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Endometriotic inflammatory microenvironment induced by macrophages can be targeted by niclosamide†
Nikola Sekulovski1, Allison E Whorton1, Mingxin Shi1
1Department of Physiology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA.
Abstract:
Endometriosis causes severe chronic pelvic pain and infertility. We have recently reported that niclosamide treatment reduces growth and progression of endometriosis-like lesions and inflammatory signaling (NF${\rm \small K}$B and STAT3) in a mouse model. In the present study, we examined further inhibitory mechanisms by which niclosamide affects endometriotic lesions using an endometriotic epithelial cell line, 12Z, and macrophages differentiated from a monocytic THP-1 cell line. Niclosamide dose dependently reduced 12Z viability, reduced STAT3 and NF${\rm \small K}$B activity, and increased both cleaved caspase-3 and cleaved PARP. To model the inflammatory microenvironment in endometriotic lesions, we exposed 12Z cells to macrophage conditioned media (CM). Macrophages were differentiated from THP-1 cells using 12-O-tetradecanoylphorbol-13-acetate as M0, and then M0 macrophages were polarized into M1 or M2 using LPS/IFNγ or IL4/IL13, respectively. Conditioned media from M0, M1, or M2 cultures increased 12Z viability. This effect was blocked by niclosamide, and cell viability returned to that of CM from cells treated with niclosamide alone. To assess proteins targeted by niclosamide in 12Z cells, CM from 12Z cells cultured with M0, M1, or M2 with/without niclosamide were analyzed by cytokine/chemokine protein array kits. Conditioned media from M0, M1, and/or M2 stimulated the secretion of cytokines/chemokines from 12Z cells. Production of most of these secreted cytokines/chemokines in 12Z cells was inhibited by niclosamide. Knockdown of each gene in 12Z cells using siRNA resulted in reduced cell viability. These results indicate that niclosamide can inhibit the inflammatory factors in endometriotic epithelial cells stimulated by macrophages by targeting STAT3 and/or NF${\rm \small K}$B signaling.
Insights
Niclosamide effectively inhibits endometriosis progression by reducing endometriotic cell viability and inflammatory signaling. This drug targets nuclear factor kappa B (NF${\rm \small K}$B) and signal transducer and activator of transcription 3 (STAT3) pathways, crucial in endometriosis development.
Area of Science:
- Gynecology
- Cell Biology
- Pharmacology
Background:
- Endometriosis is a debilitating condition causing chronic pelvic pain and infertility.
- Inflammatory signaling pathways, including NF${\rm \small K}$B and STAT3, are implicated in endometriosis progression.
- Niclosamide has shown potential in reducing endometriosis-like lesion growth in mouse models.
Purpose of the Study:
- To investigate the inhibitory mechanisms of niclosamide on endometriotic epithelial cells and their interaction with macrophages.
- To elucidate how niclosamide affects cell viability, inflammatory signaling, and cytokine/chemokine production in endometriosis models.
Main Methods:
- Utilized 12Z endometriotic epithelial cells and THP-1 derived macrophages (M0, M1, M2).
- Assessed niclosamide's effect on cell viability, apoptosis (caspase-3, PARP), and STAT3/NF${\rm \small K}$B activity.
- Analyzed cytokine/chemokine secretion using protein arrays and gene knockdown via siRNA.
Main Results:
- Niclosamide dose-dependently reduced 12Z cell viability and inhibited STAT3/NF${\rm \small K}$B signaling.
- Macrophage-conditioned media enhanced 12Z cell viability, an effect blocked by niclosamide.
- Niclosamide suppressed the secretion of inflammatory cytokines/chemokines from 12Z cells stimulated by macrophages.
Conclusions:
- Niclosamide inhibits endometriotic epithelial cell proliferation and inflammatory factor secretion.
- The drug targets STAT3 and/or NF${\rm \small K}$B signaling pathways in the context of macrophage-endometriotic cell interactions.
- Niclosamide presents a potential therapeutic strategy for managing endometriosis by modulating the inflammatory microenvironment.
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