Institute of Chemistry, University of Punjab, Lahore 54590, Pakistan; Institute of Analytical Chemistry, University of Vienna, Waehringerstrasse 38, Vienna 1090, Austria.
Biotechnol Adv. 2013 Dec;31(8):1435-47. doi: 10.1016/j.biotechadv.2013.06.008. Epub 2013 Jul 6.
Imprinting is a straightforward, yet a reliable technique to develop dynamic artificial recognition materials-so called as synthetic antibodies. Surface imprinting strategies such as soft lithography allow biological stereotyping of polymers and sol-gel phases to prepare extremely selective receptor layers, which can be combined with suitable transducer systems to develop high performance biomimetic sensors. This article presents an overview of the remarkable technical advancements in the field of surface bioimprinting with particular emphasis on surface imprinted bioanalyte detection systems and their applications in rapid bioanalysis and biotechnology. Herein, we discuss a variety of surface imprinting strategies including soft lithography, template immobilization, grafting, emulsion polymerization, and others along with their biomimetic sensor applications, merits and demerits. The pioneering research works on surface patterned biosensors are described with selected examples of detecting biological agents ranging from small biomolecules and proteins to living cells and microorganisms.
印迹技术是一种简单而可靠的方法,可以开发动态人工识别材料,即所谓的合成抗体。软光刻等表面印迹策略允许对聚合物和溶胶-凝胶相进行生物模拟,以制备极高选择性的受体层,然后将其与合适的换能器系统结合,开发高性能的仿生传感器。本文概述了表面生物印迹领域的显著技术进展,特别强调了表面印迹生物分析物检测系统及其在快速生物分析和生物技术中的应用。本文讨论了各种表面印迹策略,包括软光刻、模板固定化、接枝、乳液聚合等,以及它们在仿生传感器中的应用、优缺点。本文还描述了表面图案生物传感器的开创性研究工作,并通过检测从小分子生物和蛋白质到活细胞和微生物等生物制剂的实例进行了说明。