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Published on: September 27, 2024
Hepatocyte growth factor inhibition: a novel therapeutic approach in pancreatic cancer
Srinivasa P Pothula1,2, Zhihong Xu1,2, David Goldstein3
1Pancreatic Research Group, South Western Sydney Clinical School, Faculty of Medicine, University of New South Wales, Sydney, New South Wales, Australia.
Background:
Pancreatic stellate cells (PSCs, which produce the stroma of pancreatic cancer (PC)) interact with cancer cells to facilitate PC growth. A candidate growth factor pathway that may mediate this interaction is the HGF-c-MET pathway.
Methods:
Effects of HGF inhibition (using a neutralising antibody AMG102) alone or in combination with gemcitabine were assessed (i) in vivo using an orthotopic model of PC, and (ii) in vitro using cultured PC cells (AsPC-1) and human PSCs.
Results:
We have shown that human PSCs (hPSCs) secrete HGF but do not express the receptor c-MET, which is present predominantly on cancer cells. HGF inhibition was as effective as standard chemotherapy in inhibiting local tumour growth but was significantly more effective than gemcitabine in reducing tumour angiogenesis and metastasis. HGF inhibition has resulted in reduced metastasis; however, interestingly this antimetastatic effect was lost when combined with gemcitabine. This suggests that gemcitabine treatment selects out a subpopulation of cancer cells with increased epithelial-mesenchymal transition (EMT) and stem-cell characteristics, as supported by our findings of increased expression of EMT and stem-cell markers in tumour sections from our animal model. In vitro studies showed that hPSC secretions induced proliferation and migration, but inhibited apoptosis, of cancer cells. These effects were countered by pretreatment of hPSC secretions with a HGF-neutralising antibody but not by gemcitabine, indicating a key role for HGF in PSC-PC interactions.
Conclusions:
Our studies suggest that targeted therapy to inhibit stromal-tumour interactions mediated by the HGF-c-MET pathway may represent a novel therapeutic approach in PC that will require careful modelling for optimal integration with existing treatment modalities.
Insights
Targeting the HGF-c-MET pathway in pancreatic cancer (PC) inhibits tumor growth and metastasis. Inhibiting HGF disrupts cancer cell interactions with pancreatic stellate cells (PSCs), offering a novel therapeutic strategy.
Area of Science:
- Oncology
- Cancer Biology
- Drug Discovery
Background:
- Pancreatic stellate cells (PSCs) contribute to pancreatic cancer (PC) growth by interacting with cancer cells.
- The hepatocyte growth factor (HGF)-c-MET pathway is a potential mediator of this stromal-tumor interaction.
Purpose of the Study:
- To investigate the role of the HGF-c-MET pathway in pancreatic cancer progression.
- To evaluate the efficacy of HGF inhibition in combination with gemcitabine for pancreatic cancer treatment.
Main Methods:
- In vivo assessment using an orthotopic pancreatic cancer model.
- In vitro studies with cultured pancreatic cancer cells and human PSCs.
- Evaluation of HGF inhibition using a neutralizing antibody (AMG102) alone and with gemcitabine.
Main Results:
- Human PSCs secrete HGF, while c-MET is primarily expressed on cancer cells.
- HGF inhibition effectively reduced tumor growth, angiogenesis, and metastasis, outperforming gemcitabine.
- Gemcitabine combination therapy diminished the anti-metastatic effect of HGF inhibition, potentially by selecting for cancer cells with stem-cell and epithelial-mesenchymal transition (EMT) characteristics.
Conclusions:
- Targeting stromal-tumor interactions via the HGF-c-MET pathway presents a novel therapeutic strategy for pancreatic cancer.
- Careful modeling is necessary for optimal integration of HGF-c-MET pathway inhibition with existing treatments.
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