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In vivo outcome study of BPD-mediated PDT using a macroscopic singlet oxygen model

机译:使用宏观单线态氧模型对BPD介导的PDT进行体内结果研究

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摘要

Macroscopic modeling of the apparent reacted singlet oxygen concentration ([1O2]rx) for use with photodynamic therapy (PDT) has been developed and studied for benzoporphryin derivative monoacid ring A (BPD), a common photosensitizer. The four photophysical parameters (ξ, σ, β, δ) and threshold singlet oxygen dose ([1O2]rx,sh) have been investigated and determined using the RIF model of murine fibrosarcomas and interstitial treatment delivery. These parameters are examined and verified further by monitoring tumor growth post-PDT. BPD was administered at 1 mg/kg, and mice were treated 3 hours later with fluence rates ranging between 75 – 150 mW/cm2 and total fluences of 100 – 350 J/cm2. Treatment was delivered superficially using a collimated beam. Changes in tumor volume were tracked following treatment. The tumor growth rate was fitted for each treatment condition group and compared using dose metrics including total light dose, PDT dose, and reacted singlet oxygen. Initial data showing the correlation between outcomes and various dose metrics indicate that reacted singlet oxygen serves as a good dosimetric quantity for predicting PDT outcome.
机译:已开发出用于光动力疗法(PDT)的表观反应单线态氧浓度([ 1 O2] rx)的宏观模型,并针对常见的光敏剂苯并卟啉衍生物单酸环A(BPD)进行了研究。使用鼠纤维肉瘤的RIF模型和间质治疗方案,研究并确定了四个光物理参数(ξ,σ,β,δ)和阈值单线态氧剂量([ 1 O2] rx,sh) 。通过监测PDT后的肿瘤生长进一步检查和验证这些参数。 BPD的剂量为1 mg / kg,3小时后以75 – 150 mW / cm 2 的通量率和100–350 J / cm 2 < / sup>。使用准直光束表面进行治疗。治疗后追踪肿瘤体积的变化。对每个治疗条件组拟合肿瘤生长速率,并使用剂量指标进行比较,包括总光剂量,PDT剂量和反应的单线态氧。显示结果与各种剂量指标之间相关性的初始数据表明,反应的单线态氧可作为预测PDT结果的良好剂量。

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