Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.
Annu Rev Anal Chem (Palo Alto Calif). 2009;2:57-76. doi: 10.1146/annurev.anchem.1.031207.112823.
Nanoparticle sensors have been developed for real-time imaging and dynamic monitoring, both in live cells and in vivo, of molecular and ionic components, constructs, forces, and dynamics observed during biological, chemical, and physical processes. With their biocompatible small size and inert matrix, nanoparticle sensors have been successfully applied to noninvasive real-time measurements of analytes and fields in cells and in rodents, with spatial, temporal, physical, and chemical resolution. This review describes the diverse designs of nanoparticle sensors for ions and small molecules, physical fields, and biological features, as well as the characterization, properties, and applications of these nanosensors to in vitro and in vivo measurements. Their floating as well as localization abilities in biological media are captured by the acronym PEBBLE: photonic explorer for bioanalysis with biologically localized embedding.
纳米粒子传感器已经被开发出来,用于实时成像和动态监测,无论是在活细胞内还是在体内,都可以监测生物、化学和物理过程中观察到的分子和离子成分、结构、力和动态。由于其具有生物相容性的小尺寸和惰性基质,纳米粒子传感器已经成功地应用于非侵入式实时测量细胞和啮齿动物中的分析物和场,具有空间、时间、物理和化学分辨率。本综述描述了用于离子和小分子、物理场和生物特征的纳米粒子传感器的多种设计,以及这些纳米传感器的特性、性质和应用,用于体外和体内测量。它们在生物介质中的漂浮和定位能力可以通过缩写词“PEBBLE”来捕捉:生物定位嵌入的生物分析光子探测器。