首页> 外文会议>Optical Interactions with Tissue and Cells XVI; Progress in Biomedical Optics and Imaging; vol.6, no.10 >Anti-tumor immunity generated by photodynamic therapy in a metastatic murine tumor model
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Anti-tumor immunity generated by photodynamic therapy in a metastatic murine tumor model

机译:光动力疗法在转移性鼠肿瘤模型中产生的抗肿瘤免疫力

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Photodynamic therapy (PDT) is a modality for the treatment of cancer involving excitation of photosensitizers with harmless visible light producing reactive oxygen species. The major biological effects of PDT are apoptosis of tumor cells, destruction of the blood supply and activation of the immune system. The objective of this study is to compare in an animal model of metastatic cancer, PDT alone and PDT combined with low-dose cyclophosphamide (CY). Since the tumor we used is highly metastatic, it is necessary to generate anti-tumor immunity using PDT to both cure the primary tumor and prevent death from metastasis. This immunity may be potentiated by low dose CY. In our model we used J774 cells (a Balb/c reticulum cell sarcoma line with the characteristics of macrophages) and the following PDT regimen: benzoporphyrin derivative monoacid ring A (BPD, 2mg/kg injected IV followed after 15 min by 150 J/cm~2 of 690-nm light). CY (50 mg/kg i.p.) was injected 48 hours before light delivery. BPD-PDT led to complete regression of the primary tumor in more than half the mice but no permanent cures were obtained. BPD-PDT in combination with CY led to 60% permanent cures. CY alone gave no permanent cures but did provide a survival advantage. To probe permanent immunity cured animals were rechallenged with the same tumor cell line and the tumors were rejected in 71% of mice cured with BPD-PDT plus CY. We conclude that BPD-PDT in combination with CY gives best overall results and that this is attributable to immunological response activation in addition to PDT-mediated destruction of the tumor.
机译:光动力疗法(PDT)是一种治疗癌症的方法,包括用产生活性氧的无害可见光激发光敏剂。 PDT的主要生物学作用是肿瘤细胞的凋亡,血液供应的破坏和免疫系统的激活。这项研究的目的是在转移性癌症的动物模型中比较单独的PDT和PDT联合低剂量环磷酰胺(CY)的动物模型。由于我们使用的肿瘤具有高度转移性,因此有必要使用PDT产生抗肿瘤免疫力,以治愈原发肿瘤并防止因转移而死亡。低剂量CY可以增强这种免疫力。在我们的模型中,我们使用了J774细胞(具有巨噬细胞特征的Balb / c网状细胞肉瘤细胞系)和以下PDT方案:苯并卟啉衍生物单酸环A(BPD,以2 mg / kg的剂量注射IV,然后在15分钟后以150 J / cm的剂量注射) 690纳米光的〜2)。在光传输前48小时注射CY(50 mg / kg i.p.)。 BPD-PDT在一半以上的小鼠中导致原发性肿瘤完全消退,但未获得永久治愈。 BPD-PDT与CY联用可导致60%的永久治愈。单独使用CY并不能永久治愈,但确实提供了生存优势。为了探测永久的免疫力,用相同的肿瘤细胞系对治愈的动物进行了挑战,并且在用BPD-PDT加CY治愈的小鼠中,有71%的肿瘤被排斥。我们得出的结论是,BPD-PDT与CY联用可提供最佳的总体结果,这归因于除PDT介导的肿瘤破坏之外的免疫应答激活。

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