4.7 Article

Multi-modal imaging probe for EpCAM overexpressed in breast cancer

Journal

TALANTA
Volume 250, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.talanta.2022.123715

Keywords

Breast cancer; Fluorescence imaging; EpCAM; Targeting peptide; Surgery navigation

Funding

  1. National Natural Science Foundation of China [NSFC 91859204, 81729002, 81727804]
  2. Postgraduate Research & Practice Innovation Program of Jiangsu Province [KYCX18_0800]
  3. State Key Laboratory of Natural Medicines Innovative Research Foundation [SKLNMZZCX201819]
  4. 1 Priority Academic Program Development of Jiangsu Higher Education

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This study designed novel EpCAM-targeting peptides YQ-S for precise detection of breast cancer. YQ-S2 showed greater binding affinity and ideal biosafety profile, and was chosen to represent YQ-S. By linking with a near-infrared fluorescent dye, the EpCAM-targeting probe YQ-S2-MPA was developed for real-time imaging and fluorescence-guided resection of breast cancer tumors. In vivo experiments showed higher tumor uptake of YQ-S2-MPA compared to SNF-MPA, and successful detection of metastatic lesions. YQ-S2-MPA also performed excellently in surgical navigation studies in preclinical models.
Breast cancer is a highly lethal and aggressive form of cancer. Early-stager diagnosis and intraoperative guidance are important endeavors for reducing associated morbidity and mortality among breast cancer patients. Epithelial cell adhesion molecule (EpCAM) is aberrantly expressed in the majority of breast carcinoma, making it an attractive imaging biomarker. Herein, we have designed novel EpCAM-targeting peptides (denoted as YQ-S) for precise breast carcinoma detection. The greater binding affinity of the designed peptide YQ-S2 over YQ-S1 and the reported peptide SNF was displayed on different cell lines with flow cytometry analysis, showing a positive correlation with the expression of EpCAM. Besides, YQ-S2 displayed an ideal biosafety profile with no evidence of any acute toxicity. Thus, YQ-S2 was chosen to represent YQ-S. By linking with the near-infrared fluorescent dye (MPA), we further developed the EpCAM-targeting probe (YQ-S2-MPA) for real-time imaging and fluorescence-guided resection of breast cancer tumors. In vivo imaging of the MCF-7 tumor-bearing model demonstrated higher tumor uptake of YQ-S2-MPA compared with that of SNF-MPA. The maximum tumor-to -normal tissue signal ratio of YQ-S2-MPA was 5.1, which was about 2 times that of SNF-MPA. Meanwhile, the metastatic lesions in 4T1 lung metastasis, and lymph node metastasis (LNM) mice were successfully detected under this imaging system. Notably, YQ-S2-MPA had excellent performance in surgical navigation studies in the preclinical models. Moreover, we exploited the Tc-99m-HYNIC-YQ-S2 to localize EpCAM positive tumors successfully. These data proved that YQ-S2 can distinguish EpCAM-positive orthotopic and metastatic tumors from surrounding normal tissues accurately, and possesses the clinical potential as a surgical navigation probe.

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