Nanodrug Augmenting Antitumor Immunity for Enhanced TNBC Therapy via Pyroptosis and cGAS-STING Activation.
Huihai ZhongGengjia ChenTan LiJinsheng HuangMinzhao LinBo LiZe-Cong XiaoXin-Tao ShuaiPublished in: Nano letters (2023)
Pyroptosis is a proinflammatory form of programmed cell death that results in the release of cellular contents and activation of immune responses. However, GSDME (a pyroptosis-executed protein) is suppressed in many cancers. Herein, we constructed a nanoliposome (GM@LR) for codelivering the GSDME-expressing plasmid and manganese carbonyl (MnCO) into TNBC cells. MnCO generated Mn 2+ and carbon monoxide (CO) in the presence of H 2 O 2 . The CO-activated caspase-3, which cleaved the expressed GSDME, converting apoptosis to pyroptosis in 4T1 cells. In addition, Mn 2+ promoted maturation of dendritic cells (DCs) by the activation of STING signaling pathway. The increased proportion of intratumoral mature DCs brought about massive infiltration of cytotoxic lymphocytes, leading to a robust immune response. Besides, Mn 2+ could be applied for magnetic resonance imaging (MRI)-guided metastasis detection. Taken together, our study showed that GM@LR nanodrug could effectively inhibit tumor growth via pyroptosis and STING activation combined immunotherapy.
Keyphrases
- immune response
- dendritic cells
- nlrp inflammasome
- magnetic resonance imaging
- induced apoptosis
- signaling pathway
- cell cycle arrest
- cell death
- endoplasmic reticulum stress
- contrast enhanced
- escherichia coli
- computed tomography
- regulatory t cells
- stem cells
- wastewater treatment
- pi k akt
- toll like receptor
- epithelial mesenchymal transition
- metal organic framework
- amino acid
- diffusion weighted imaging
- cell proliferation
- young adults
- inflammatory response
- ionic liquid
- anti inflammatory
- bone marrow