Department of Radiology, School of Medicine, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University, Shanghai 200011, China.
Engineering Research Center of Molecular and Neuro Imaging, Ministry of Education, School of Life Science and Technology, Xidian University, Xi'an, Shanxi 710071, China.
ACS Biomater Sci Eng. 2021 Apr 12;7(4):1640-1650. doi: 10.1021/acsbiomaterials.0c01807. Epub 2021 Mar 15.
Head and neck squamous cell carcinomas (HNSCCs) are one of the most common cancers with poor survival rates, which is attributed to the difficulty in the early detection of disease. However, conventional imaging methods lack accuracy and sensitivity in the early diagnosis of HNSCCs. Thus, there is an urgent need to develop an effective and sensitive approach for HNSCC imaging. As known, the cMet receptor is overexpressed in HNSCC tumor cells CAL27 and tumor tissues. Herein, we synthesize the dual-modal near-infrared II (NIR II) imaging of luminescence and T magnetic resonance imaging (MRI)-based nanoprobes with the cMet targeting binding peptide (NaGdF-PEG-cMBP), which has strong upconversion/NIR II luminescence and higher relaxivity compared with the commercially used gadolinium acid (5.871 vs 3.471 mM s). Additionally, the luminescence imaging of Yb,Er,Ce-doped probes showed that the material can efficiently accumulate in HNSCC tumors with the cMet-targeted. It can be clearly visualized in both subcutaneous and orthotopic HNSCC tumor models by dual-modal T-weighted MRI and NIR II luminescence imaging methods. The results demonstrate that our cMBP-conjugated nanoplatform may provide a novel and very efficient noninvasive diagnostic approach for HNSCC in the near future.
头颈部鳞状细胞癌(HNSCC)是最常见的癌症之一,其生存率较差,这归因于疾病早期检测的困难。然而,传统的成像方法在 HNSCC 的早期诊断中缺乏准确性和灵敏度。因此,迫切需要开发一种用于 HNSCC 成像的有效和敏感的方法。众所周知,cMet 受体在 HNSCC 肿瘤细胞 CAL27 和肿瘤组织中过表达。在此,我们合成了具有 cMet 靶向结合肽(NaGdF-PEG-cMBP)的双模式近红外 II(NIR II)发光和 T 磁共振成像(MRI)纳米探针,与商业上使用的钆酸相比,该探针具有较强的上转换/NIR II 发光和更高的弛豫率(5.871 与 3.471 mM s)。此外,掺杂 Yb、Er、Ce 的探针的发光成像表明,该材料可以通过靶向 cMet 高效地聚集在 HNSCC 肿瘤中。通过双模态 T 加权 MRI 和 NIR II 发光成像方法,可以在皮下和原位 HNSCC 肿瘤模型中清晰地观察到。结果表明,我们的 cMBP 缀合纳米平台可能为 HNSCC 的近红外诊断提供一种新颖且非常有效的非侵入性诊断方法。