein assays. The TCP chip has merits of high resolution, rapid run of 6-10 min, and low cost. This work paves the way for greatly improving electrophoretic techniques in gel, chip, and capillary via temperature and time control for biologic study, biopharma quality control, clinical diagnosis, and so on.
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