Shah Khalid, Weissleder Ralph
Center for Molecular Imaging Research, Massachusetts General Hospital, MA 02129, USA.
NeuroRx. 2005 Apr;2(2):215-25. doi: 10.1602/neurorx.2.2.215.
A number of advances in the molecular imaging field have led to the sensing of specific molecular targets and pathways in living animals. In the optical imaging field, these include the designing of biocompatible near-infrared fluorochromes, development of targeted and activatable "smart" imaging probes, and engineering of activatable fluorescent and bioluminescent proteins. The current advances in molecular optical imaging will help in early disease diagnoses, functioning of a number of pathways and finally help speed drug discovery. In this review, we will describe the near infrared fluorescent and bioluminescence imaging modalities and how these techniques have been employed in current research. Furthermore, we will also shed some light on the use of these imaging modalities in neurotherapeutics, for example imaging different parameters of vector-mediated gene expression in glioma tumors and stem cell tracking in vivo.
分子成像领域的多项进展已实现对活体动物中特定分子靶点和信号通路的检测。在光学成像领域,这些进展包括设计生物相容性近红外荧光染料、开发靶向且可激活的“智能”成像探针以及对可激活荧光蛋白和生物发光蛋白进行工程改造。分子光学成像领域当前的进展将有助于疾病的早期诊断、众多信号通路的功能研究,并最终加速药物研发。在本综述中,我们将描述近红外荧光成像和生物发光成像方式,以及这些技术在当前研究中的应用。此外,我们还将阐述这些成像方式在神经治疗中的应用,例如对胶质瘤肿瘤中载体介导的基因表达的不同参数进行成像以及在体内追踪干细胞。