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Development of hollow ferrogadolinium nanonetworks for dual-modal MRI guided cancer chemotherapy

机译:用于双模式MRI指导的癌症化学疗法的空心铁氰化铵纳米网络的开发

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The development of hollow ferrogadolinium nanonetworks has not been reported for nanomedicine application until now. In this study, we developed a hollow and porous ferrogadolinium nanonetwork structure using the one-pot solvothermal method. This nanoparticle could be simultaneously used as a T _(1) and T _(2) dual-modal magnetic resonance imaging (MRI) contrast agent. In addition, the hollow lumen and abundant pores of the nanonetworks maximized the loading capacity and conferred the nanoplatforms for suitable anticancer drug loading capacity. Using these nanonetworks, MRI and anticancer experiments were conducted in vitro and satisfactory dual-modal MRI and cancer chemotherapy results were obtained. Therefore, the nanonetworks with dual-modal MRI and drug loading abilities effectively complement the ferrogadolinium composites' library and hold great promise in nanomedicine for simultaneous cancer diagnosis and chemotherapy.
机译:迄今为止,尚未报道中空的铁氰化铵纳米网络的发展用于纳米医学的应用。在这项研究中,我们开发了使用一锅溶剂热法的空心和多孔的吡咯烷鎓纳米网络结构。该纳米粒子可以同时用作T_(1)和T_(2)双峰磁共振成像(MRI)造影剂。另外,纳米网络的中空管腔和丰富的孔最大化了负载能力,并赋予纳米平台合适的抗癌药物负载能力。使用这些纳米网络,在体外进行了MRI和抗癌实验,并获得了令人满意的双峰MRI和癌症化疗结果。因此,具有双模态MRI和药物装载能力的纳米网络有效地补充了铁rog复合材料的文库,并在纳米医学中为癌症的同时诊断和化疗提供了广阔的前景。

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