Department of Materials Science, University of Milano-Bicocca, Via R. Cozzi 55, 20125 Milan, Italy.
NANOMIB, Center for Biomedical Nanomedicine, University of Milano-Bicocca, P.zza Ateneo Nuovo 1, 20126 Milan, Italy.
Int J Mol Sci. 2022 Aug 5;23(15):8736. doi: 10.3390/ijms23158736.
Radiation (RT) remains the most frequently used treatment against cancer. The main limitation of RT is its lack of specificity for cancer tissues and the limited maximum radiation dose that can be safely delivered without damaging the surrounding healthy tissues. A step forward in the development of better RT is achieved by coupling it with other treatments, such as photodynamic therapy (PDT). PDT is an anti-cancer therapy that relies on the light activation of non-toxic molecules-called photosensitizers-to generate ROS such as singlet oxygen. By conjugating photosensitizers to dense nanoscintillators in hybrid architectures, the PDT could be activated during RT, leading to cell death through an additional pathway with respect to the one activated by RT alone. Therefore, combining RT and PDT can lead to a synergistic enhancement of the overall efficacy of RT. However, the involvement of hybrids in combination with ionizing radiation is not trivial: the comprehension of the relationship among RT, scintillation emission of the nanoscintillator, and therapeutic effects of the locally excited photosensitizers is desirable to optimize the design of the hybrid nanoparticles for improved effects in radio-oncology. Here, we discuss the working principles of the PDT-activated RT methods, pointing out the guidelines for the development of effective coadjutants to be tested in clinics.
辐射(RT)仍然是治疗癌症最常用的方法。RT 的主要局限性是其对癌症组织缺乏特异性,以及在不损伤周围健康组织的情况下安全输送的最大辐射剂量有限。通过将其与其他治疗方法(如光动力疗法(PDT))相结合,可以在更好的 RT 发展方面取得进展。PDT 是一种抗癌疗法,依赖于无毒分子(称为光敏剂)的光激活,以产生 ROS,如单线态氧。通过将光敏剂与混合结构中的致密纳米闪烁体偶联,PDT 可以在 RT 期间被激活,通过与单独的 RT 激活的途径不同,导致细胞死亡。因此,将 RT 和 PDT 相结合可以协同增强 RT 的整体疗效。然而,将混合物与电离辐射结合在一起并非易事:理解 RT、纳米闪烁体的闪烁发射和局部激发光敏剂的治疗效果之间的关系,对于优化混合纳米粒子的设计以提高放射肿瘤学中的效果是可取的。在这里,我们讨论了 PDT 激活 RT 方法的工作原理,指出了为在临床上进行测试而开发有效助剂的指导方针。