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Analysis of progress and challenges for various patterns of c-MET-targeted molecular imaging: a systematic review
Zhaoguo Han1,2, Yongyi Wu1,2, Kai Wang1,2
1Molecular Imaging Research Center, Harbin Medical University, 766Xiangan N street, Songbei District, Harbin, Heilongjiang, 150028, China.
Background:
Mesenchymal-epithelial transition factor also named c-MET is a receptor tyrosine kinase for the hepatocyte growth factor that plays a pivotal role in tumorigenesis. c-MET-targeted therapies have been tested in preclinical models and patients, with significant benefits for cancer treatment. In recent years, many studies have shown that the expression level and activation status of c-MET are closely correlated to c-MET-targeted therapy response and clinical prognosis, thus highlighting the importance of evaluating the c-MET status during and prior to targeted therapy. Molecular imaging allows the monitoring of abnormal alterations of c-MET in real time and in vivo.
Results:
In this review, we initially summarize the recent advances in c-MET-targeted molecular imaging, with a special focus on the development of imaging agents ranging in size from monoclonal antibody to small molecule. The aim of this review is to report the preclinical results and clinical application of all molecular imaging studies completed until now for in vivo detection of c-MET in cancer, in order to be beneficial to development of molecular probe and the combination of molecular imaging technologies for in vivo evaluation of c-MET. Various molecular probe targeted to c-MET possesses distinctive advantages and disadvantages. For example, antibody-based probes have high binding affinity but with long metabolic cycle as well as remarkable immunogenicity.
Conclusions:
Although studies for c-MET-targeted molecular imaging have made many important advances, most of imaging agents specifically target to extracellular area of c-MET receptor; however, it is difficult to reflect entirely activation of c-MET. Therefore, small molecule probes based on tyrosine kinase inhibitors, which could target to intracellular area of c-MET without any immunogenicity, should be paid more attention.
Insights
Molecular imaging advances aid in evaluating c-MET status for targeted cancer therapy. Small molecule probes show promise for better assessment of c-MET activation in vivo.
Area of Science:
- Oncology
- Molecular Imaging
- Biochemistry
Background:
- Mesenchymal-epithelial transition factor (c-MET) is a receptor tyrosine kinase crucial in tumorigenesis.
- c-MET targeted therapies show promise in cancer treatment, but response depends on c-MET status.
- Molecular imaging enables real-time, in vivo monitoring of c-MET alterations.
Purpose of the Study:
- To review recent advances in c-MET-targeted molecular imaging agents.
- To report preclinical and clinical applications of molecular imaging for in vivo c-MET detection in cancer.
- To guide the development of molecular probes and imaging technologies for c-MET evaluation.
Main Methods:
- Summarizing recent developments in c-MET-targeted molecular imaging.
- Focusing on imaging agents from monoclonal antibodies to small molecules.
- Analyzing preclinical and clinical results of in vivo c-MET detection studies.
Main Results:
- Various molecular probes targeting c-MET have distinct advantages and disadvantages.
- Antibody-based probes offer high affinity but have long metabolic cycles and immunogenicity.
- Current imaging agents primarily target the extracellular domain of c-MET.
Conclusions:
- Most c-MET imaging agents target the extracellular domain, limiting assessment of receptor activation.
- Small molecule probes targeting the intracellular domain offer advantages like no immunogenicity.
- Small molecule probes based on tyrosine kinase inhibitors warrant further attention for c-MET imaging.
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