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TNF signaling is required for castration-induced vascular damage preceding prostate cancer regression

Authors :
John J. Krolewski
Shalini Singh
Kai Sha
Neha Jaiswal Agrawal
Steven G. Turowski
Chunliu Pan
Laurie J. Rich
Mukund Seshadri
Kent L. Nastiuk
Source :
Cancers; Volume 14; Issue 24; Pages: 6020
Publication Year :
2022
Publisher :
Cold Spring Harbor Laboratory, 2022.

Abstract

The mainstay treatment for locally advanced, recurrent, or metastatic prostate cancer (PrCa) is androgen deprivation therapy (ADT). ADT causes prostate cancers to shrink in volume, or regress, by inducing epithelial tumor cell apoptosis. In normal, non-neoplastic murine prostate, androgen deprivation via castration induces prostate gland regression that is dependent on TNF signaling. Besides this direct mechanism of action, castration has also been implicated in an indirect mechanism of prostate epithelial cell death which has been described as vascular regression. The initiating event is endothelial cell apoptosis and/or increased vascular permeability. This subsequently leads to reduced blood flow and perfusion, and then hypoxia, which may enhance epithelial cell apoptosis. Castration-induced vascular regression has been observed in both normal and neoplastic prostate. We used photoacoustic, power Doppler, and contrast-enhanced ultrasound imaging, and CD31 immunohistochemical staining of the microvasculature to assess vascular integrity in the period immediately following castration, enabling us to test the role of TNF signaling in vascular regression. In two mouse models of androgen-responsive prostate cancer, TNF signaling blockade using a soluble TNFR2 ligand trap reversed the functional aspects of vascular regression as well as structural changes in the microvasculature, including reduced vessel wall thickness, cross-sectional area and vessel perimeter length. These results demonstrate that TNF signaling is required for vascular regression, most likely inducing endothelial cell apoptosis and increasing vessel permeability. Since TNF is also the critical death receptor ligand for prostate epithelial cells, we propose that TNF is a multi-purpose, comprehensive signal within the prostate cancer micro-environment mediating prostate cancer regression following androgen deprivation.SIGNIFICANCEThese studies define TNF as the mediator of androgen deprivation therapy-induced functional and structural vascular damage in prostate tumors.

Details

Database :
OpenAIRE
Journal :
Cancers; Volume 14; Issue 24; Pages: 6020
Accession number :
edsair.doi.dedup.....c4ea070c4463760672e2c68569af4d6b
Full Text :
https://doi.org/10.1101/2022.02.05.479251