首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Heat dissipation in slab gel electrophoresis: The effect of embedded TiO2 nanoparticles on the thermal profiles
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Heat dissipation in slab gel electrophoresis: The effect of embedded TiO2 nanoparticles on the thermal profiles

机译:板坯凝胶电泳中的散热:嵌入式TiO2纳米颗粒对热剖面的影响

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Despite the fast development of novel and high-resolution electrophoresis techniques such as capillary-based methods and microfluidic devices, the slab gel electrophoresis is still a popular method for the separation of biomolecules in medicine and biology. It is a low cost and simple method and offers high throughput. However, this technique is limited to low voltages leading to slow separations. Producing the heat during the electrophoresis known as Joule heating inevitably leads to a rise in the gel temperature. For the first time, this work offers a whole gel temperature measurement by using a thermal camera which presents accurate temperature profiles in the gel with a resolution of more than 10 pixel/mm(2) and a precision of 0.1 degrees C. Titania, TiO2, nano particles (NPs) were embedded into the polyacrylamide (PA) gel to improve the electrophoretic separation of proteins. By embedding 0.025% w/v TiO2 NPs, heat dissipation increases by 16.5% at applied voltage of 200 V compared with that of PA gel with no embedded TiO2 NPs. The thermal images showed that the composite gel was 2.5 degrees C in average cooler than PA gel after 15 min of electrophoresis run at 200 V. The maximum separation voltage increased by 30 V in the composite PA/TiO2 gel compared with the pure PA gel. Moreover, the average number of theoretical plates over the 10 protein peaks, as a criterion of separation performance, increased by about 63% at 180 V when TiO2 NPs were included into the gel.
机译:尽管新颖和高分辨率电泳技术的快速发展如毛细管基方法和微流体装置,但是板坯凝胶电泳仍然是分离医学和生物学中的生物分子的普遍方法。它是一种低成本和简单的方法,提供了高吞吐量。然而,该技术仅限于低电压,导致分离缓慢。在称为焦耳加热的电泳期间产生热量不可避免地导致凝胶温度的升高。这项工作首次通过使用热摄像机提供全凝胶温度测量,该热摄像机在凝胶中具有大于10个像素/ mm(2)的分辨率,以及0.1摄氏度的精度,TiO2的精确度将纳米颗粒(NPS)嵌入聚丙烯酰胺(PA)凝胶中以改善蛋白质的电泳分离。通过嵌入0.025%W / V TiO 2 NPS,散热在200V的施加电压下增加了16.5%,而PA凝胶没有嵌入式TiO2 NPS相比。热量图像显示,在200V的电泳15分钟后,比PA凝胶平均冷却的复合凝胶为2.5℃。与纯PA凝胶相比,复合PA / TiO2凝胶中的最大分离电压在复合PA / TiO2凝胶中增加了30V。此外,当将TiO 2 NP纳入凝胶时,10蛋白峰值超过10个蛋白峰值的理论板的平均数量,作为分离性能的标准,在180V中增加了约63%。

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