bioRxiv · 10.1101/272542
HDGF supports anti-apoptosis and pro-fibrosis in pancreatic stellate cells of pancreatic cancer
Abstract
Pancreatic cancer is refractory and characterized by extensively surrounding- and intra-tumor fibrotic reactions that are contributed by activated pancreatic stellate cells (PSCs). Activation of PSCs plays a pivotal role for developing fibrotic reactions to affect themselves or pancreatic cancer cells (PCCs). In the current study, we demonstrated that hepatoma-derived growth factor (HDGF) was secreted from transforming growth factor-{beta}1 (TGF-{beta}1)-treated PSCs. We found that HDGF contributed to anti-apoptosis of PSCs and led to synthesis and depositions of extracellular matrix proteins for stabilizing PSCs/PCCs tumor foci. CCAAT/enhancer binding protein {delta} (CEBPD) responds to TGF-{beta}1 through a reciprocal loop regulation and further activated hypoxia inducible factor-1 (HIF-1) contributed to up-regulation of HDGF gene. It agrees with the observation that severe stromal growth positively correlated with stromal HDGF and CEBPD in pancreatic cancer specimens. Collectively, the identification of TGF-{beta}1-activated CEBPD/HIF-1/HDGF axis provides new insights for the novel discoveries of HDGF in anti-apoptosis and pro-fibrosis of PSCs and outgrowth of pancreatic cancer cells.
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Chen, Y.-T., Li, C.-F., Wang, T.-W., Chang, T.-H., Hsu, T.-P., Chi, J.-Y., Hsiao, Y.-W., Wang, J.-M.. 2018-02-27. HDGF supports anti-apoptosis and pro-fibrosis in pancreatic stellate cells of pancreatic cancer. https://doi.org/10.1101/272542
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