Wall Matthew A, Shaffer Travis M, Harmsen Stefan, Tschaharganeh Darjus-Felix, Huang Chun-Hao, Lowe Scott W, Drain Charles Michael, Kircher Moritz F
Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Department of Chemistry, Hunter College and the Graduate Center, City University of New York, New York, NY, USA.
Theranostics. 2017 Jul 22;7(12):3068-3077. doi: 10.7150/thno.18019. eCollection 2017.
A single contrast agent that offers whole-body non-invasive imaging along with the superior sensitivity and spatial resolution of surface-enhanced resonance Raman scattering (SERRS) imaging would allow both pre-operative mapping and intraoperative imaging and thus be highly desirable. We hypothesized that labeling our recently reported ultrabright SERRS nanoparticles with a suitable radiotracer would enable pre-operative identification of regions of interest with whole body imaging that can be rapidly corroborated with a Raman imaging device or handheld Raman scanner in order to provide high precision guidance during surgical procedures. Here we present a straightforward new method that produces radiolabeled SERRS nanoparticles for combined positron emission tomography (PET)-SERRS tumor imaging without requiring the attachment of molecular chelators. We demonstrate the utility of these PET-SERRS nanoparticles in several proof-of-concept studies including lymph node (LN) tracking, intraoperative guidance for LN resection, and cancer imaging after intravenous injection. We anticipate that the radiolabeling method presented herein can be applied generally to nanoparticle substrates of various materials by first coating them with a silica shell and then applying the chelator-free protocol.
一种单一的造影剂,若能提供全身非侵入性成像,同时具备表面增强共振拉曼散射(SERRS)成像的高灵敏度和空间分辨率,将可实现术前定位和术中成像,因而极具吸引力。我们推测,用合适的放射性示踪剂标记我们最近报道的超亮SERRS纳米颗粒,能够通过全身成像在术前识别感兴趣区域,随后可用拉曼成像设备或手持式拉曼扫描仪迅速进行确认,以便在手术过程中提供高精度引导。在此,我们介绍一种简单的新方法,可生产用于正电子发射断层扫描(PET)-SERRS联合肿瘤成像的放射性标记SERRS纳米颗粒,且无需连接分子螯合剂。我们在多项概念验证研究中展示了这些PET-SERRS纳米颗粒的效用,包括淋巴结(LN)追踪、LN切除术中的引导以及静脉注射后的癌症成像。我们预计,本文介绍的放射性标记方法可通过先在各种材料的纳米颗粒基底上包覆一层二氧化硅壳,然后采用无螯合剂方案,普遍应用于这些基底。