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Photopolymerized Cross-Linked Polyacrylamide Gels for On-Chip Protein Sizing

机译:用于片上蛋白质上胶的光聚合交联聚丙烯酰胺凝胶

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A new method for on-chip sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) of proteins is reported. Miniaturization of SDS-PAGE has attracted significant attention because it offers rapid analysis times, excellent resolution, high throughput, and the potential for integration and automation, as compared to conventional counterparts. The presented on-chip SDS PAGE technique employed photolithographically patterned, crosslinked gels fabricated in situ in <20 min. The effects of sieving gel composition on the migration properties of fluorescently labeled protein standards (ranging in molecular weight from 14.2 to 66 kDa) were quantified, as was the ability of the gels to function as a sieving matrix for biologically relevant species. Ferguson analysis was employed to calculate retardation coefficients and free solution mobilities. In conjunction with fluorescence imaging, the on-chip SDS-PAGE separation mechanism was evaluated in terms of separation performance indexes, as well as limiting behaviors (i.e., free solution mobility, exclusion characteristics). The photolithographically fabricated gels employed for on-chip SDS-PAGE allowed rapid (<30 s) separations of proteins in short separation lengths (4 mm) with efficiencies as high as 4.41×10~(5) plates/m. The on-chip SDS PAGE separations were ~100 times faster than conventional slab gel SDS-PAGE (60 min) and occurred in a fraction of the separation length required by slab gels. The migration behavior of protein standards correlated well with molecular weight and allowed molecular weight determination for interleukin-2, fibroblast growth factor, insulin-like growth factor, and tetanus toxin C-fragment.
机译:报道了一种新的蛋白质片上十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)的方法。与传统的同类产品相比,SDS-PAGE的小型化备受关注,因为它提供了快速的分析时间,出色的分离度,高通量以及集成和自动化的潜力。提出的片上SDS PAGE技术采用了光刻图案化的,在20分钟内原位制备的交联凝胶。定量筛分凝胶组成对荧光标记的蛋白质标准品(分子量范围为14.2至66 kDa)迁移特性的影响,以及凝胶充当生物学相关物种的筛分基质的能力。用弗格森分析来计​​算延迟系数和自由溶液迁移率。结合荧光成像,根据分离性能指标以及限制行为(即自由溶液迁移率,排除特性)评估了片上SDS-PAGE分离机理。用于片上SDS-PAGE的光刻胶可以在短分离长度(4 mm)内快速(<30 s)分离蛋白质,效率高达4.41×10〜(5)板/ m。片上SDS PAGE分离比常规平板凝胶SDS-PAGE(60分钟)快约100倍,并且发生时间仅为平板凝胶所需的分离长度的一小部分。蛋白质标准品的迁移行为与分子量密切相关,并可以测定白介素2,成纤维细胞生长因子,胰岛素样生长因子和破伤风毒素C片段的分子量。

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