Princess Margaret Cancer Centre, University Health Network, Toronto, Ontario M5G 1L7, Canada.
Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill, North Carolina 27599, United States.
ACS Nano. 2023 May 9;17(9):7979-8003. doi: 10.1021/acsnano.3c00891. Epub 2023 Apr 27.
Tumoricidal photodynamic (PDT) and photothermal (PTT) therapies harness light to eliminate cancer cells with spatiotemporal precision by either generating reactive oxygen species or increasing temperature. Great strides have been made in understanding biological effects of PDT and PTT at the cellular, vascular and tumor microenvironmental levels, as well as translating both modalities in the clinic. Emerging evidence suggests that PDT and PTT may synergize due to their different mechanisms of action, and their nonoverlapping toxicity profiles make such combination potentially efficacious. Moreover, PDT/PTT combinations have gained momentum in recent years due to the development of multimodal nanoplatforms that simultaneously incorporate photodynamically- and photothermally active agents. In this review, we discuss how combining PDT and PTT can address the limitations of each modality alone and enhance treatment safety and efficacy. We provide an overview of recent literature featuring dual PDT/PTT nanoparticles and analyze the strengths and limitations of various nanoparticle design strategies. We also detail how treatment sequence and dose may affect cellular states, tumor pathophysiology and drug delivery, ultimately shaping the treatment response. Lastly, we analyze common experimental design pitfalls that complicate preclinical assessment of PDT/PTT combinations and propose rational guidelines to elucidate the mechanisms underlying PDT/PTT interactions.
肿瘤杀伤光动力(PDT)和光热(PTT)疗法利用光在时空上精确地消除癌细胞,其方法是产生活性氧或增加温度。在细胞、血管和肿瘤微环境水平上,以及在临床中转化这两种模式方面,已经在理解 PDT 和 PTT 的生物学效应方面取得了重大进展。新出现的证据表明,PDT 和 PTT 可能由于其不同的作用机制而协同作用,并且它们的毒性谱不重叠使得这种组合具有潜在的疗效。此外,由于同时包含光动力和光热活性试剂的多模式纳米平台的发展,PDT/PTT 组合在近年来获得了发展势头。在本综述中,我们讨论了如何结合 PDT 和 PTT 可以解决每种模式单独存在的局限性,并提高治疗的安全性和疗效。我们提供了最近关于双 PDT/PTT 纳米粒子的文献综述,并分析了各种纳米粒子设计策略的优缺点。我们还详细介绍了治疗顺序和剂量如何影响细胞状态、肿瘤病理生理学和药物输送,最终影响治疗反应。最后,我们分析了使 PDT/PTT 组合的临床前评估复杂化的常见实验设计陷阱,并提出了合理的指导方针来阐明 PDT/PTT 相互作用的机制。