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为何是三维?蛋白质组学中的基于凝胶的微阵列。

Why 3-D? Gel-based microarrays in proteomics.

作者信息

Rubina Alla Yu, Kolchinsky Alexander, Makarov Alexander A, Zasedatelev Alexander S

机构信息

Engelhardt Institute of Molecular Biology of Russian Academy of Sciences, Moscow, Russia.

出版信息

Proteomics. 2008 Feb;8(4):817-31. doi: 10.1002/pmic.200700629.

Abstract

Gel-based microarrays (biochips) consisting of nanoliter and sub-nanoliter gel drops on hydrophobic substrate are a versatile technology platform for immobilization of proteins and other biopolymers. Biochips provide a highly hydrophilic environment, which stabilizes immobilized molecules and facilitates their interactions with analytes. The probes are immobilized simultaneously with gel polymerization, evenly distributed throughout individual elements, and are easily accessible because of large pores. Each element is an isolated nanotube. Applications of biochips in the studies of protein interactions with other proteins, nucleic acids, and glycans are described. In particular, biochips are compatible with MALDI-MS. Biochip-based assay of prostate-specific antigen became the first protein microarray approved for clinical use by a national regulatory agency. In this review, 3-D immobilization is compared with mainstream technologies based on surface immobilization.

摘要

基于凝胶的微阵列(生物芯片)由疏水基质上的纳升和亚纳升凝胶滴组成,是用于固定蛋白质和其他生物聚合物的通用技术平台。生物芯片提供了高度亲水的环境,可稳定固定化分子并促进其与分析物的相互作用。探针在凝胶聚合时同时固定,均匀分布在各个元件中,并且由于孔隙大而易于接近。每个元件都是一个孤立的纳米管。描述了生物芯片在蛋白质与其他蛋白质、核酸和聚糖相互作用研究中的应用。特别是,生物芯片与基质辅助激光解吸电离质谱(MALDI-MS)兼容。基于生物芯片的前列腺特异性抗原检测成为首个获得国家监管机构批准用于临床的蛋白质微阵列。在本综述中,将三维固定化与基于表面固定化的主流技术进行了比较。

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