The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice
There is an increasing focus on the tumor microenvironment in carcinogenesis. Integrins are important receptors and adhesion molecules in this environment and have been shown to be involved in cell adhesion, proliferation, differentiation and migration. The present study aimed to evaluate the effect...
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doaj-8fa03aee4804482cb0db5a4b62a4b4d52020-11-24T23:48:30ZengMDPI AGCancers2072-66942016-01-01811410.3390/cancers8010014cancers8010014The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in MiceInga Reigstad0Kristina Sortland1Trude Skogstrand2Rolf K. Reed3Linda Stuhr4Department of Biomedicine, University of Bergen, Jonas Lies vei 91, N-5009 Bergen, NorwayDepartment of Biomedicine, University of Bergen, Jonas Lies vei 91, N-5009 Bergen, NorwayDepartment of Biomedicine, University of Bergen, Jonas Lies vei 91, N-5009 Bergen, NorwayDepartment of Biomedicine, University of Bergen, Jonas Lies vei 91, N-5009 Bergen, NorwayDepartment of Biomedicine, University of Bergen, Jonas Lies vei 91, N-5009 Bergen, NorwayThere is an increasing focus on the tumor microenvironment in carcinogenesis. Integrins are important receptors and adhesion molecules in this environment and have been shown to be involved in cell adhesion, proliferation, differentiation and migration. The present study aimed to evaluate the effect of stromal integrin β3-deficiency on tumor growth, angiogenesis, interstitial fluid pressure (PIF), fibrosis and metastasis in a murine breast cancer (4T1) and a prostate tumor (RM11) model. We showed that stromal integrin β3-deficiency led to an elevation in PIF that correlated to a shift towards thicker collagen fibrils in the 4T1 mammary tumor. In the RM11 prostate carcinoma model there was no effect of integrin β3-deficiency on PIF and collagen fibril thickness. These findings support the notion that changes in the collagen scaffold influence PIF, and also indicate that there must be important crosstalk between the stroma and tumor cells, in a tumor cell line specific manner. Furthermore, stromal integrin β3-deficiency had no effect on tumor growth or angiogenesis in both tumor models and no effect on lung metastasis in the 4T1 mammary tumor model. In conclusion, the stromal β3 integrin influence PIF, possibly via its effect on the structure of the collagen network, in a tumor cell line dependent manner.http://www.mdpi.com/2072-6694/8/1/14angiogenesisfibrosisinterstitial fluid pressuremetastasistumor growth |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Inga Reigstad Kristina Sortland Trude Skogstrand Rolf K. Reed Linda Stuhr |
spellingShingle |
Inga Reigstad Kristina Sortland Trude Skogstrand Rolf K. Reed Linda Stuhr The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice Cancers angiogenesis fibrosis interstitial fluid pressure metastasis tumor growth |
author_facet |
Inga Reigstad Kristina Sortland Trude Skogstrand Rolf K. Reed Linda Stuhr |
author_sort |
Inga Reigstad |
title |
The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice |
title_short |
The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice |
title_full |
The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice |
title_fullStr |
The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice |
title_full_unstemmed |
The Effect of Stromal Integrin β3-Deficiency on Two Different Tumors in Mice |
title_sort |
effect of stromal integrin β3-deficiency on two different tumors in mice |
publisher |
MDPI AG |
series |
Cancers |
issn |
2072-6694 |
publishDate |
2016-01-01 |
description |
There is an increasing focus on the tumor microenvironment in carcinogenesis. Integrins are important receptors and adhesion molecules in this environment and have been shown to be involved in cell adhesion, proliferation, differentiation and migration. The present study aimed to evaluate the effect of stromal integrin β3-deficiency on tumor growth, angiogenesis, interstitial fluid pressure (PIF), fibrosis and metastasis in a murine breast cancer (4T1) and a prostate tumor (RM11) model. We showed that stromal integrin β3-deficiency led to an elevation in PIF that correlated to a shift towards thicker collagen fibrils in the 4T1 mammary tumor. In the RM11 prostate carcinoma model there was no effect of integrin β3-deficiency on PIF and collagen fibril thickness. These findings support the notion that changes in the collagen scaffold influence PIF, and also indicate that there must be important crosstalk between the stroma and tumor cells, in a tumor cell line specific manner. Furthermore, stromal integrin β3-deficiency had no effect on tumor growth or angiogenesis in both tumor models and no effect on lung metastasis in the 4T1 mammary tumor model. In conclusion, the stromal β3 integrin influence PIF, possibly via its effect on the structure of the collagen network, in a tumor cell line dependent manner. |
topic |
angiogenesis fibrosis interstitial fluid pressure metastasis tumor growth |
url |
http://www.mdpi.com/2072-6694/8/1/14 |
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