TY - JOUR
T1 - T lymphocyte-derived IFN-γ facilitates breast cancer cells to pass the blood-brain barrier
T2 - An in vitro study corroborating translational data
AU - Pedrosa, Rute M.S.M.
AU - Kros, Johan M.
AU - Schrijver, Benjamin
AU - Berrevoets, Cor
AU - Marques, Rute B.
AU - van Eijck, Casper C.H.J.
AU - Debets, Reno
AU - Leenen, Pieter J.M.
AU - Dik, Willem A.
AU - Mustafa, Dana A.M.
N1 - Publisher Copyright: © 2024 The Authors
PY - 2024/8/30
Y1 - 2024/8/30
N2 - The appearance of brain metastasis is the most serious complication of breast cancer with mostly fatal outcomes. To reach the brain, tumor cells need to pass the blood-brain barrier (BBB). The molecular mechanisms underlying penetration of the BBB are largely unknown. Previously we found that tumor-infiltrating T lymphocytes enhance the development of brain metastasis of estrogen receptor-negative (ER-) breast cancer. In the current study, we investigate the contribution of T lymphocytes and the IFN-γ pathway in enabling breast cancer cells to pass the in vitro BBB. CD8+ cells display the strongest stimulatory effect on breast cancer cell passage. We show that inhibition of the IFN-γ receptor in MDA-MB-231 breast cancer cells, or neutralization of soluble IFN-γ, impairs the in vitro trespassing of breast cancer cells. Importantly, we validated our findings using gene expression data of breast cancer patients. The CXCL-9,-10,-11/CXCR3 axis, dependent on IFN-γ signaling activity, was overexpressed in primary breast cancer samples of patients who developed brain metastasis. The data support a role for T-lymphocytes and the IFN-γ pathway in the formation of brain metastasis of ER-breast cancer, and offer targets to design future therapies for preventing breast cancer cells to cross the BBB.
AB - The appearance of brain metastasis is the most serious complication of breast cancer with mostly fatal outcomes. To reach the brain, tumor cells need to pass the blood-brain barrier (BBB). The molecular mechanisms underlying penetration of the BBB are largely unknown. Previously we found that tumor-infiltrating T lymphocytes enhance the development of brain metastasis of estrogen receptor-negative (ER-) breast cancer. In the current study, we investigate the contribution of T lymphocytes and the IFN-γ pathway in enabling breast cancer cells to pass the in vitro BBB. CD8+ cells display the strongest stimulatory effect on breast cancer cell passage. We show that inhibition of the IFN-γ receptor in MDA-MB-231 breast cancer cells, or neutralization of soluble IFN-γ, impairs the in vitro trespassing of breast cancer cells. Importantly, we validated our findings using gene expression data of breast cancer patients. The CXCL-9,-10,-11/CXCR3 axis, dependent on IFN-γ signaling activity, was overexpressed in primary breast cancer samples of patients who developed brain metastasis. The data support a role for T-lymphocytes and the IFN-γ pathway in the formation of brain metastasis of ER-breast cancer, and offer targets to design future therapies for preventing breast cancer cells to cross the BBB.
UR - https://www.scopus.com/pages/publications/85201589928
U2 - 10.1016/j.heliyon.2024.e36598
DO - 10.1016/j.heliyon.2024.e36598
M3 - Article
C2 - 39262976
AN - SCOPUS:85201589928
SN - 2405-8440
VL - 10
JO - Heliyon
JF - Heliyon
IS - 16
M1 - e36598
ER -