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Fluorescence and Magnetic Resonance Dual-Modality Imaging-Guided Photothermal and Photodynamic Dual-Therapy with Magnetic Porphyrin-Metal Organic Framework Nanocomposites

机译:磁性卟啉金属有机骨架纳米复合材料的荧光和磁共振双模态成像指导的光热和光动力双重疗法

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摘要

Phototherapy shows some unique advantages in clinical application, such as remote controllability, improved selectivity, and low bio-toxicity, than chemotherapy. In order to improve the safety and therapeutic efficacy, imaging-guided therapy seems particularly important because it integrates visible information to speculate the distribution and metabolism of the probe. Here we prepare biocompatible core-shell nanocomposites for dual-modality imaging-guided photothermal and photodynamic dual-therapy by the in situ growth of porphyrin-metal organic framework (PMOF) on Fe3O4@C core. Fe3O4@C core was used as T2-weighted magnetic resonance (MR) imaging and photothermal therapy (PTT) agent. The optical properties of porphyrin were well remained in PMOF, and PMOF was therefore selected for photodynamic therapy (PDT) and fluorescence imaging. Fluorescence and MR dual-modality imaging-guided PTT and PDT dual-therapy was confirmed with tumour-bearing mice as model. The high tumour accumulation of Fe3O4@C@PMOF and controllable light excitation at the tumour site achieved efficient cancer therapy, but low toxicity was observed to the normal tissues. The results demonstrated that Fe3O4@C@PMOF was a promising dual-imaging guided PTT and PDT dual-therapy platform for tumour diagnosis and treatment with low cytotoxicity and negligible in vivo toxicity.
机译:与化学疗法相比,光疗在临床应用中显示出一些独特的优势,例如远程可控性,更高的选择性和较低的生物毒性。为了提高安全性和治疗功效,影像引导疗法显得尤为重要,因为它整合了可见信息以推测探针的分布和代谢。在这里,我们通过在Fe3O4 @ C核上原位生长卟啉-金属有机骨架(PMOF),制备用于双模态成像引导的光热和光动力双重疗法的生物相容性核壳纳米复合材料。 Fe3O4 @ C核用作T2加权磁共振(MR)成像和光热疗法(PTT)剂。卟啉的光学性质在PMOF中保留得很好,因此选择PMOF进行光动力疗法(PDT)和荧光成像。以荷瘤小鼠为模型,证实了荧光和MR双模态成像指导的PTT和PDT双重疗法。 Fe3O4 @ C @ PMOF的高肿瘤积累和在肿瘤部位可控的光激发实现了有效的癌症治疗,但对正常组织却观察到低毒性。结果表明,Fe3O4 @ C @ PMOF是一种有前途的双成像引导PTT和PDT双治疗平台,可用于肿瘤诊断和治疗,细胞毒性低,体内毒性可忽略不计。

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