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Quantifying cancer cell receptors with paired-agent fluorescent imaging: a novel method to account for tissue optical property effects

机译:使用配对试剂荧光成像定量癌细胞受体:一种解决组织光学特性影响的新方法

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Dynamic fluorescence imaging approaches can be used to estimate the concentration of cell surface receptors in vivo. Kinetic models are used to generate the final estimation by taking the targeted imaging agent concentration as a function of time. However, tissue absorption and scattering properties cause the final readout signal to be on a different scale than the real fluorescent agent concentration. In paired-agent imaging approaches, simultaneous injection of a suitable control imaging agent with a targeted one can account for non-specific uptake and retention of the targeted agent. Additionally, the signal from the control agent can be a normalizing factor to correct for tissue optical property differences. In this study, the kinetic model used for paired-agent imaging analysis (i.e., simplified reference tissue model) is modified and tested in simulation and experimental data in a way that accounts for the scaling correction within the kinetic model fit to the data to ultimately extract an estimate of the targeted biomarker concentration.
机译:动态荧光成像方法可用于估计体内细胞表面受体的浓度。通过将目标显像剂浓度作为时间的函数,使用动力学模型生成最终估计值。但是,组织的吸收和散射特性会导致最终的读出信号与实际的荧光剂浓度不同。在成对剂成像方法中,将合适的对照成像剂与目标药物同时注射可以说明目标剂的非特异性吸收和保留。另外,来自控制剂的信号可以是归一化因子,以校正组织光学性质差异。在这项研究中,用于配对剂成像分析的动力学模型(即简化的参考组织模型)经过修改并在模拟和实验数据中进行了测试,从而可以说明动力学模型中的比例校正适用于最终数据提取目标生物标志物浓度的估计值。

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