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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Ternary graphene quantum dot-polydopamine-Mn3O4 nanoparticles for optical imaging guided photodynamic therapy and T-1-weighted magnetic resonance imaging
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Ternary graphene quantum dot-polydopamine-Mn3O4 nanoparticles for optical imaging guided photodynamic therapy and T-1-weighted magnetic resonance imaging

机译:三元石墨烯量子点-聚多巴胺-Mn3O4纳米粒子,用于光学成像,光动力疗法和T-1加权磁共振成像

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摘要

Imaging-guided therapy, which bridges treatment and diagnosis, plays an important role in overcoming the limitations of classical cancer therapy. To provide a more exact location of the tumor and to reduce side effects to normal tissues, a multifunctional probe was designed to serve as both an imaging agent and a therapeutic agent. Ternary hybrid nanoparticles comprised of visible red-responsive graphene, the T-1-weighted magnetic resonance imaging (MRI) agent Mn3O4 and a mussel-inspired linker polydopamine. The conjugation of graphene to Mn3O4 through polydopamine enhanced the water solubility of Mn3O4, enabling an efficient uptake by cancer cells as well as tumor accumulation when the nanoparticles were intravenously administered into mice. These nanoparticles, when localized at a tumor site, exhibited low cytotoxicity in the dark, while light irradiation of the cancer cells transfected with the nanoparticles resulted in significant phototherapeutic effects, apparently by generating toxic reactive oxygen species. These nanoparticles also allowed excellent T-1-weighted MR imaging in a human lung cancer xenograft model and were successfully used for combined visible red-imaging-guided photodynamic therapy and T-1-weighted MRI.
机译:影像引导疗法将治疗与诊断联系起来,在克服经典癌症疗法的局限性方面发挥着重要作用。为了提供更精确的肿瘤位置并减少对正常组织的副作用,设计了多功能探针同时用作成像剂和治疗剂。三元杂化纳米粒子,由可见的红色响应石墨烯,T-1加权磁共振成像(MRI)剂Mn3O4和贻贝启发的接头聚多巴胺组成。通过聚多巴胺将石墨烯与Mn3O4结合,可增强Mn3O4的水溶性,当将纳米颗粒静脉内施用于小鼠时,癌细胞可有效吸收以及肿瘤蓄积。这些纳米粒子,当定位在肿瘤部位时,在黑暗中表现出低的细胞毒性,而用纳米粒子转染的癌细胞的光照射则明显产生光活性,从而产生明显的光疗效果。这些纳米颗粒还可以在人类肺癌异种移植模型中实现出色的T-1加权MR成像,并成功用于可见红色成像引导的光动力疗法和T-1加权MRI的组合。

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