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c-MET pathway in human malignancies and its targeting by natural compounds for cancer therapy
Chakrabhavi Dhananjaya Mohan1, Muthu K Shanmugam2, Siddegowda Gopalapura Shivanne Gowda3
1FEST Division, CSIR-Indian Institute of Toxicology Research, Vishvigyan Bhawan, 31, Mahatma Gandhi Marg, Lucknow, Uttar Pradesh 226 001, India.
Background:
c-MET is a receptor tyrosine kinase which is classically activated by HGF to activate its downstream signaling cascades such as MAPK, PI3K/Akt/mTOR, and STAT3. The c-MET modulates cell proliferation, epithelial-mesenchymal transition (EMT), immune response, morphogenesis, apoptosis, and angiogenesis. The c-MET has been shown to serve a prominent role in embryogenesis and early development. The c-MET pathway is deregulated in a broad range of malignancies, due to overexpression of ligands or receptors, genomic amplification, and MET mutations. The link between the deregulation of c-MET signaling and tumor progression has been well-documented. Overexpression or overactivation of c-MET is associated with dismal clinical outcomes and acquired resistance to targeted therapies. Since c-MET activation results in the triggering of oncogenic pathways, abrogating the c-MET pathway is considered to be a pivotal strategy in cancer therapeutics. Herein, an analysis of role of the c-MET pathway in human cancers and its relevance in bone metastasis and therapeutic resistance has been undertaken. Also, an attempt has been made to summarize the inhibitory activity of selected natural compounds towards c-MET signaling in cancers.
Methods:
The publications related to c-MET pathway in malignancies and its natural compound modulators were obtained from databases such as PubMed, Scopus, and Google Scholar and summarized based on PRISMA guidelines. Some of the keywords used for extracting relevant literature are c-MET, natural compound inhibitors of c-MET, c-MET in liver cancer, c-MET in breast cancer, c-MET in lung cancer, c-MET in pancreatic cancer, c-MET in head and neck cancer, c-MET in bone metastasis, c-MET in therapeutic resistance, and combination of c-MET inhibitors and chemotherapeutic agents. The chemical structure of natural compounds was verified in PubChem database.
Results:
The search yielded 3935 publications, of which 195 reference publications were used for our analysis. Clinical trials were referenced using ClinicalTrials.gov identifier. The c-MET pathway has been recognized as a prominent target to combat the growth, metastasis, and chemotherapeutic resistance in cancers. The key role of the c-MET in bone metastasis as well as therapeutic resistance has been elaborated. Also, suppressive effect of selected natural compounds on the c-MET pathway in clinical/preclinical studies has been discussed.
Insights
The c-MET pathway drives cancer growth and resistance. Natural compounds show promise in inhibiting c-MET signaling, offering new therapeutic strategies for various cancers, including bone metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The c-MET pathway, activated by HGF, regulates critical cellular processes like proliferation, angiogenesis, and EMT.
- Deregulation of c-MET signaling, through overexpression or mutations, is implicated in numerous cancers, correlating with poor outcomes and therapeutic resistance.
- Targeting the c-MET pathway is a key strategy in cancer therapy due to its role in oncogenesis.
Purpose of the Study:
- To analyze the role of the c-MET pathway in human cancers.
- To investigate the involvement of c-MET in bone metastasis and therapeutic resistance.
- To summarize the inhibitory effects of natural compounds on c-MET signaling in cancer.
Main Methods:
- Literature search conducted on PubMed, Scopus, and Google Scholar using keywords like 'c-MET', 'natural compound inhibitors', and specific cancer types.
- Publications were summarized following PRISMA guidelines.
- Chemical structures of natural compounds were verified using the PubChem database.
Main Results:
- Analysis of 195 selected publications from an initial search of 3935.
- The c-MET pathway is a significant target for inhibiting cancer growth, metastasis, and chemoresistance.
- Selected natural compounds demonstrated suppressive effects on c-MET signaling in preclinical and clinical studies.
Conclusions:
- The c-MET pathway is a critical target in oncology, particularly for overcoming bone metastasis and therapeutic resistance.
- Natural compounds represent a promising avenue for developing novel c-MET inhibitors.
- Further research into c-MET targeted therapies, including natural compounds, is warranted for improved cancer treatment.
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