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首页> 外文期刊>Angewandte Chemie >Remote-Controlled Release of Singlet Oxygen by the Plasmonic Heating of Endoperoxide-Modified Gold Nanorods: Towards a Paradigm Change in Photodynamic Therapy
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Remote-Controlled Release of Singlet Oxygen by the Plasmonic Heating of Endoperoxide-Modified Gold Nanorods: Towards a Paradigm Change in Photodynamic Therapy

机译:通过内透铁氧化物改性金纳米棒的等离子体加热遥控释放单次氧气:朝向光动力治疗的范式变化

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摘要

The photodynamic therapy of cancer is contingent upon the sustained generation of singlet oxygen in the tumor region. However, tumors of the most metastatic cancer types develop a region of severe hypoxia, which puts them beyond the reach of most therapeutic protocols. More troublesome, photodynamic action generates acute hypoxia as the process itself diminishes cellular oxygen reserves, which makes it a self-limiting method. Herein, we describe a new concept that could eventually lead to a change in the 100 year old paradigm of photodynamic therapy and potentially offer solutions to some of the lingering problems. When gold nanorods with tethered endoperoxides are irradiated at 808nm, the endoperoxides undergo thermal cycloreversion, resulting in the generation of singlet oxygen. We demonstrate that the amount of singlet oxygen produced in this way is sufficient for triggering apoptosis in cell cultures.
机译:癌症的光动力学治疗对肿瘤区持续产生的单次氧源性癌。 然而,大多数转移性癌症类型的肿瘤发展了严重缺氧的区域,使它们超出了大多数治疗方案的覆盖范围。 更麻烦的是,光动力动作产生急性缺氧,因为过程本身减少了细胞氧储量,这使其成为自限制方法。 在此,我们描述了一个最终可能最终导致了100岁的光动力治疗范式的变化,并且可能提供对某些次要问题的解决方案。 当在808nm处照射具有束缚外科氧化萘甲醇的金纳米棒时,内透铁氧化物经历热环导体,导致单次氧的产生。 我们证明以这种方式产生的单线氧数的量足以引发细胞培养物中的凋亡。

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