Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul 120-749, Korea.
Sensors (Basel). 2012;12(6):8426-36. doi: 10.3390/s120608426. Epub 2012 Jun 20.
A suspension protein microarray was developed using shape-coded poly(ethylene glycol) (PEG) hydrogel microparticles for potential applications in multiplex and high-throughput immunoassays. A simple photopatterning process produced various shapes of hydrogel micropatterns that were weakly bound to poly(dimethylsiloxane) (PDMS)-coated substrates. These micropatterns were easily detached from substrates during the washing process and were collected as non-spherical microparticles. Acrylic acids were incorporated into hydrogels, which could covalently immobilize proteins onto their surfaces due to the presence of carboxyl groups. The amount of immobilized protein increased with the amount of acrylic acid due to more available carboxyl groups. Saturation was reached at 25% v/v of acrylic acid. Immunoassays with IgG and IgM immobilized onto hydrogel microparticles were successfully performed with a linear concentration range from 0 to 500 ng/mL of anti-IgG and anti-IgM, respectively. Finally, a mixture of two different shapes of hydrogel microparticles immobilizing IgG (circle) and IgM (square) was prepared and it was demonstrated that simultaneous detection of two different target proteins was possible without cross-talk using same fluorescence indicator because each immunoassay was easily identified by the shapes of hydrogel microparticles.
采用形状编码的聚乙二醇(PEG)水凝胶微球开发了悬浮蛋白微阵列,可用于多重和高通量免疫分析的潜在应用。简单的光图案化工艺产生了各种形状的水凝胶微图案,这些图案与涂有聚二甲基硅氧烷(PDMS)的基底弱结合。在洗涤过程中,这些微图案很容易从基底上脱落,并收集为非球形微颗粒。丙烯酸被掺入水凝胶中,由于存在羧基,因此可以将蛋白质共价固定在其表面上。由于存在更多可用的羧基,固定的蛋白质的量随丙烯酸的量增加而增加。当丙烯酸的体积分数达到 25%时达到饱和。将 IgG 和 IgM 固定在水凝胶微球上的免疫分析成功地进行了,其浓度范围分别为 0 至 500ng/mL 的抗 IgG 和抗 IgM。最后,制备了两种不同形状的水凝胶微球(圆形)固定 IgG 和(方形)固定 IgM 的混合物,并证明使用相同的荧光指示剂可以进行两种不同靶蛋白的同时检测而不会发生串扰,因为每个免疫分析都可以很容易地通过水凝胶微球的形状来识别。