Triggering Pyroptosis
by Doxorubicin-Loaded Multifunctional
Nanoparticles in Combination with Decitabine for Breast Cancer Chemoimmunotherapy
Posted on 2024-10-16 - 21:18
Pyroptosis, a form of programmed cell death, holds great
promise
for breast cancer treatment. However, the downregulation of gasdermin
E (GSDME) limits the effectiveness of pyroptosis. To address this
challenge, we developed a folic acid-modified and glutathione/reactive
oxygen species dual-responsive nanocarrier (FPSD NPs) for the targeted
delivery of doxorubicin (DOX). Through the combination with DNA methyltransferase
inhibitor decitabine (DAC), the GSDME protein expression was significantly
increased in 4T1 cells, resulting in cell swelling and ballooning,
which are characteristic features of pyroptosis. In vivo experiments
further demonstrated the antitumor efficacy of DAC + DOX@FPSD NPs,
and the 4T1-bearing mice treated with DAC + DOX@FPSD NPs exhibited
reduced tumor volumes, minimized tumor weights, decreased Ki67-positive
cells, increased TUNEL apoptosis ratios, and pronounced lesions in
H&E staining. Furthermore, DAC + DOX@FPSD NP treatment could promote
pyroptosis-associated antitumor immunity, as evidenced by the increased
presence of CD3+, CD4+, and CD8+ T
cells, heightened secretion of tumor necrosis factor-α and interferon-γ,
elevated high-mobility group box-1 levels, and enhanced calreticulin
exposure. The FPSD nanocarrier developed in this study had favorable
stability, active targeting ability, biocompatibility, and controlled
release properties, and the DAC + DOX@FPSD NPs represented an approach
to antitumor therapy by inducing pyroptosis, which offers a promising
avenue for breast cancer treatment.
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Hou, Xueyan; Xu, Jingjing; Wang, Yuxin; Zhao, Jingya; Guan, Yalin; Yang, Xue; et al. (2024). Triggering Pyroptosis
by Doxorubicin-Loaded Multifunctional
Nanoparticles in Combination with Decitabine for Breast Cancer Chemoimmunotherapy. ACS Publications. Collection. https://doi.org/10.1021/acsami.4c14034