Fischer Nicholas O, Tarasow Theodore M, Tok Jeffrey B-H
BioSecurity and NanoSciences Laboratory, Chemistry, Materials & Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, CA 94551, USA.
Curr Opin Chem Biol. 2007 Jun;11(3):316-28. doi: 10.1016/j.cbpa.2007.05.017. Epub 2007 Jun 4.
Nucleic acid (aptasensors) have found steadily increased utility and application over the past decade. In particular, aptamers have been touted as a valuable complement to and, in some cases, replacement for antibodies owing to their structural and functional robustness as well as their ease in generation and synthesis. They are thus attractive for biosecurity applications (e.g. pathogen detection) and are especially well suited because their in vitro generation process does not require infection of any host systems. Herein we provide a brief overview of the aptamers generated against pathogens and toxins over the past few years. In addition, a few recently described detection platforms using aptamers and potentially suitable applications for biosecurity will be discussed.
在过去十年中,核酸(适配体传感器)的实用性和应用稳步增加。特别是,适配体因其结构和功能的稳健性以及易于生成和合成,被吹捧为抗体的有价值补充,在某些情况下甚至可替代抗体。因此,它们在生物安全应用(如病原体检测)中具有吸引力,并且特别适合,因为其体外生成过程不需要感染任何宿主系统。在此,我们简要概述过去几年针对病原体和毒素生成的适配体。此外,还将讨论一些最近描述的使用适配体的检测平台以及生物安全的潜在适用应用。