Beryllium Sulfate-Induced Cellular Senescence via the IL-6/STAT3 Pathway to Promote Pulmonary Fibrosis

  • J Appl Toxicol. 2026 Apr 13. doi: 10.1002/jat.70199.
Yanping Lu  1 Yaqi Li  1  2 Yuqi Tong  1 Lian Huang  1 Zhaohui Zhang  1
Affiliations
  • 1. Department of Preventive Medicine, School of Public Health, Hengyang Medical School, University of South China, Hengyang, China.
  • 2. Ji'ning Municipal Center for Disease Control and Prevention, Jining, China.
Abstract

Beryllium is widely used in nuclear technology, aerospace, and defense. Long-term beryllium exposure causes chronic beryllium disease (CBD) characterized predominantly by pulmonary fibrosis. Cellular senescence is an important mechanism underlying pulmonary fibrosis, and the IL-6/STAT3 pathway has been implicated as a central axis linking inflammation, senescence, and tissue remodeling. However, whether this pathway promotes beryllium sulfate (BeSO4)-induced pulmonary fibrosis through regulation of senescence remains unclear. Herein, Sprague-Dawley rats were exposed to BeSO4, and hematoxylin-eosin (H&E) and Masson's trichrome staining were used to assess lung injury and fibrosis. Immunohistochemistry (IHC) assays were used to assess fibrosis-related factors, pathway molecules, and senescence markers in the lung tissues. In vitro, A549 cells were pretreated with the IL-6/STAT3 Inhibitor LMT-28 before BeSO4 exposure, and alterations in cell morphology, proliferation, senescence-related markers, and fibrosis-related markers were evaluated. The results demonstrated that BeSO4 exposure promoted cellular senescence and pulmonary fibrogenesis via activating IL-6/STAT3 signaling, whereas LMT-28 treatment significantly attenuated these processes. These findings elucidate the molecular mechanism by which BeSO4 induces pulmonary fibrosis through cellular aging, providing a basis for the discovery of potential therapeutic targets.

Keywords
IL‐6/STAT3 pathway; beryllium sulfate; cellular senescence; pulmonary fibrosis.
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