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In Vitro Modeling of Cancerous Neural Invasion: The Dorsal Root Ganglion Model
Published on: April 12, 2016
Netrin-1 promotes pancreatic tumorigenesis and innervation through NEO1
Yosuke Ochiai1,2, Hiroki Kobayashi1, Masaki Sunagawa1,2
1Division of Digestive and Liver Diseases and Herbert Irving Comprehensive Cancer Center, Columbia University Medical Center, New York, NY 10032, USA.
Abstract:
Nerves have been shown to regulate cancer progression. However, a clear demonstration of a role for axon guidance molecules in pancreatic tumorigenesis, innervation, and metastasis has been lacking. Using murine KrasG12D -mutant pancreatic organoids, we screened axon guidance molecules by qRT-PCR, identified Ntn1 upregulation, and then verified its in vivo upregulation during pancreatic tumorigenesis in humans and mice. NTN1 and its receptor NEO1 were upregulated in epithelial cells by the Kras mutation and β-adrenergic signaling, in part, through the MAPK pathway. Ex-vivo culture of celiac ganglia showed that NTN1 promoted the axonogenesis of sympathetic neurons through the nerve NEO1 receptor. In the Pdx1-Cre;LSL-KrasG12D/+ model, Ntn1 knockout decreased sympathetic innervation and the development of pancreatic intraepithelial neoplasia. Treatment of pancreatic tumor organoids with recombinant NTN1 enhanced cell growth, epithelial-mesenchymal transition (EMT), and cancer stemness with the upregulation of ZEB1 and SOX9 through NEO1-mediated activation of focal adhesion kinase (FAK). In Pdx1-Cre;LSL-KrasG12D/+;LSL-Trp53R172H/+ mice, Ntn1 knockout reduced innervation, FAK phosphorylation, and the features of EMT and stemness to extend mouse survival. In a liver metastasis model of PDAC (pancreatic ductal adenocarcinoma), treatment with a NTN1-neutralizing antibody or tumoral knockdown of Neo1 reduced ZEB1 and SOX9 and decreased tumor progression. In contrast, Ntn1 overexpression promoted innervation and the progression of PDAC liver metastasis. These data suggest that the NTN1/NEO1 axis is a key regulator of PDAC progression, directly influencing cancer cell stemness and EMT, while indirectly promoting tumor growth through nerves. Inhibiting the NTN1/NEO1 axis could represent a potential therapeutic approach for PDAC.
Insights
The NTN1/NEO1 axis drives pancreatic cancer progression by promoting nerve growth, cell stemness, and metastasis. Inhibiting this axis offers a potential therapeutic strategy for pancreatic ductal adenocarcinoma (PDAC).
Area of Science:
- Oncology
- Neuroscience
- Molecular Biology
Background:
- Nerve regulation of cancer progression is known, but the role of axon guidance molecules in pancreatic cancer is unclear.
- Pancreatic ductal adenocarcinoma (PDAC) is a deadly cancer with complex progression mechanisms.
- Understanding molecular drivers of PDAC tumorigenesis, innervation, and metastasis is crucial for therapeutic development.
Purpose of the Study:
- To investigate the role of axon guidance molecules, specifically Netrin-1 (NTN1), in pancreatic cancer.
- To elucidate the mechanisms by which NTN1 influences pancreatic tumorigenesis, innervation, and metastasis.
- To evaluate the therapeutic potential of targeting the NTN1/NEO1 axis in PDAC.
Main Methods:
- Screening of axon guidance molecules using qRT-PCR in murine Kras-mutant pancreatic organoids.
- In vivo validation of NTN1 upregulation in human and mouse pancreatic tumors.
- Ex vivo studies of sympathetic neuron axonogenesis and organoid/mouse models of PDAC progression and metastasis.
- Genetic manipulation (knockout/overexpression) and antibody-based inhibition of the NTN1/NEO1 axis.
Main Results:
- NTN1 and its receptor NEO1 are upregulated in PDAC, driven by Kras mutation and beta-adrenergic signaling via MAPK.
- NTN1 promotes sympathetic nerve axonogenesis and PDAC progression, enhancing cell growth, epithelial-mesenchymal transition (EMT), and cancer stemness.
- Inhibition of NTN1/NEO1 axis reduced innervation, EMT, stemness markers (ZEB1, SOX9), and liver metastasis, extending survival in mouse models.
Conclusions:
- The NTN1/NEO1 axis is a critical regulator of PDAC progression, impacting both cancer cells and tumor innervation.
- NTN1 directly promotes cancer stemness and EMT, and indirectly fuels tumor growth via nerve stimulation.
- Targeting the NTN1/NEO1 axis represents a promising therapeutic strategy for pancreatic ductal adenocarcinoma.
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