Chimie ParisTech, PSL University, CNRS 8060, Institute of Chemistry for Life and Health Sciences, 75005 Paris, France; Instituto de Química, Universidade Federal de Goiás, 74690-900, Goiânia, GO, Brazil.
Chimie ParisTech, PSL University, CNRS 8060, Institute of Chemistry for Life and Health Sciences, 75005 Paris, France.
J Chromatogr A. 2024 Sep 13;1732:465222. doi: 10.1016/j.chroma.2024.465222. Epub 2024 Jul 31.
An innovative integrated paper-based microdevice was developed for protein separation by isoelectric focusing (IEF), allowing for robust design thanks to a 3D-printed holder integrating separation channel, reservoirs, and electrodes. To reach robustness and precision, the optimization focused on the holder geometry, the paper nature, the reservoir design, the IEF medium, and various focusing parameters. A well-established and stable pH gradient was obtained on a glass-fiber paper substrate with simple sponge reservoirs, and the integration of the electrodes in the holder led to a straightforward system. The separation medium composed of water/glycerol (85/15, v/v) allowed for reducing medium evaporation while being an efficient medium for most hydrophobic and hydrophilic proteins, compatible with mass spectrometry detection for further proteomics developments. To our knowledge, this is the first report of the use of glycerol solutions as a separation medium in a paper-based microdevice. Analytical performances regarding pH gradient generation, pI determination, separation efficiency, and resolution were estimated while varying the IEF experimental parameters. The overall process led to an efficient separation within 25 min. Then, this methodology was applied to a sample composed of saliva doped with proteins. A minimal matrix effect was evidenced, underscoring the practical viability of our platform. This low-cost, versatile and robust paper-based IEF microdevice opens the way to various applications, ranging from sample pre-treatment to integration in an overall proteomic-on-a-chip device.
一种创新性的集成纸质微器件被开发用于蛋白质的等电聚焦(IEF)分离,由于 3D 打印的支架集成了分离通道、储液器和电极,因此具有强大的设计能力。为了达到稳健性和精确性,优化的重点是支架几何形状、纸张性质、储液器设计、IEF 介质和各种聚焦参数。在玻璃纤维纸基质上,采用简单的海绵储液器获得了稳定的 pH 梯度,并且将电极集成在支架中使得系统变得简单。分离介质由水/甘油(85/15,v/v)组成,在减少介质蒸发的同时,也成为大多数疏水性和亲水性蛋白质的有效介质,与质谱检测兼容,有利于进一步进行蛋白质组学开发。据我们所知,这是首次报道在纸质微器件中使用甘油溶液作为分离介质。通过改变 IEF 实验参数,评估了 pH 梯度生成、等电点测定、分离效率和分辨率等分析性能。整个过程在 25 分钟内实现了有效的分离。然后,该方法应用于含有蛋白质的唾液样本。证明了最小的基质效应,突出了我们平台的实际可行性。这种低成本、多功能且稳健的纸质 IEF 微器件为各种应用开辟了道路,从样品预处理到集成到整体蛋白质组芯片设备。