Sensitive and specific detection of breast cancer lymph node metastasis through dual-modality magnetic particle imaging and fluorescence molecular imaging: a preclinical evaluation

被引:37
作者
Wang, Guorong [1 ,2 ]
Li, Wenzhe [3 ]
Shi, Guangyuan [2 ,4 ]
Tian, Yu [2 ,5 ]
Kong, Lingyan [1 ]
Ding, Ning [1 ]
Lei, Jing [1 ]
Jin, Zhengyu [1 ]
Tian, Jie [2 ,6 ,7 ]
Du, Yang [2 ,6 ]
机构
[1] Peking Union Med Coll & Chinese Acad Med Sci, Peking Union Med Coll Hosp, Dept Radiol, Beijing 100730, Peoples R China
[2] Chinese Acad Sci, Inst Automat, CAS Key Lab Mol Imaging, Beijing Key Lab Mol Imaging,State Key Lab Managem, Beijing 100190, Peoples R China
[3] Peking Univ, Sch Pharmaceut Sci, State Key Lab Nat & Biomimet Drugs, Beijing 100191, Peoples R China
[4] Univ Sci & Technol China, Hefei 230026, Peoples R China
[5] Med Sch Chinese PLA, Beijing 100853, Peoples R China
[6] Univ Chinese Acad Sci, Beijing 100080, Peoples R China
[7] Beihang Univ, Beijing Adv Innovat Ctr Big Data Based Precis Med, Sch Med, Beijing 100083, Peoples R China
基金
北京市自然科学基金; 中国国家自然科学基金;
关键词
Lymph node metastasis; Breast cancer; Magnetic particle imaging (MPI); Fluorescence molecular imaging (FMI); Superparamagnetic iron oxide nanoparticles (SPIOs);
D O I
10.1007/s00259-022-05834-5
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose A sensitive and specific imaging method to detect metastatic cancer cells in lymph nodes to detect the early-stage breast cancer is still a challenge. The purpose of this study was to investigate a novel breast cancer-targeting and tumour microenvironment ATP-responsive superparamagnetic iron oxide nanoparticles (SPIOs) imaging probe (abbreviated as SPIOs@A-T) that was developed to detect lymph node metastasis through fluorescence molecular imaging (FMI) and magnetic particle imaging (MPI). Methods The conjugation of the targeted peptide CREKA and SPIOs was via linker sulfo-SMCC, while the dsDNA-Cy5.5 was modified on SPIOs through the conjugation between maleimide group in sulfo-SMCC and sulfydryl group in dsDNA-Cy5.5. SPIOs@A-T was characterised for its imaging properties, targeting ability and toxicity in vitro. Mice with metastatic lymph node (MLN) of breast cancer were established to evaluate the FMI and MPI imaging strategy in vivo. Healthy mice with normal lymph node (NLN) were used as control group. Histological examination and biosafety evaluation were performed for further assessment. Results After injection with SPIOs@A-T, the obvious high fluorescent intensity and MPI signal were observed in MLN group than those in NLN group. FMI can specifically light up MLN using an ATP-responsive fluorescence design. On the other hand, MPI could complement the limitation of imaging depth from FMI and could detect MLN more sensitively. Besides, the biosafety evaluation results showed SPIOs@A-T had no detectable biological toxicity. Conclusion SPIOs@A-T imaging probe in combination with FMI and MPI can provide a promising novel method for the precise detection of MLN in vivo.
引用
收藏
页码:2723 / 2734
页数:12
相关论文
共 34 条
[1]   Using magnetic particle imaging systems to localize and guide magnetic hyperthermia treatment: tracers, hardware, and future medical applications [J].
Chandrasekharan, Prashant ;
Tay, Zhi Wei ;
Hensley, Daniel ;
Zhou, Xinyi Y. ;
Fung, Barry K. L. ;
Colson, Caylin ;
Lu, Yao ;
Fellows, Benjamin D. ;
Quincy Huynh ;
Saayujya, Chinmoy ;
Yu, Elaine ;
Orendorff, Ryan ;
Zheng, Bo ;
Goodwill, Patrick ;
Rinaldi, Carlos ;
Conolly, Steven .
