材料科学
磁铁矿
氧气
癌症
磁热疗
体内
癌症治疗
纳米技术
纳米颗粒
化学工程
磁性纳米粒子
冶金
医学
有机化学
化学
内科学
生物技术
工程类
生物
作者
Wenxian Du,Tianzhi Liu,Fengfeng Xue,Xiaojun Cai,Qian Chen,Yuanyi Zheng,Hangrong Chen
标识
DOI:10.1021/acsami.0c02465
摘要
Magnetite (Fe3O4) nanoparticles have been extensively used in noninvasive cancer treatment, for example, magnetic hyperthermia (MH) and chemodynamic therapy (CDT). However, how to achieve a highly efficient MH–CDT synergistic therapy based only on a single component of Fe3O4 still remains a challenge. Herein, hollow Fe3O4 mesocrystals (MCs) are constructed via a modified solvothermal method. Owing to the distinctive magnetic property of the mesocrystalline structure, Fe3O4 MCs show excellent magnetothermal conversion efficiency with a specific absorption rate of 722 w g–1 at a Fe concentration of 0.6 mg mL–1, much higher than that of Fe3O4 polycrystals (PCs). Moreover, Fe3O4 MCs also exhibit higher peroxidase-like activity than Fe3O4 PCs, which may be ascribed to the higher ratio of Fe2+/Fe3+ and more oxygen defects in the Fe3O4 MCs. Detailed in vivo results confirm that Fe3O4 MCs can instantly initiate CDT by producing the detrimental •OH, and such boosted reactive oxygen levels not only induces cell apoptosis but also reduces the expression of heat shock proteins, thus enabling low-temperature-mediated MH. More importantly, the in situ rising temperature resulted from MH in turn facilitates CDT, thus achieving a self-augmented synergistic effect between MH and CDT.
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