TY - JOUR
T1 - Intracellular Magnetic Hyperthermia Enables Concurrent Down-Regulation of CD47 and SIRPα To Potentiate Antitumor Immunity
AU - Wang, Siyao
AU - Jiao, Wangbo
AU - Yan, Bin
AU - Liu, Xiaofei
AU - Tang, Qianqian
AU - Zhang, Yihan
AU - Liang, Chen
AU - Wang, Xun
AU - Lyu, Yi
AU - Fan, Haiming
AU - Liu, Xiaoli
N1 - Publisher Copyright:
© 2024 American Chemical Society
PY - 2024/3/6
Y1 - 2024/3/6
N2 - Harnessing the potential of tumor-associated macrophages (TAMs) to engulf tumor cells offers promising avenues for cancer therapy. Targeting phagocytosis checkpoints, particularly the CD47-signal regulatory protein α (SIRPα) axis, is crucial for modulating TAM activity. However, single checkpoint inhibition has shown a limited efficacy. In this study, we demonstrate that ferrimagnetic vortex-domain iron oxide (FVIO) nanoring-mediated magnetic hyperthermia effectively suppresses the expression of CD47 protein on Hepa1-6 tumor cells and SIRPα receptor on macrophages, which disrupts CD47-SIRPα interaction. FVIO-mediated magnetic hyperthermia also induces immunogenic cell death and polarizes TAMs toward M1 phenotype. These changes collectively bolster the phagocytic ability of macrophages to eliminate tumor cells. Furthermore, FVIO-mediated magnetic hyperthermia concurrently escalates cytotoxic T lymphocyte levels and diminishes regulatory T cell levels. Our findings reveal that magnetic hyperthermia offers a novel approach for dual down-regulation of CD47 and SIRPα, reshaping the tumor microenvironment to stimulate immune responses, culminating in significant antitumor activity.
AB - Harnessing the potential of tumor-associated macrophages (TAMs) to engulf tumor cells offers promising avenues for cancer therapy. Targeting phagocytosis checkpoints, particularly the CD47-signal regulatory protein α (SIRPα) axis, is crucial for modulating TAM activity. However, single checkpoint inhibition has shown a limited efficacy. In this study, we demonstrate that ferrimagnetic vortex-domain iron oxide (FVIO) nanoring-mediated magnetic hyperthermia effectively suppresses the expression of CD47 protein on Hepa1-6 tumor cells and SIRPα receptor on macrophages, which disrupts CD47-SIRPα interaction. FVIO-mediated magnetic hyperthermia also induces immunogenic cell death and polarizes TAMs toward M1 phenotype. These changes collectively bolster the phagocytic ability of macrophages to eliminate tumor cells. Furthermore, FVIO-mediated magnetic hyperthermia concurrently escalates cytotoxic T lymphocyte levels and diminishes regulatory T cell levels. Our findings reveal that magnetic hyperthermia offers a novel approach for dual down-regulation of CD47 and SIRPα, reshaping the tumor microenvironment to stimulate immune responses, culminating in significant antitumor activity.
KW - CD47−SIRPα axis inhibition
KW - Magnetic hyperthermia
KW - enhanced macrophage phagocytosis
KW - ferrimagnetic vortex-domain iron oxide nanoring
KW - hepatocellular carcinoma immunotherapy
UR - https://www.scopus.com/pages/publications/85187201078
U2 - 10.1021/acs.nanolett.4c00003
DO - 10.1021/acs.nanolett.4c00003
M3 - 文章
C2 - 38407042
AN - SCOPUS:85187201078
SN - 1530-6984
VL - 24
SP - 2894
EP - 2903
JO - Nano Letters
JF - Nano Letters
IS - 9
ER -