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Low dose photodynamic therapy harmonizes with radiation therapy to induce beneficial effects on pancreatic heterocellular spheroids

机译:低剂量光动力疗法与放射疗法相协调对胰腺异细胞球体产生有益影响

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摘要

Photodynamic therapy (PDT) has seen long standing interest as a therapy for resistant cancers, but the main Achilles’ heel for its successful clinical exploitation is the use of poorly penetrating visible light. This limitation could be overcome by using radioluminescent nanoparticles, which can be excited during radiation therapy (RT) with penetrating X-rays. When infused in tumors, X-ray activated-nanoscintillators act as internal light sources and excite nearby photosensitizers. Recent studies demonstrated that it is realistic to achieve low dose PDT with current nanoscintillators. However, as the origin of enhanced RT efficacy with nanoscintillators may have varying origins, we aimed to answer the basic question: Is a combination of low-dose PDT beneficial to the RT efficacy in clinically relevant models of cancer?Pancreatic cancer (PanCa) remains a lethal disease for which RT is part of the palliative care and for which PDT demonstrated promising results in clinical trial. We thus evaluated the combination of low-dose PDT and RT delivered in absence of nanoscintillators on various heterocellular spheroid models that recapitulate the clinical heterogeneity of PanCa. Although therapeutic effects emerged at different timepoints in each model, the RT/PDT combination uniformly achieved favorable outcomes. With RT providing stunted tumor growth while PDT drove adjuvant apoptotic and necrotic cell death, the combination produced significantly smaller and less viable PanCa spheroids.In conclusion, the beneficial RT/PDT treatment outcomes encourage the further development of nanoscinitillators for X-ray-activated PDT. Assessment of such combination treatments should encompass multiparametric and temporally-spaced assessment of treatment effects in preclinical cancer models.
机译:长期以来,光动力疗法(PDT)作为抗药性癌症的治疗方法引起了人们的兴趣,但是成功进行临床开发的主要致命弱点是使用了穿透力差的可见光。通过使用放射发光的纳米颗粒可以克服这一局限,可以在放射治疗(RT)期间使用穿透性的X射线激发它们。当注入肿瘤中时,X射线活化的纳米闪烁体充当内部光源并激发附近的光敏剂。最近的研究表明,使用当前的纳米闪烁体实现低剂量的PDT是现实的。然而,由于纳米闪烁体增强RT疗效的起源可能有不同的起源,我们旨在回答一个基本问题:低剂量PDT的组合是否在临床相关的癌症模型中对RT疗效有益?胰腺癌(PanCa)仍然存在RT是姑息治疗的一部分,PDT在临床试验中显示出令人鼓舞的结果,这是一种致命疾病。因此,我们评估了在不存在纳米闪烁体的情况下低剂量PDT和RT的组合,该模型在概括PanCa临床异质性的各种异型球体模型上。尽管每种模型在不同的时间点都出现了治疗效果,但RT / PDT的联合使用均取得了良好的效果。 RT可以阻止肿瘤的生长,而PDT可以促进佐剂凋亡和坏死细胞的死亡,因此该组合产生的PanCa球体明显更小,更不可行。总之,RT / PDT有益的治疗结果鼓励了纳米闪烁体进一步开发X射线激活PDT。 。此类联合治疗的评估应包括临床前癌症模型中治疗效果的多参数和时间间隔评估。

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