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Published on: October 27, 2020
Antitumor activity of TGF-beta inhibitor is dependent on the microenvironment
Satyanarayana Medicherla1, Lingyun Li, Jing Ying Ma
1Scios Inc., Fremont, CA 94555, USA. satya.medicherla@spcorp.com
Abstract:
Pancreatic cancer is one of the deadliest forms of cancer and effective treatment remains a clinical challenge. Transforming growth factor-beta (TGF-beta) has important roles in primary tumor progression and in promoting metastasis, and has become an attractive target for therapy. Previously, we reported that treatment of pancreatic cancer cells in vitro with SD-208, a small molecule inhibitor of the TGF-beta receptor I kinase (TGF-betaRI), inhibited expression of genes associated with tumor progression and inhibited invasiveness in a cell-based assay. In a demonstration of efficacy of TGF-beta signaling inhibition in an in vivo model of pancreatic cancer, we showed significantly reduced primary tumor weight and decreased incidence of metastasis in the Panc-1 orthotopic xenograft model of established pancreatic cancer. In this report, we extend these in vivo findings to examine the mechanistic consequences of TGF-betaRI inhibition on Panc-1 primary tumors and their microenvironment in situ. In a longitudinal study of TGF-betaRI inhibition in the Panc-1 orthotopic model, we show that SD-208 treatment significantly reduced tumor growth measured as bioluminescence intensity throughout the study. Histological evaluation revealed that SD-208 treatment reduced proliferation and induced apoptosis in the primary tumors, and reduced fibrosis in the tumor microenvironment. An immune contribution (greater B-cell infiltration in SD-208-treated tumors) was also suggested by the histological analyses. SD-208 not only blocked direct TGF-beta signaling in Panc-1 primary tumors (reduced phospho SMAD2/3), but also down-regulated the expression of TGF-beta-regulated genes (PAI-1 and COL7A1). Taken together, our results indicate that a TGF-betaRI kinase inhibitor has a potential therapeutic benefit for pancreatic cancer patients.
Insights
A TGF-beta receptor I kinase inhibitor, SD-208, effectively reduced pancreatic cancer growth and metastasis in preclinical models. The drug also decreased tumor proliferation, increased apoptosis, and altered the tumor microenvironment, showing therapeutic potential.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Pancreatic cancer is a highly lethal malignancy with limited effective treatments.
- Transforming growth factor-beta (TGF-beta) signaling is implicated in pancreatic cancer progression and metastasis.
- Targeting TGF-beta signaling pathways presents a promising therapeutic strategy.
Purpose of the Study:
- To investigate the in vivo mechanistic effects of SD-208, a TGF-beta receptor I kinase (TGF-betaRI) inhibitor, on pancreatic cancer.
- To evaluate the impact of SD-208 on primary tumor growth, metastasis, and the tumor microenvironment in an orthotopic xenograft model.
Main Methods:
- Utilized the Panc-1 orthotopic xenograft model of pancreatic cancer in vivo.
- Administered SD-208 and monitored tumor growth longitudinally via bioluminescence.
- Performed histological analyses to assess proliferation, apoptosis, fibrosis, and immune cell infiltration.
- Measured key TGF-beta signaling markers (phospho SMAD2/3) and downstream genes (PAI-1, COL7A1).
Main Results:
- SD-208 treatment significantly reduced tumor growth and metastasis in the orthotopic model.
- Histological analysis showed decreased tumor cell proliferation, increased apoptosis, and reduced fibrosis.
- SD-208 inhibited TGF-betaRI signaling, evidenced by reduced phospho SMAD2/3 levels and downregulation of PAI-1 and COL7A1.
- Evidence of increased B-cell infiltration suggests an immune component to SD-208's efficacy.
Conclusions:
- Inhibition of TGF-betaRI kinase with SD-208 demonstrates significant anti-tumor effects in preclinical pancreatic cancer models.
- SD-208 impacts tumor growth, survival, and the tumor microenvironment, including fibrosis and immune infiltration.
- These findings support the potential therapeutic benefit of TGF-betaRI kinase inhibitors for pancreatic cancer treatment.
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