Ultrasound Molecular Imaging of Epithelial Mesenchymal Transition for Evaluating Tumor Metastatic Potential via Targeted Biosynthetic Gas Vesicles

Author:

Hao Yongsheng12,Li Zhenzhou34,Luo Jingna34,Li Lingling5,Yan Fei12ORCID

Affiliation:

1. Center for Cell and Gene Circuit Design CAS Key Laboratory of Quantitative Engineering Biology Shenzhen Institute of Synthetic Biology Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 P. R. China

2. Shenzhen College of Advanced Technology University of the Chinese Academy of Sciences Beijing 100049 P. R. China

3. Shenzhen University Health Science Center Shenzhen 518000 P. R. China

4. Department of Ultrasound The Second People's Hospital of Shenzhen The First Affiliated Hospital of Shenzhen University Shenzhen 518061 P. R. China

5. Department of Ultrasound Sun Yat‐Sen University Cancer Center State Key Laboratory of Oncology in South China Collaborative Innovation Center for Cancer Medicine Guangzhou 510060 P. R. China

Abstract

AbstractEpithelial mesenchymal transition (EMT) of tumor cells is recognized as the main driver to promote metastasis. Extensive researches suggest that gradually decreased E‐cadherin (E‐cad) and increased N‐cadherin (N‐cad) exist in the tumor cells during the EMT process. However, there still lacks suitable imaging methods to monitor the status of EMT for evaluating tumor metastatic potentials. Herein, the E‐cad‐targeted and N‐cad‐targeted gas vesicles (GVs) are developed as the acoustic probes to monitor the EMT status in tumor. The resulting probes have ≈200 nm particle size and good tumor cell targeting performance. Upon systemic administration, E‐cad‐GVs and N‐cad‐GVs can traverse through blood vessels and bind to the tumor cells, producing strong contrast imaging signals in comparison with the nontargeted GVs. The contrast imaging signals correlate well with the expression levels of E‐cad and N‐cad and tumor metastatic ability. This study provides a new strategy to noninvasively monitor the EMT status and help to evaluate tumor metastatic potential in vivo.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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