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Published on: May 17, 2019
HGF/MET pathway aberrations as diagnostic, prognostic, and predictive biomarkers in human cancers
Fatemeh Moosavi1, Elisa Giovannetti2,3, Luciano Saso4
1Medicinal and Natural Products Chemistry Research Center, Shiraz University of Medical Sciences , Shiraz , Iran.
Abstract:
Cancer is a major cause of death worldwide. MET tyrosine kinase receptor [MET, c-MET, hepatocyte growth factor (HGF) receptor] pathway activation is associated with the appearance of several hallmarks of cancer. The HGF/MET pathway has emerged as an important actionable target across many solid tumors; therefore, biomarker discovery becomes essential in order to guide clinical intervention and patient stratification with the aim of moving towards personalized medicine. The focus of this review is on how the aberrant activation of the HGF/MET pathway in tumor tissue or the circulation can provide diagnostic and prognostic biomarkers and predictive biomarkers of drug response. Many meta-analyses have shown that aberrant activation of the MET pathway in tumor tissue, including MET gene overexpression, gene amplification, exon 14 skipping and other activating mutations, is almost invariably associated with shorter survival and poor prognosis. Most meta-analyses have been performed in non-small cell lung cancer (NSCLC), breast, head and neck cancers as well as colorectal, gastric, pancreatic and other gastrointestinal cancers. Furthermore, several studies have shown the predictive value of MET biomarkers in the identification of patients who gain the most benefit from HGF/MET targeted therapies administered as single or combination therapies. The highest predictive values have been observed for response to foretinib and savolitinib in renal cancer, as well as tivantinib in NSCLC and colorectal cancer. However, some studies, especially those based on MET expression, have failed to show much value in these stratifications. This may be rooted in lack of standardization of methodologies, in particular in scoring systems applied in immunohistochemistry determinations or absence of oncogenic addiction of cancer cells to the MET pathway, despite detection of overexpression. Measurements of amplification and mutation aberrations are less likely to suffer from these pitfalls. Increased levels of MET soluble ectodomain (sMET) in circulation have also been associated with poor prognosis; however, the evidence is not as strong as it is with tissue-based biomarkers. As a diagnostic biomarker, sMET has shown its value in distinguishing cancer patients from healthy individuals in prostate and bladder cancers and in melanoma. On the other hand, increased circulating HGF has also been presented as a valuable prognostic and diagnostic biomarker in many cancers; however, there is controversy on the predictive value of HGF as a biomarker. Other biomarkers such as circulating tumor DNA (ctDNA) and tumor HGF levels have also been briefly covered. In conclusion, HGF/MET aberrations can provide valuable diagnostic, prognostic and predictive biomarkers and represent vital assets for personalized cancer therapy.
Insights
Aberrant activation of the hepatocyte growth factor/MET (HGF/MET) pathway in cancer offers valuable diagnostic, prognostic, and predictive biomarkers. These biomarkers are crucial for guiding personalized cancer therapies and improving patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Biomarker Discovery
Background:
- The hepatocyte growth factor/MET (HGF/MET) pathway is frequently activated in various cancers, contributing to tumor progression.
- Aberrant HGF/MET signaling is linked to multiple cancer hallmarks, making it a significant therapeutic target.
- Personalized medicine necessitates robust biomarkers for patient stratification and treatment selection.
Purpose of the Study:
- To review the role of HGF/MET pathway activation as diagnostic, prognostic, and predictive biomarkers in cancer.
- To explore the utility of both tumor-based and circulating biomarkers for guiding HGF/MET targeted therapies.
- To discuss challenges and future directions in biomarker standardization and application.
Main Methods:
- Literature review and meta-analysis of studies investigating HGF/MET pathway alterations in various solid tumors.
- Analysis of diagnostic, prognostic, and predictive values of MET gene alterations (overexpression, amplification, mutations) and soluble MET (sMET) in tumor tissue and circulation.
- Evaluation of circulating HGF, circulating tumor DNA (ctDNA), and tumor HGF levels as potential biomarkers.
Main Results:
- Tumor tissue MET pathway activation (gene amplification, mutations, exon 14 skipping) is associated with poor prognosis across multiple cancers, notably non-small cell lung cancer (NSCLC).
- MET biomarkers have shown predictive value for targeted therapies like foretinib, savolitinib, and tivantinib, though standardization issues exist for MET expression.
- Increased circulating sMET and HGF levels show potential as diagnostic and prognostic markers, with varying predictive capabilities.
Conclusions:
- Aberrant HGF/MET pathway activation provides crucial diagnostic, prognostic, and predictive biomarkers for personalized cancer therapy.
- Standardization of methodologies, particularly for immunohistochemistry, is essential for reliable biomarker application.
- Further research into circulating biomarkers like sMET and HGF, alongside ctDNA, holds promise for advancing precision oncology.
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