Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY 14853, USA.
Colloids Surf B Biointerfaces. 2010 Mar 1;76(1):375-80. doi: 10.1016/j.colsurfb.2009.10.041. Epub 2009 Nov 1.
We present a biopatterning technique suitable for applications which demand a high degree of surface cleanliness, such as immobilization of biological recognition elements onto label-free biosensors. In the case of label-free biosensing, the mechanism of signal transduction is based on surface bound matter, making them highly sensitive to surface contamination including residues left during the biopatterning process. In this communication we introduce a simple, rapid processing step that removes 98% of the residues that often remain after standard parylene lift-off patterning. Residue-free parylene biopatterning is combined with microfluidics to localize biomolecule immobilization onto the sensing region and to enable multiplexed biopatterning. We demonstrate the applicability of this method to multiplexed label-free detection platforms by patterning nucleic acid capture probes corresponding to the four different serotypes of Dengue virus onto parallel 1D photonic crystal resonator sensors. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) are used to quantify surface cleanliness and uniformity. In addition to label-free biosensors, this technique is well suited to other nanobiotechnology patterning applications which demand a pristine, residue-free surface, such as immobilization of enzymes, antibodies, growth factors, or cell cultures.
我们提出了一种适用于表面清洁度要求较高的应用的生物图案化技术,例如将生物识别元件固定在无标记生物传感器上。在无标记生物传感的情况下,信号转导的机制基于表面结合物质,这使得它们对表面污染非常敏感,包括生物图案化过程中残留的残留物。在本通讯中,我们引入了一种简单,快速的处理步骤,可以去除标准聚对二甲苯揭离图案化后通常残留的 98%的残留物。无残留聚对二甲苯生物图案化与微流控技术相结合,可将生物分子固定在传感区域并实现多路复用生物图案化。我们通过将对应于登革热病毒四个不同血清型的核酸捕获探针图案化到平行的 1D 光子晶体谐振器传感器上来证明这种方法在多路复用无标记检测平台中的适用性。扫描电子显微镜(SEM)和原子力显微镜(AFM)用于量化表面清洁度和均匀性。除了无标记生物传感器外,该技术还非常适合其他需要原始,无残留表面的纳米生物技术图案化应用,例如酶,抗体,生长因子或细胞培养物的固定。