Muscone Promotes PINK1/Parkin-Associated Mitophagy to Suppress NLRP3 Inflammasome Activation: Implications for Endotoxemia Therapy

  • Pharmaceuticals (Basel). 2026 May 23;19(6):816. doi: 10.3390/ph19060816.
Ziwei Yan  1 Minrui Li  1 Dan Li  1 Wentian Hua  1 Haoxue Cao  1 Yufei Li  1 Li Che  2 Xiyi Chen  2 Zhicheng Lai  2 Yi Wang  1  3  4 Guofang Shen  1  5 Jing Qian  1
Affiliations
  • 1. Pharmaceutical Informatics Institute, School of Pharmacy, Zhejiang University, Hangzhou 310058, China.
  • 2. Xiamen Traditional Chinese Medicine Co., Ltd., Xiamen 361100, China.
  • 3. Innovation Institute for Artificial Intelligence in Medicine, Zhejiang University, Hangzhou 310018, China.
  • 4. Jinan Microecological Biomedicine Shandong Laboratory, Jinan 250118, China.
  • 5. Hangzhou Institute for Food and Drug Control, Hangzhou 310022, China.
Abstract

Background: The NLRP3 inflammasome drives pathological inflammation in various diseases. PINK1/Parkin-associated Mitophagy serves as a critical negative regulator of NLRP3 activation, yet pharmacological enhancers remain scarce. Muscone, a natural macrocyclic ketone with blood-brain barrier permeability, exhibits potent anti-inflammatory properties; however, its mechanistic role within the NLRP3-mitophagy axis remains undefined. Methods: LPS/ATP-stimulated Macrophages were employed to assess stage-specific effects of muscone on NLRP3 priming (NF-κB signaling, NLRP3, and pro-IL-1β expression) and activation (ASC oligomerization, ASC-pro-caspase 1 complex formation, and IL-1β secretion). RNA Sequencing and bioinformatic analysis were performed for pathway enrichment. Mitophagy was characterized by MitoSOX Red staining for mt-ROS detection, electron microscopy, Western blotting of LC3B-II in isolated mitochondria and PINK1 and Parkin in whole-cell lysates, and live-cell mitochondria-lysosome tracking. In vivo protective efficacy was assessed in an LPS-induced endotoxemia mouse model. Results: Muscone dose-dependently suppressed both the priming and activation stages of the NLRP3 inflammasome, maximally reducing IL-1β secretion by ~60% at 50 μM. Mechanistically, muscone amplified PINK1/Parkin-associated Mitophagy, scavenging excessive mt-ROS and attenuating NLRP3 activation. These effects were corroborated by RNA-seq and comprehensive functional assays. In vivo, muscone (30 mg/kg) significantly improved survival (3/8 mice alive at 98 h when all LPS controls had died; 2/8 survived to the 132-h endpoint), with concomitant enhancement of Mitophagy markers in peritoneal Macrophages. Conclusions: Muscone functions as a PINK1/Parkin-associated Mitophagy enhancer that maintains mitochondrial quality control during NLRP3-driven inflammatory responses. Its unique macrocyclic structure and blood-brain barrier permeability provide a promising scaffold for developing therapeutics against inflammatory disorders associated with NLRP3 inflammasome activation.

Keywords
NLRP3 inflammasome; PINK1/Parkin-associated mitophagy; endotoxemia; macrophages; mitochondrial quality control; muscone.
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