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Magnetic field effects on spectrally-resolved lifetime of on-line oxygen monitoring using magneto-optic probes

机译:磁场对使用磁光探针监测在线氧气的光谱分辨寿命的影响

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Multimodal agents that serve as both probes for contrast and light-activated effectors of cellular processes in diseased tissue were developed. These agents were introduced into multicellular tumor spheroids (3D tissue models) and in the chorioallantoic membrane (CAM) of a chicken embryo. The luminescence decay was examined using a novel technique involving a spectrally-resolved fluorescence lifetime apparatus integrated with a weak electromagnet. A spectrally-resolved lifetime setup was used to identify magneto-optic species sensitive to magnetic field effects and distinguish from background emissions. We demonstrate that the applied magnetic fields can alter reaction rates and product distribution of some dyes detected by time- and spectrally-resolved luminescence changes. We will discuss the use of exogenous magneto-optical probes taken up in tumors to both induce phototoxicity, a process that is governed by complex and dynamically evolving mechanisms involving reactive oxygen species, and monitor treatment progress. The magnetic field enhancement, measured over a range of weak fields (0-300 mT) is correlated to oxygenation and may be used to monitor dynamic changes occurring due to oxygen consumption over the course of photodynamic therapy. Such online measurements provide the possibility to derive real-time information about response to treatment via monitoring magnetic field enhancement/suppression of the time-resolved, spectrally-resolved luminescence of the probe at the site of the treatment directly. Magnetic perturbation of lifetime can serve as a status reporter, providing optical feedback of oxygen-mediated treatments in situ and allowing for real-time adjustment of a phototherapy treatment plan.
机译:已开发出既可作为病变组织中细胞过程的对比剂也可作为光激活效应器的探针的多峰剂。这些试剂被引入多细胞肿瘤球体(3D组织模型)和鸡胚的绒膜尿囊膜(CAM)中。使用一种新技术来检查发光衰减,该新技术涉及与弱电磁体集成在一起的光谱分辨荧光寿命设备。使用光谱解析的寿命设置来识别对磁场效应敏感的磁光种类,并与背景发射区分开。我们证明了施加的磁场可以通过时间和光谱分辨的发光变化来检测某些染料的反应速率和产物分布。我们将讨论在肿瘤中摄取的外源磁光探针的使用,以诱导光毒性,该过程由涉及活性氧的复杂且动态发展的机制控制,并监测治疗进展。在一系列弱磁场(0-300 mT)上测得的磁场增强与氧合作用相关,可用于监视由于光动力疗法过程中由于耗氧而发生的动态变化。这样的在线测量提供了可能,通过直接在治疗部位监测探针的时间分辨的,光谱分辨的发光的磁场增强/抑制,来获得有关对治疗反应的实时信息。生命的磁扰可以充当状态报告者,提供原位氧介导治疗的光学反馈,并允许实时调整光疗治疗计划。

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