THERANOSTICS, 2020, 10 (07) :2965-2981
[2]   Ultrasmall targeted nanoparticles with engineered antibody fragments for imaging detection of HER2-overexpressing breast cancer [J].
Chen, Feng ;
Ma, Kai ;
Madajewski, Brian ;
Zhuang, Li ;
Zhang, Li ;
Rickert, Keith ;
Marelli, Marcello ;
Yoo, Barney ;
Turker, Melik Z. ;
Overholtzer, Michael ;
Quinn, Thomas P. ;
Gonen, Mithat ;
Zanzonico, Pat ;
Tuesca, Anthony ;
Bowen, Michael A. ;
Norton, Larry ;
Subramony, J. Anand ;
Wiesner, Ulrich ;
Bradbury, Michelle S. .
NATURE COMMUNICATIONS, 2018, 9
[3]   New technologies in breast cancer sentinel lymph node biopsy; from the current gold standard to artificial intelligence [J].
Cykowska, Anna ;
Marano, Luigi ;
D'Ignazio, Alessia ;
Marrelli, Daniele ;
Swierblewski, Maciej ;
Jaskiewicz, Janusz ;
Roviello, Franco ;
Polom, Karol .
SURGICAL ONCOLOGY-OXFORD, 2020, 34 :324-335
[4]   Metastatic status of sentinel lymph nodes in breast cancer determined with photoacoustic microscopy via dual-targeting nanoparticles [J].
Dai, Yanfeng ;
Yu, Xiang ;
Wei, Jianshuang ;
Zeng, Fanxin ;
Li, Yiran ;
Yang, Xiaoquan ;
Luo, Qingming ;
Zhang, Zhihong .
LIGHT-SCIENCE & APPLICATIONS, 2020, 9 (01)
[5]   Extracellular ATP and P2 purinergic signalling in the tumour microenvironment [J].
Di Virgilio, Francesco ;
Sarti, Alba Clara ;
Falzoni, Simonetta ;
De Marchi, Elena ;
Adinolfi, Elena .
NATURE REVIEWS CANCER, 2018, 18 (10) :601-618
[6]   Optimization and Design of Magnetic Ferrite Nanoparticles with Uniform Tumor Distribution for Highly Sensitive MRI/MPI Performance and Improved Magnetic Hyperthermia Therapy [J].
Du, Yang ;
Liu, Xiaoli ;
Liang, Qian ;
Liang, Xing-Jie ;
Tian, Jie .
NANO LETTERS, 2019, 19 (06) :3618-3626
[7]   Lymph node infiltration, parallel metastasis and treatment success in breast cancer [J].
Engel, Jutta ;
Weichert, Wilko ;
Jung, Andreas ;
Emeny, Rebecca ;
Hoelzel, Dieter .
BREAST, 2019, 48 :1-6
[8]   Janus Magnetic-Plasmonic Nanoparticles for Magnetically Guided and Thermally Activated Cancer Therapy [J].
Espinosa, Ana ;
Reguera, Javier ;
Curcio, Alberto ;
Munoz-Noval, Alvaro ;
Kuttner, Christian ;
Van de Walle, Aurore ;
Liz-Marzan, Luis M. ;
Wilhelm, Claire .
SMALL, 2020, 16 (11)
[9]   Fibronectin-targeted dual-acting micelles for combination therapy of metastatic breast cancer [J].
Gong, Zhuoran ;
Chen, Min ;
Ren, Qiushi ;
Yue, Xiuli ;
Dai, Zhifei .
SIGNAL TRANSDUCTION AND TARGETED THERAPY, 2020, 5 (01)
[10]   Human-sized magnetic particle imaging for brain applications [J].
Graeser, M. ;
Thieben, F. ;
Szwargulski, P. ;
Werner, F. ;
Gdaniec, N. ;
Boberg, M. ;
Griese, F. ;
Moeddel, M. ;
Ludewig, P. ;
van de Ven, D. ;
Weber, O. M. ;
Woywode, O. ;
Gleich, B. ;
Knopp, T. .
NATURE COMMUNICATIONS, 2019, 10 (1)