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Updated: Feb 28, 2026
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PET/CT With [68Ga]-NOTA-FAP-2286 for Imaging of Tendon Injuries in Rat Achilles Tendon Injury Models
Published on: June 6, 2025
Na+,K+-ATPase as a Target for Treatment of Tissue Fibrosis
Sergei N Orlov1,2, Jennifer La3, Larisa V Smolyaninova1
1Faculty of Biology, Lomonosov Moscow State University, Russian Federation.
Abstract:
Myofibroblast activation is a critical process in the pathogenesis of tissue fibrosis accounting for 45% of all deaths. No effective therapies are available for the treatment of fibrotic diseases. We focus our mini-review on recent data showing that cardiotonic steroids (CTS) that are known as potent inhibitors of Na+,K+-ATPase affect myofibroblast differentiation in a cell type-specific manner. In cultured human lung fibroblasts (HLF), epithelial cells, and cancer-associated fibroblasts, CTS blocked myofibroblast differentiation triggered by profibrotic cytokine TGF-β. In contrast, in the absence of TGF-β, CTS augmented myofibroblast differentiation of cultured cardiac fibroblasts. The cell type-specific action of CTS in myofibroblast differentiation is consistent with data obtained in in vivo studies. Thus, infusion of ouabain via osmotic mini-pumps attenuated the development of lung fibrosis in bleomycintreated mice, whereas marinobufagenin stimulated renal and cardiac fibrosis in rats with experimental renal injury. In TGF-β-treated HLF, suppression of myofibroblast differentiation by ouabain is mediated by elevation of the [Na+]i/[K+]i ratio and is accompanied by upregulation of cyclooxygenase COX-2 and downregulation of TGF-β receptor TGFBR2. Augmented expression of COX-2 is abolished by inhibition of Na+/Ca2+ exchanger, suggesting a key role of [Ca2+]i-mediated signaling. What is the relative impact in tissue fibrosis of [Na+]i,[K+]iindependent signaling documented in several types of CTS-treated cells? Do the different conformational transitions of Na+,K+-ATPase α1 subunit in the presence of ouabain and marinobufagenin contribute to their distinct involvement in myofibroblast differentiation? Additional experiments should be done to answer these questions and to develop novel pharmacological approaches for the treatment of fibrosis-related disorders.
Insights
Cardiotonic steroids (CTS) show cell-specific effects on myofibroblast differentiation, impacting tissue fibrosis. Ouabain inhibits fibrosis, while marinobufagenin exacerbates it, suggesting targeted therapeutic potential for fibrotic diseases.
Area of Science:
- Cardiovascular Pharmacology
- Fibrosis Pathogenesis
- Cell Signaling
Background:
- Myofibroblast activation drives tissue fibrosis, a major cause of mortality with no effective therapies.
- Cardiotonic steroids (CTS), known Na+,K+-ATPase inhibitors, influence myofibroblast differentiation.
- Understanding CTS's cell-specific actions is crucial for developing anti-fibrotic treatments.
Purpose of the Study:
- To review recent data on cardiotonic steroids (CTS) and their impact on myofibroblast differentiation.
- To explore the cell type-specific effects of CTS in various fibrotic models.
- To elucidate the signaling pathways involved in CTS-mediated myofibroblast modulation.
Main Methods:
- Review of in vitro studies using cultured human lung fibroblasts, epithelial cells, and cancer-associated fibroblasts.
- Analysis of in vivo data from mouse and rat models of experimental fibrosis (bleomycin-induced lung fibrosis, renal injury).
- Investigation of intracellular ion ([Na+]i/[K+]i, [Ca2+]i) and signaling molecule (COX-2, TGFBR2) changes.
Main Results:
- CTS inhibited TGF-β-induced myofibroblast differentiation in lung fibroblasts, epithelial cells, and cancer-associated fibroblasts.
- CTS augmented cardiac fibroblast differentiation independently of TGF-β.
- Ouabain attenuated lung fibrosis in vivo, while marinobufagenin exacerbated renal and cardiac fibrosis.
Conclusions:
- CTS exhibit cell type-specific effects on myofibroblast differentiation, influencing fibrotic processes.
- Ouabain's anti-fibrotic action involves [Na+]i/[K+]i elevation, COX-2 upregulation, and TGFBR2 downregulation.
- Further research is needed to explore [Na+]i,[K+]i-independent signaling and CTS conformational effects for novel anti-fibrotic therapies.
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