Carion Olivier, Souplet Vianney, Olivier Christophe, Maillet Céline, Medard Nicolas, El-Mahdi Ouafâa, Durand Jean-Olivier, Melnyk Oleg
UMR CNRS 8161 CNRS/Universités de Lille 1 et 2, Institut Pasteur de Lille, 1 rue du Professeur Calmette, 59021 Lille, France.
Chembiochem. 2007 Feb 12;8(3):315-22. doi: 10.1002/cbic.200600504.
Polycarbonate (PC) is a useful substrate for the preparation of microfluidic devices. Recently, its utility in bioanalysis has attracted much attention owing to the possibility of using compact discs as platforms for the high-throughput analysis of biomolecular interactions. In this article we report a novel method for the chemical micropatterning of polycarbonate based on the printing of functionalized silica nanoparticles. The semicarbazide groups present on the surface of the nanoparticles were used for the site-specific semicarbazone ligation of unprotected peptides derivatized by an alpha-oxoaldehyde group. The peptide micropatterns permitted the specific capture of antibodies. We report also the characterization of micropatterns on PC by using a wide-field optical imaging technique called Sarfus; this allows the detection of nm-thick films by using nonreflecting PC substrates and an optical microscope working with reflected differential interference contrast. The method described here is an easy way to modify polycarbonate surfaces for biomolecular interaction studies and should stimulate the use of PC for developing plastic biosensors.
聚碳酸酯(PC)是制备微流控装置的一种有用基材。近来,由于有可能将光盘用作生物分子相互作用高通量分析的平台,其在生物分析中的应用受到了广泛关注。在本文中,我们报道了一种基于功能化二氧化硅纳米颗粒印刷的聚碳酸酯化学微图案化新方法。纳米颗粒表面存在的氨基脲基团用于通过α-氧代醛基团衍生化的未保护肽的位点特异性腙连接。肽微图案允许特异性捕获抗体。我们还报道了通过一种称为Sarfus的宽场光学成像技术对PC上微图案的表征;这允许使用非反射PC基板和配备反射差分干涉对比的光学显微镜检测纳米厚的薄膜。这里描述的方法是一种修饰聚碳酸酯表面以进行生物分子相互作用研究的简便方法,应该会促进将PC用于开发塑料生物传感器。