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FLIM as a Promising Tool for Cancer Diagnosis and Treatment Monitoring

机译:Flim作为癌症诊断和治疗监测的有希望的工具

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Fluorescence lifetime imaging microscopy (FLIM) has been rapidly developed over the past 30 years and widely applied in biomedical engineering. Recent progress in fluorophore-dyed probe design has widened the application prospects of fluorescence. Because fluorescence lifetime is sensitive to microenvironments and molecule alterations, FLIM is promising for the detection of pathological conditions. Current cancer-related FLIM applications can be divided into three main categories: (i) FLIM with autofluorescence molecules in or out of a cell, especially with reduced form of nicotinamide adenine dinucleotide, and flavin adenine dinucleotide for cellular metabolism research;(ii) FLIM with F?rster resonance energy transfer for monitoring protein interactions;and (iii) FLIM with fluorophore-dyed probes for specific aberration detection. Advancements in nanomaterial production and efficient calculation systems, as well as novel cancer biomarker discoveries, have promoted FLIM optimization, offering more opportunities for medical research and applications to cancer diagnosis and treatment monitoring. This review summarizes cutting-edge researches from 2015 to 2020 on cancer-related FLIM applications and the potential of FLIM for future cancer diagnosis methods and anti-cancer therapy development. We also highlight current challenges and provide perspectives for further investigation.
机译:荧光寿命成像显微镜(FLIM)在过去30年中已迅速发展,并广泛应用于生物医学工程。荧光团染色设计的最新进展扩大了荧光的应用前景。因为荧光寿命对微环境和分子改变敏感,因此Flim是对病理条件的检测有望的。目前的癌症相关的Flim应用可以分为三个主要类别:(i)与细胞中的自发荧光分子(I)与烟酰胺腺嘌呤二核苷酸的形式减少,以及用于细胞代谢研究的Flavin腺嘌呤二核苷酸;(ii)flim F?用于监测蛋白质相互作用的F?Rster共振能量转移;(iii)与荧光团染色探针一起用于特异性像差检测。纳米材料生产和高效计算系统以及新型癌症生物标志物发现的进步促进了Flim优化,为癌症诊断和治疗监测提供了更多的医学研究和应用机会。本综述总结了2015年至2020年关于癌症相关的Flim应用的尖端研究以及未来癌症诊断方法和抗癌治疗的潜力。我们还突出了当前的挑战,并提供进一步调查的观点。

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