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ROS-NRF2 axis coordinates concentration-graded differentiation-to-PANoptosis switching in a phthalide combination
Min Luo1, Miao Xia1, Zhigang Chen1
1College of Pharmaceutical Sciences & College of Chinese Medicine, Southwest University, Chongqing 400715, China.
Background:
In the context of multimodal therapeutic strategies for acute myeloid leukemia (AML), the coordinated regulation of cell death and differentiation pathways has emerged as a groundbreaking research direction.
Purpose:
the study aims to investigates the synergistic anti-AML mechanisms of two phthalide derivatives from Chuanxiong Rhizoma, Z-Ligustilide (Z-LIG, a potent pro-apoptotic agent) and Senkyunolide A (Sen-A, a differentiation inducer).
Methods:
The anticancer activity of Z-LIG and Sen-A, and their synergistic effects, were evaluated using the SRB assay. The cells underwent differentiation and PANoptosis (the forms of cell death with apoptosis, pyroptosis and necroptosis at same time), as evidenced by alterations in cell morphology observed through flow cytometry and transmission electron microscopy (TEM). The upregulation of NRF2 in both differentiation and PANoptosis was confirmed through the use of inhibitors (ML385, Dicoumarol), and the examination of ROS levels in differentiation and PANoptosis through flow cytometry. Finally, the findings were validated in an AML-NOD/SCID mouse model.
Results:
In vitro experiments revealed that Z-LIG/Sen-A combination triggers concentration -dependent dual effects in AML cells: low- concentration treatment promotes differentiation via H2O2-mediated reprogramming of iron homeostasis, whereas high- concentration administration induces PANoptosis through ASC-RIPK3-caspase-8 inflammasome assembly driven by H2O2 accumulation. Mechanistically, a bidirectional regulatory network between ROS and NRF2 orchestrates both iron metabolism and PANoptosis pathways. In AML-NOD/SCID murine models, the combination therapy significantly attenuated leukemia progression and activated the bone marrow NRF2/ROS axis without inducing nephrotoxicity.
Conclusion:
The study pioneers the elucidation of phthalide-induced "differentiation-to-PANoptosis" fate switching governed by H2O2 dosage gradients and NRF2/ROS crosstalk, providing a mechanistic framework for developing precision TCM-based combinatorial therapies against hematological malignancies.
Insights
This study reveals how two compounds, Z-Ligustilide (Z-LIG) and Senkyunolide A (Sen-A), synergistically target acute myeloid leukemia (AML) cells. The combination therapy induces either differentiation or PANoptosis in AML cells, depending on the dosage, offering a novel therapeutic strategy.
Area of Science:
- * Pharmacology
- * Molecular Biology
- * Cancer Research
Background:
- * Coordinated regulation of cell death and differentiation pathways is crucial for multimodal therapeutic strategies in acute myeloid leukemia (AML).
- * Phthalide derivatives from Chuanxiong Rhizoma offer potential for novel AML treatments.
Purpose of the Study:
- * To investigate the synergistic anti-AML mechanisms of Z-Ligustilide (Z-LIG), a pro-apoptotic agent, and Senkyunolide A (Sen-A), a differentiation inducer.
- * To elucidate the concentration-dependent effects of Z-LIG and Sen-A on AML cell fate.
Main Methods:
- * SRB assay to evaluate anticancer activity and synergistic effects.
- * Flow cytometry and transmission electron microscopy (TEM) to assess cell differentiation and PANoptosis.
- * Inhibitor studies (ML385, Dicoumarol) and ROS level analysis to confirm NRF2 pathway involvement.
- * Validation in an AML-NOD/SCID mouse model.
Main Results:
- * Z-LIG/Sen-A combination exhibits dual concentration-dependent effects: low concentrations promote differentiation via H2O2-mediated iron homeostasis, while high concentrations induce PANoptosis through inflammasome assembly.
- * A bidirectional regulatory network between ROS and NRF2 orchestrates iron metabolism and PANoptosis.
- * Combination therapy in vivo significantly reduced leukemia progression and activated the bone marrow NRF2/ROS axis without nephrotoxicity.
Conclusions:
- * The study elucidates phthalide-induced
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