CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, 100049, China.
College of Materials Science and Optoelectronic Technology, University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Mater. 2018 Oct;30(43):e1804046. doi: 10.1002/adma.201804046. Epub 2018 Sep 10.
Peroxynitrite (ONOO ), the reaction product derived from nitric oxide (NO) and superoxide (O ), is a potent oxidizing and nitrating agent that modulates complex biological processes and promotes cell death. Therefore, it can be expected that the overproduction of ONOO in tumors can be an efficient approach in cancer therapy. Herein, a multifunctional X-ray-controlled ONOO generation platform based on scintillating nanoparticles (SCNPs) and UV-responsive NO donors Roussin's black salt is reported, and consequently the mechanism of their application in enhanced therapeutic efficacy of radiotherapy is illustrated. Attributed to the radioluminescence and high X-ray-absorbing property of SCNPs, the nanocomposite can produce NO and O simultaneously when excited by X-ray irradiation. Such simultaneous release of NO and O ensures the efficient X-ray-controlled generation of ONOO in tumors. Meanwhile, the application of X-rays as the excitation source can achieve better penetration depth and induce radiotherapy in this nanotherapeutic platform. It is found that the X-ray-controlled ONOO -generation platform can efficiently improve the radiotherapy efficiency via directly damaging DNA, downregulating the expression of the DNA-repair enzyme, and overcoming the hypoxia-associated resistance in radiotherapy. Therefore, this SCNP-based platform may provide a new combinatorial strategy of ONOO and radiotherapy to improve cancer treatment.
过氧亚硝酸盐 (ONOO–) 是由一氧化氮 (NO) 和超氧阴离子 (O 2 –) 反应生成的一种强氧化剂和硝化剂,可调节复杂的生物过程并促进细胞死亡。因此,可以预期肿瘤中 ONOO–的过度产生可以成为癌症治疗的有效方法。在此,我们报道了一种基于闪烁纳米粒子 (SCNP) 和光响应型 NO 供体 Roussin 黑盐的多功能 X 射线控制 ONOO–生成平台,并阐明了其在增强放射治疗疗效中的应用机制。由于 SCNP 的放射发光和高 X 射线吸收特性,纳米复合材料在受到 X 射线照射时可以同时产生 NO 和 O 2 –。这种同时释放的 NO 和 O 2 –可确保在肿瘤中高效地 X 射线控制生成 ONOO–。同时,将 X 射线用作激发源可以实现在该纳米治疗平台中更好的穿透深度和诱导放射治疗。研究发现,X 射线控制的 ONOO–生成平台可通过直接损伤 DNA、下调 DNA 修复酶的表达以及克服放射治疗中的缺氧相关耐药性,有效地提高放射治疗效率。因此,基于 SCNP 的平台可能为改善癌症治疗提供一种 ONOO–和放射治疗的新联合策略。