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Fatty acid transport protein inhibition sensitizes breast and ovarian cancers to oncolytic virus therapy via lipid modulation of the tumor microenvironment

Authors :
Abera Surendran
Monire Jamalkhah
Joanna Poutou
Rayanna Birtch
Christine Lawson
Jaahnavi Dave
Mathieu J. F. Crupi
Justin Mayer
Victoria Taylor
Julia Petryk
Christiano Tanese de Souza
Neil Moodie
Jacob Lecompte Billingsley
Bradley Austin
Nicole Cormack
Natalie Blamey
Reza Rezaei
Curtis W. McCloskey
Emily E. F. Fekete
Harsimrat K. Birdi
Serge Neault
Taylor R. Jamieson
Brenna Wylie
Sarah Tucker
Taha Azad
Barbara Vanderhyden
Lee-Hwa Tai
John C. Bell
Carolina S. Ilkow
Source :
Frontiers in Immunology, Vol 14 (2023)
Publication Year :
2023
Publisher :
Frontiers Media S.A., 2023.

Abstract

IntroductionAdipocytes in the tumour microenvironment are highly dynamic cells that have an established role in tumour progression, but their impact on anti-cancer therapy resistance is becoming increasingly difficult to overlook.MethodsWe investigated the role of adipose tissue and adipocytes in response to oncolytic virus (OV) therapy in adipose-rich tumours such as breast and ovarian neoplasms.ResultsWe show that secreted products in adipocyte-conditioned medium significantly impairs productive virus infection and OV-driven cell death. This effect was not due to the direct neutralization of virions or inhibition of OV entry into host cells. Instead, further investigation of adipocyte secreted factors demonstrated that adipocyte-mediated OV resistance is primarily a lipid-driven phenomenon. When lipid moieties are depleted from the adipocyte-conditioned medium, cancer cells are re-sensitized to OV-mediated destruction. We further demonstrated that blocking fatty acid uptake by cancer cells, in a combinatorial strategy with virotherapy, has clinical translational potential to overcome adipocyte-mediated OV resistance.DiscussionOur findings indicate that while adipocyte secreted factors can impede OV infection, the impairment of OV treatment efficacy can be overcome by modulating lipid flux in the tumour milieu.

Details

Language :
English
ISSN :
16643224
Volume :
14
Database :
Directory of Open Access Journals
Journal :
Frontiers in Immunology
Publication Type :
Academic Journal
Accession number :
edsdoj.6f4b17f759de414f8da10ac2aa3a216f
Document Type :
article
Full Text :
https://doi.org/10.3389/fimmu.2023.1099459