Department of Biological Science and Technology, Institute of Molecular Medicine and Bioengineering, National Chiao Tung University, 75 Bo-Ai Street, Hsinchu 30068, Taiwan.
Translational Research Center, Cancer Center, and Department of Obstetrics and Gynecology, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Biomaterials. 2014 May;35(16):4678-87. doi: 10.1016/j.biomaterials.2014.02.026. Epub 2014 Mar 7.
A novel dual functional theranosis platform is developed based on manganese magnetism-engineered iron oxide (MnMEIO) and gold nanorods (AuNRs) to combine magnetic resonance (MR) imaging and photothermal therapy in one nanocluster. The platform showed improved T2-weighted MR imaging and exhibited a near-infrared (NIR) induced temperature elevation due to the unique characteristics of AuNRs@MnMEIOs nanoclusters. The obtained dual functional spherical-shaped nanoclusters showed low cytotoxicity, and high cellular uptake efficiency. The AuNRs@MnMEIOs nanoclusters also demonstrated a 1.9 and 2.2 folds r2 relaxivity value higher than those of monodispersed MnMEIO and Resovist. In addition, in vivo MR imaging study found that the contrast enhancements were - 70.4 ± 4.3% versus - 7.5 ± 3.0% in Her-2/neu overexpression tumors as compared to the control tumors. More importantly, NIR laser irradiation to the tumor site resulted in outstanding photothermal therapeutic efficacy and without damage to the surrounding tissue. In additional, the prepared dual functional AuNRs@MnMEIOs display high stability and furthermore disperse even in the presence of external magnet, showing that AuNRs@MnMEIOs nanoclusters can be manipulated by an external magnetic field. Therefore, such nanoclusters combined MR imaging and photothermal therapeutic functionality can be developed as a promising nanosystem for effective cancer diagnosis and therapy.
一种新型的双重功能治疗平台是基于锰磁工程氧化铁(MnMEIO)和金纳米棒(AuNRs)开发的,将磁共振(MR)成像和光热治疗结合在一个纳米簇中。该平台显示出改进的 T2 加权磁共振成像,并由于 AuNRs@MnMEIOs 纳米簇的独特特性而表现出近红外(NIR)诱导的温度升高。所获得的双重功能球形纳米簇表现出低细胞毒性和高细胞摄取效率。AuNRs@MnMEIOs 纳米簇的 r2 弛豫率值也比单分散 MnMEIO 和 Resovist 分别高出 1.9 倍和 2.2 倍。此外,体内磁共振成像研究发现,与对照肿瘤相比,在 Her-2/neu 过表达肿瘤中,对比增强分别为-70.4±4.3%与-7.5±3.0%。更重要的是,对肿瘤部位进行近红外激光照射导致出色的光热治疗效果,且周围组织不受损伤。此外,所制备的双重功能 AuNRs@MnMEIOs 显示出高稳定性,并且即使在外加磁场的存在下也能分散,表明 AuNRs@MnMEIOs 纳米簇可以通过外部磁场进行操纵。因此,这种具有磁共振成像和光热治疗功能的纳米簇可以开发为用于有效癌症诊断和治疗的有前途的纳米系统。