State Key Laboratory of Medicinal Chemical Biology and Tianjin Key Laboratory of Biosensing and Molecular Recognition, College of Chemistry, Nankai University, Tianjin, 300071, China.
Tianjin Key Laboratory of Tumor Microenvironment and Neurovascular Regulation, School of Medicine, Nankai University, Tianjin, 300071, China.
Small. 2017 May;13(17). doi: 10.1002/smll.201603459. Epub 2017 Feb 28.
Imaging-guided therapy systems (IGTSs) are revolutionary techniques used in cancer treatment due to their safety and efficiency. IGTSs should have tunable compositions for bioimaging, a suitable size and shape for biotransfer, sufficient channels and/or pores for drug loading, and intrinsic biocompatibility. Here, a biocompatible nanoscale zirconium-porphyrin metal-organic framework (NPMOF)-based IGTS that is prepared using a microemulsion strategy and carefully tuned reaction conditions is reported. A high content of porphyrin (59.8%) allows the achievement of efficient fluorescent imaging and photodynamic therapy (PDT). The 1D channel of the Kagome topology of NPMOFs provides a 109% doxorubicin loading and pH-response smart release for chemotherapy. The fluorescence guiding of the chemotherapy-and-PDT dual system is confirmed by the concentration of NPMOFs at cancer sites after irradiation with a laser and doxorubicin release, while low toxicity is observed in normal tissues. NPMOFs are established as a promising platform for the early diagnosis of cancer and initial therapy.
影像引导治疗系统(IGTSs)由于其安全性和效率,是癌症治疗中的革命性技术。IGTSs 的生物成像应具有可调组成、适合生物传递的大小和形状、足够的通道和/或用于药物负载的孔以及固有生物相容性。在这里,报道了一种使用微乳液策略和精心调整的反应条件制备的基于生物相容性纳米级锆卟啉金属有机骨架(NPMOF)的 IGTS。卟啉的高含量(59.8%)可实现高效荧光成像和光动力疗法(PDT)。NPMOFs 的 Kagome 拓扑 1D 通道提供了 109%的阿霉素负载和 pH 响应智能释放,用于化学疗法。在激光照射后,通过在癌症部位的 NPMOFs 浓度和阿霉素释放来确认化疗和 PDT 双重系统的荧光引导,而在正常组织中观察到低毒性。NPMOFs 被确立为癌症早期诊断和初步治疗的有前途的平台。