Division of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Helsinki, P.O. Box 56, FI-00014, Finland.
Anal Chem. 2010 May 1;82(9):3874-82. doi: 10.1021/ac1004053.
A new, commercial hybrid ceramic polymer, Ormocomp, was introduced to the fabrication of microfluidic separation chips using two independent techniques, UV lithography and UV embossing. Both fabrication methods provided Ormocomp chips with stable cathodic electroosmotic flow which enabled examination of the Ormocomp biocompatibility by means of microchip capillary electrophoresis (MCE) and (intrinsic) fluorescence detection. The hydrophobic/hydrophilic properties of Ormocomp were examined by screening its interactions with bovine serum albumin and selected amino acids of varying hydrophobicity. The results show that the ceramic, organic-inorganic polymer structure natively resists biofouling on microchannel walls even so that the Ormocomp microchips can be used in intact protein analysis without prior surface modification. With theoretical separation plates approaching 10(4) m(-1) for intact proteins and 10(6) m(-1) for amino acids and peptides, our results suggest that Ormocomp microchips hold record-breaking performance as microfluidic separation platforms. In addition, Ormocomp was shown to be suitable for optical fluorescence detection even at near-UV range (ex 355 nm) with detection limits at a nanomolar level ( approximately 200 nM) for selected inherently fluorescent pharmaceuticals.
一种新型的商业化混合陶瓷聚合物 Ormocomp,通过两种独立的技术,即紫外光刻和紫外压印,被引入到微流控分离芯片的制造中。这两种制造方法都为 Ormocomp 芯片提供了稳定的阴极电渗流,这使得可以通过微芯片毛细管电泳(MCE)和(本征)荧光检测来检查 Ormocomp 的生物相容性。通过筛选其与牛血清白蛋白和不同疏水性的选定氨基酸的相互作用,研究了 Ormocomp 的疏水性/亲水性性质。结果表明,陶瓷有机-无机聚合物结构天然抵抗微通道壁上的生物污垢,即使如此,Ormocomp 微芯片也可以在没有预先表面修饰的情况下用于完整蛋白质分析。理论分离板对完整蛋白质的接近 10(4) m(-1),对氨基酸和肽的接近 10(6) m(-1),我们的结果表明,Ormocomp 微芯片作为微流控分离平台具有创纪录的性能。此外,即使在近紫外范围(ex 355nm)下,Ormocomp 也被证明适用于光学荧光检测,对于选定的固有荧光药物,检测限达到纳摩尔水平(约 200nM)。