Elastin is a key factor of tumor development in colorectal cancer

Elastin is a key factor of tumor development in colorectal cancer.

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Item Type: Article
Status: Published
Official URL: https://doi.org/10.1186/s12885-020-6686-x
Journal or Publication Title: BMC Cancer
Volume: 20
Number: 1
Date: 2020
Divisions: UTS Centre for Inflammation
Depositing User: General Admin
Identification Number: 10.1186/s12885-020-6686-x
ISSN: 1471-2407
Date Deposited: 04 Jan 2021 00:45
Abstract:

Background
Colorectal cancer (CRC) is the most common cancer and a leading cause of death worldwide. Extracellular matrix (ECM) proteins regulate tumor growth and development in CRC. Elastin (ELN) is a component of ECM proteins involved in the tumor microenvironment. However, the role of ELN in CRC remains unclear.

Methods
In this study, we analyzed ELN gene expression in tumors from CRC patients and adjacent non-tumor colon tissues and healthy controls from two existing microarray datasets. ELN protein was measured in human normal colon cells and colon cancer epithelial cells and tumor development was assessed in colon epithelial cells cultured in medium with or without ELN peptide on plates coated with ELN recombinant protein. Control plates were coated with PBS only.

Results
We found ELN gene expression was increased in tumors from CRC patients compared to adjacent non-tumor tissues and healthy controls. ELN protein was increased in cancer cells compared to normal colon epithelial cells. Transforming growth factor beta (TGF-β) was a key cytokine to induce production of ECM proteins, but it did not induce ELN expression in colon cancer cells. Matrix metalloproteinase 9 (MMP9) gene expression was increased, but that of MMP12 (elastase) did not change between CRC patients and control. Tissue inhibitor of metalloproteinases 3 (TIMP3) gene expression was decreased in colon tissues from CRC patients compared to healthy controls. However, MMP9, MMP12 and TIMP3 proteins were increased in colon cancer cells. ELN recombinant protein increased proliferation and wound healing in colon cancer epithelial cells. This had further increased in cancer cells incubated in plates coated with recombinant ELN coated plate and in culture media containing ELN peptide. A potential mechanism was that ELN induced epithelial mesenchymal transition with increased alpha-smooth muscle actin and vimentin proteins but decreased E-cadherin protein. Tumor necrosis factor alpha (TNF) mRNA was also increased in CRC patients compared to controls. ELN recombinant protein induced further increases in TNF protein in mouse bone marrow derived macrophages after lipopolysaccharide stimulation.

Conclusions
These data suggest ELN regulates tumor development and the microenvironment in CRC.

Creators:
Creators
Email
Li, Jinzhi
UNSPECIFIED
Xu, Xiaoyue
UNSPECIFIED
Jiang, Yanyan
UNSPECIFIED
Hansbro, Nicole G.
UNSPECIFIED
Hansbro, Philip M.
UNSPECIFIED
Xu, Jincheng
UNSPECIFIED
Liu, Gang
UNSPECIFIED
Last Modified: 04 Jan 2021 00:45
URI: https://eprints.centenary.org.au/id/eprint/802

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