| Literature DB >> 35390525 |
Kang-Liang Lou1, Pei-Yuan Wang2, Rui-Qin Yang1, Yi-Yang Gao1, Hai-Na Tian3, Yong-Ying Dang1, Yang Li2, Wen-He Huang4, Min Chen5, Xiao-Long Liu6, Guo-Jun Zhang7.
Abstract
The near-infrared fluorescence imaging has been integrated into the operating room to guide tumor resection, potentially reducing the positive margin rates in breast-conserving surgery (BCS). Relative to the widely used first near-infrared fluorescence imaging, imaging in the second near-infrared (NIR-II) region possesses higher contrast and deeper tissue penetration, particularly in the NIR-IIb window, offering many new opportunities for imaging-guided BCS. Here, we fabricated the c(RGDfC) functionalized erbium-based rare-earth nanoparticles (ErNPs@cRGD) with superior optical property in NIR-IIb region. Owing to deeper tissue penetration and efficient tumor targeting, ErNPs@cRGD-based NIR-IIb fluorescence imaging achieved enhanced signal-to-background ratios in tumor visualization, which was able to guide more complete tumor resection, identify multiple microtumors and distinguish malignant lesions from normal tissues in various mice models. Based on these, this NIR-IIb imaging strategy for surgical navigation can significantly reduce positive margin rates and improve prognosis, laying a foundation for the clinical resection of breast cancer.Entities:
Keywords: Breast cancer; Imaging-guided tumor surgery; NIR-IIb fluorescence imaging; Rare-earth nanoparticles; Surgical navigation
Mesh:
Year: 2022 PMID: 35390525 DOI: 10.1016/j.nano.2022.102555
Source DB: PubMed Journal: Nanomedicine ISSN: 1549-9634 Impact factor: 5.307