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Recent Advances in Intracellular and In Vivo ROS Sensing: Focus on Nanoparticle and Nanotube Applications

机译:细胞内和体内ROS传感的最新进展:专注于纳米颗粒和纳米管的应用

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Reactive oxygen species (ROS) are increasingly being implicated in the regulation of cellular signaling cascades. Intracellular ROS fluxes are associated with cellular function ranging from proliferation to cell death. Moreover, the importance of subtle, spatio-temporal shifts in ROS during localized cellular signaling events is being realized. Understanding the biochemical nature of the ROS involved will enhance our knowledge of redox-signaling. An ideal intracellular sensor should therefore resolve real-time, localized ROS changes, be highly sensitive to physiologically relevant shifts in ROS and provide specificity towards a particular molecule. For in vivo applications issues such as bioavailability of the probe, tissue penetrance of the signal and signal-to-noise ratio also need to be considered. In the past researchers have heavily relied on the use of ROS-sensitive fluorescent probes and, more recently, genetically engineered ROS sensors. However, there is a great need to improve on current methods to address the above issues. Recently, the field of molecular sensing and imaging has begun to take advantage of the unique physico-chemical properties of nanoparticles and nanotubes. Here we discuss the recent advances in the use of these nanostructures as alternative platforms for ROS sensing, with particular emphasis on intracellular and in vivo ROS detection and quantification.
机译:活性氧(ROS)越来越多地参与细胞信号级联的调控。细胞内ROS通量与细胞功能有关,范围从增殖到细胞死亡。而且,已经认识到局部细胞信号转导事件期间ROS中细微的时空变化的重要性。了解所涉及的ROS的生化性质将增强我们对氧化还原信号的了解。因此,理想的细胞内传感器应解决实时的局部ROS变化,对ROS中生理相关的变化高度敏感,并提供对特定分子的特异性。对于体内应用,还需要考虑探针的生物利用度,信号的组织渗透性和信噪比等问题。过去,研究人员在很大程度上依赖于对ROS敏感的荧光探针的使用,以及最近经过基因工程改造的ROS传感器的使用。但是,非常需要改进当前的方法来解决上述问题。最近,分子感测和成像领域已开始利用纳米颗粒和纳米管独特的物理化学性质。在这里,我们讨论了使用这些纳米结构作为ROS传感的替代平台的最新进展,特别强调了细胞内和体内ROS的检测和定量。

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