Department of Radiology, The Second Affiliated Hospital of Soochow University, Suzhou 215004, China.
Department of Radiology, The First Affiliated Hospital of Soochow University, Institute of Medical Imaging, Soochow University, Suzhou 215006, China.
ACS Appl Mater Interfaces. 2020 Nov 4;12(44):49407-49415. doi: 10.1021/acsami.0c14576. Epub 2020 Oct 21.
Multimodal imaging-guided therapy holds great potential for precise theranostics of cancer metastasis. However, imaging agents enabling the convergence of complementary modalities with therapeutic functions to achieve perfect theranostics have been less exploited. This study reports the construction of a multifunctional nanoagent (FIP-Tc) that comprises FeO for magnetic resonance imaging, radioactive Tc for single-photon-emission computed tomography, and IR-1061 to serve for the second near-infrared fluorescence imaging, photoacoustic imaging, and photothermal therapy treatment of cancer metastasis. The nanoagent possessed superior multimodal imaging capability with high sensitivity and resolution attributing to the complement of all the imaging modalities. Moreover, the nanoagent showed ideal photothermal conversion ability to effectively kill tumor cells at low concentration and power laser irradiation. In the in vivo study, FIP-Tc confirmed the fast accumulation and clear delineation of metastatic lymph nodes within 1 h after administration. Attributing to the efficient uptake and photothermal conversion, FIP-Tc could raise the temperature of metastatic lymph nodes to 54 °C within 10 min laser irradiation, so as to facilitate tumor cell ablation. More importantly, FIP-Tc not only played an active role in suppressing cancer growth in metastatic lymph nodes with high efficiency but also could effectively prevent further lung metastasis after resection of the primary tumor. This study proposes a simple but effective theranostic approach toward lymph node metastasis.
多模态影像引导治疗在癌症转移的精准治疗中有很大的应用潜力。然而,能够将互补模态与治疗功能相结合的成像剂在实现完美治疗方面的应用还比较少。本研究报告了一种多功能纳米制剂(FIP-Tc)的构建,该纳米制剂由 FeO 用于磁共振成像、放射性 Tc 用于单光子发射计算机断层扫描,以及 IR-1061 用于第二近红外荧光成像、光声成像和光热治疗癌症转移。该纳米制剂具有优异的多模态成像能力,具有高灵敏度和分辨率,这归因于所有成像模式的互补。此外,该纳米制剂表现出理想的光热转换能力,能够在低浓度和低功率激光照射下有效杀死肿瘤细胞。在体内研究中,FIP-Tc 在给药后 1 小时内证实了转移性淋巴结的快速积累和清晰描绘。由于高效的摄取和光热转换,FIP-Tc 可以在 10 分钟的激光照射下将转移性淋巴结的温度升高到 54°C,从而促进肿瘤细胞消融。更重要的是,FIP-Tc 不仅在高效抑制转移性淋巴结中的肿瘤生长方面发挥了积极作用,而且还可以有效防止原发性肿瘤切除后进一步发生肺转移。本研究提出了一种针对淋巴结转移的简单而有效的治疗方法。