ArticleActa pharmacologica Sinica2026
PDE4D-CXCL13 axis in gland epithelial cells promotes B cell infiltration in primary Sjögren's syndrome.
Article in Acta pharmacologica Sinica, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Primary Sjögren's syndrome (pSS) is a prevalent autoimmune disorder characterized by immune cell, particularly B cell, infiltration into exocrine glands, where autoantibody production disrupts glandular architecture and secretory function. Unraveling the mechanisms that drive this B cell trafficking could unveil innovative therapeutic avenues for pSS. We report that phosphodiesterase 4D (PDE4D) is markedly up-regulated in glandular epithelial cells from both pSS patients and murine models, correlating tightly with diminished saliva output and heightened B cell infiltration. Mechanistically, lipopolysaccharide (LPS) engages Toll-like receptor 2/4 signaling in human salivary gland epithelial cells to induce PDE4D expression. Then, PDE4D reduces the phosphorylation of FOXO1 and enhances its nuclear translocation and stability; in turn, FOXO1 amplifies C-X-C motif chemokine ligand 13 (CXCL13) secretion that promotes B cell chemotaxis. To interrogate the functional relevance of PDE4D, we generated pSS models in PDE4D-knockout and wild-type (WT) mice, and additionally treated WT-pSS mice with a selective PDE4D inhibitor. Genetic deletion or pharmacologic inhibition of PDE4D augmented PKA-mediated FOXO1 phosphorylation, suppressed CXCL13 expression in glandular epithelial cells, and significantly attenuated disease manifestations. Collectively, our findings position PDE4D as a promising therapeutic target for pSS.
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