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首页> 外文期刊>Nanoscale >Iron-based nanoparticles for MR imaging-guided ferroptosis in combination with photodynamic therapy to enhance cancer treatment
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Iron-based nanoparticles for MR imaging-guided ferroptosis in combination with photodynamic therapy to enhance cancer treatment

机译:铁基纳米粒子成像制导先生ferroptosis结合光动力治疗提高癌症治疗

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摘要

Ferroptosis therapy, which applies ferroptotic inducers to produce lethal lipid peroxidation and induce the death of tumor cells, is regarded as a promising therapeutic strategy for cancer treatment. However, there is still a challenge regarding how to increase reactive oxygen species (ROS) accumulation in the tumor microenvironment (TME) to enhance antitumor efficacy. Herein, we designed a nanosystem coated with the FDA approved poly(lactic-co-glycolic acid) (PLGA) containing ferrous ferric oxide (Fe3O4) and chlorin E6 (Ce6) for synergistic ferroptosis-photodynamic anticancer therapy. The Fe3O4-PLGA-Ce6 nanosystem can dissociate in the acidic TME to release ferrous/ferric ions and Ce6. Then, the Fenton reaction between the released ferrous/ferric ions and intracellular excess hydrogen peroxide can occur to produce hydroxyl radicals (OH) and induce tumor cell ferroptosis. The released Ce6 can increase the generation and accumulation of ROS under laser irradiation to offer photodynamic therapy, which can boost ferroptosis in 4T1 cells. Moreover, magnetic monodisperse Fe3O4 loading provides excellent T-2-weighted magnetic resonance imaging (MRI) properties. The Fe3O4-PLGA-Ce6 nanosystem possesses MRI ability and highly efficient tumor suppression with high biocompatibility in vivo due to the synergism of photodynamic and ferroptosis antitumor therapies.
机译:Ferroptosis疗法,ferroptotic适用诱导产生致命的脂质过氧化和诱导肿瘤细胞的死亡,被认为是一个对癌症有前景的治疗策略治疗。关于如何增加活性氧(ROS)积累在肿瘤微环境(时间)来增强抗肿瘤功效。设计了一个综合涂上了美国食品和药物管理局保利(lactic-co-glycolic酸)(PLGA)批准含有氧化铁(Fe3O4)和亚铁氯E6 (Ce6)协同ferroptosis-photodynamic抗癌治疗。Fe3O4-PLGA-Ce6综合可以分离的酸性的时间释放/铁离子和亚铁Ce6。黑色/铁离子和细胞内释放过量的过氧化氢生产可能发生羟基自由基(OH)和诱导肿瘤细胞ferroptosis。ROS的生成和积累下的激光辐照光动力治疗,可以提高ferroptosis 4 t1细胞。单分散磁性Fe3O4加载提供了优秀的T-2-weighted磁共振成像(MRI)属性。拥有核磁共振成像能力和高效的肿瘤抑制体内生物相容性高由于光能和的合作ferroptosis抗肿瘤治疗。

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