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.

Abstract

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