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Optical imaging in vivo with a focus on paediatric disease: technical progress current preclinical and clinical applications and future perspectives

机译:聚焦于小儿疾病的体内光学成像:技术进步当前临床前和临床应用以及未来前景

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摘要

To obtain information on the occurrence and location of molecular events as well as to track target-specific probes such as antibodies or peptides, drugs or even cells non-invasively over time, optical imaging (OI) technologies are increasingly applied. Although OI strongly contributes to the advances made in preclinical research, it is so far, with the exception of optical coherence tomography (OCT), only very sparingly applied in clinical settings. Nevertheless, as OI technologies evolve and improve continuously and represent relatively inexpensive and harmful methods, their implementation as clinical tools for the assessment of children disease is increasing. This review focuses on the current preclinical and clinical applications as well as on the future potential of OI in the clinical routine. Herein, we summarize the development of different fluorescence and bioluminescence imaging techniques for microscopic and macroscopic visualization of microstructures and biological processes. In addition, we discuss advantages and limitations of optical probes with distinct mechanisms of target-detection as well as of different bioluminescent reporter systems. Particular attention has been given to the use of near-infrared (NIR) fluorescent probes enabling observation of molecular events in deeper tissue.
机译:为了获得有关分子事件的发生和位置的信息,以及随着时间的推移以非侵入方式跟踪目标特异性探针(例如抗体或肽,药物或什至细胞),光学成像(OI)技术得到了越来越多的应用。尽管OI为临床前研究的进步做出了巨大贡献,但到目前为止,除了光学相干断层扫描(OCT)以外,它仅在临床环境中很少使用。然而,随着OI技术的不断发展和改进,并代表着相对廉价和有害的方法,它们作为评估儿童疾病的临床工具的应用正在增加。这篇综述着重于当前的临床前和临床应用,以及OI在临床常规中的未来潜力。在这里,我们总结了用于微观和宏观可视化的微观结构和生物学过程的不同荧光和生物发光成像技术的发展。此外,我们讨论了具有不同目标检测机制以及不同生物发光报告系统的光学探针的优缺点。特别注意的是使用近红外(NIR)荧光探针,可观察更深组织中的分子事件。

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