Lim Dong Woo, Yoon Tae-Sung, Han Kyung Ho, Sajjad Saba, Shin Heung-Seon, Kang Sunghyun
T-MAC Co., Ltd., Yuseong-gu, Daejeon 34141, Republic of Korea.
Critical Diseases Diagnostics Convergence Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Yuseong-gu, Daejeon 34141, Republic of Korea.
Methods Protoc. 2023 Nov 3;6(6):106. doi: 10.3390/mps6060106.
The horizontal flatbed electrophoresis method is employed to separate protein samples, providing greater flexibility for various electrophoretic applications and easier sample loading compared to its vertical counterpart. In the currently available equipment setup, cathode and anode electrodes are positioned on top of a gel at each end. Since an electric field enters the gel from the top, its strength gradually weakens from the top to the bottom of the gel. When examining the interior of gels following electrophoretic separation, the uneven electric field causes the protein bands to lie down forward in the direction of migration, leading to an increase in bandwidth. This issue has remained unaddressed for several decades. To address this problem, new clamp-shaped and double-deck electrodes were developed to apply an electric field simultaneously from both the top and bottom of the gel. Both of these new electrodes facilitated the formation of perpendicular protein band shapes and enhanced resolution at a comparable level. Due to their ease of use, double-deck electrodes are recommended. By combining these new electrodes with the field inversion gel electrophoresis (FIGE) technique, the protein bands could be focused and aligned nearly vertically, resulting in the highest level of electrophoretic resolution. Our electrodes are compatible with polyacrylamide gels of varying sizes, buffer systems, and sample well formats. They can be easily manufactured and seamlessly integrated into existing laboratory instruments for practical use.
采用水平平板电泳法分离蛋白质样品,与垂直电泳相比,它为各种电泳应用提供了更大的灵活性,并且上样更容易。在目前可用的设备设置中,阴极和阳极位于凝胶两端的顶部。由于电场从顶部进入凝胶,其强度从凝胶顶部到底部逐渐减弱。在电泳分离后检查凝胶内部时,不均匀的电场会使蛋白质条带在迁移方向上向前倒伏,导致带宽增加。这个问题几十年来一直没有得到解决。为了解决这个问题,开发了新的夹形电极和双层电极,以便从凝胶的顶部和底部同时施加电场。这两种新电极都有助于形成垂直的蛋白质条带形状,并在相当的水平上提高分辨率。由于其使用方便,推荐使用双层电极。通过将这些新电极与场反转凝胶电泳(FIGE)技术相结合,蛋白质条带可以几乎垂直地聚焦和排列,从而实现最高水平的电泳分辨率。我们的电极与不同尺寸、缓冲系统和样品孔形式的聚丙烯酰胺凝胶兼容。它们易于制造,并且可以无缝集成到现有的实验室仪器中以供实际使用。