Institute of Microelectronics, NCSR Demokritos, P.O. BOX 60228, 153 10, Aghia Paraskevi, Greece.
Lab Chip. 2011 Sep 21;11(18):3113-20. doi: 10.1039/c1lc20133f. Epub 2011 Jul 27.
We fabricated a TiO(2)-ZrO(2) affinity chromatography micro-column on 2 mm PMMA plates, and demonstrated the enrichment and separation of (a) a standard mono- and tetra-phosphopeptide, and (b) phosphopeptides contained in a tryptic digest of β-Casein. The chromatography column consisted of 32 parallel microchannels with common input and output ports and was fabricated by lithography directly on the polymeric substrate followed by plasma etching (i.e. standard MEMS processing) and sealed with lamination. The liquid deposited TiO(2)-ZrO(2) stationary phase was characterized by X-ray diffraction and was found to be mostly TiO(2) and ZrO(2) in crystalline phases. Off-chip UV detection and MALDI MS identification of the separated effluents were used. The chip had a capacity of >1.4 μg (0.7 nmol) of a prototype mono-phosphopeptide and a recovery of 94 ± 3%, and can be used with small samples (less than 0.1 μL depending on the syringe pump used). The chip design allows an expansion of its capacity by means of increasing the number of parallel microchannels at a constant sample volume. Our approach provided an alternative to off-line extraction tips (with typical capacities of 1-2 μg and sample volumes of 1-10 μL), and to on-chip efforts based on packed bed and frit formats.
我们在 2mm 的 PMMA 板上制造了 TiO(2)-ZrO(2)亲和层析微柱,并展示了(a)标准的单磷酸肽和四磷酸肽,以及(b)β-酪蛋白胰蛋白酶消化物中所含的磷酸肽的富集和分离。该层析柱由 32 个平行的微通道组成,具有共同的输入和输出端口,通过光刻直接在聚合物基底上制造,然后进行等离子体刻蚀(即标准的 MEMS 加工),并通过层压密封。液体沉积的 TiO(2)-ZrO(2)固定相通过 X 射线衍射进行了表征,发现其主要为结晶相的 TiO(2)和 ZrO(2)。采用离片式 UV 检测和 MALDI MS 对分离的洗脱液进行了鉴定。该芯片的容量>1.4μg(0.7nmol)的原型单磷酸肽,回收率为 94±3%,并且可以用于小样本(取决于所用的注射器泵,小于 0.1μL)。该芯片设计允许通过在恒定的样品体积下增加平行微通道的数量来扩展其容量。我们的方法为离线提取工具(典型容量为 1-2μg,样品体积为 1-10μL)提供了替代方案,也为基于填充床和 frit 格式的片上方法提供了替代方案。