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◆ Biomolecules2026-09-11

CXCL10 Is Inhibited by PPARβ/δ-Selective Activation in Human Monocyte-Derived Dendritic Cells, T Lymphocytes and Monocytes In Vitro: Insights into Autoimmune Rheumatic Diseases.

Gabriele Farina, Mariangela Sottili, Giada La Spina, Stefania Gelmini, Simona Truglia, Fabrizio Conti, Francesca Romana Spinelli, Clara Crescioli

原始摘要(英文原文)· Original abstract
The chemokine CXCL10 contributes to early autoimmune rheumatic disease (ARD) development. Preclinical ARD stages exhibit dendritic cells (DCs), CD4+ T cells, and monocytes (CD14+ cells) dysregulation and an overreactive immunoprofile. The peroxisome proliferator-activated receptor (PPAR)β/δ acts as a "molecular brake", limiting autoimmune overresponse. This study aims to investigate CXCL10 in human monocyte-derived mDCs, CD4+ T cells, and monocytes exposed to PPARβ/δ agonist carbaprostacylin (cPGI2) or PPARγ agonist rosiglitazone (RGZ), to verify drug-class-related effects. Tumor necrosis factor (TNF)α, interferon (IFN)γ, synergistic inducers of CXCL10, and interleukin (IL)-10 were investigated. mDCs, CD4+ T cells, and CD14+ monocytes isolated from healthy donors' blood were cultured, specifically activated to mimic an overreactive phenotype, and treated for 24-48 h with/without [10 μM] cPGI2 or [5 μM] RGZ (near therapy doses, respectively). Luminex assays quantified cell supernatant analytes; Real-time q-PCR measured cytokine and PPARβ/δ mRNA expression. cPGI2, not RGZ, significantly decreased CXCL10 in mDCs and CD4+ T cells, reduced TNFα in mDCs, CD4+ T and monocytes, and diminished IFNγ in mDCs. IL-10 did not change. cPGI2-induced CXCL10 downregulation, with TNFα and IFNγ decrease, might be relevant, given its early activity in ARD development. Scenarios on PPARβ/δ agonist re-positioning aimed at modulating CXCL10 might open opportunities to support ARD management and targeted therapy development.
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CXCL10 Is Inhibited by PPARβ/δ-Selective Activation in Human Monocyte-Derived Dendritic Cells, T Lymphocytes and Monocytes In Vitro: Insights into Autoimmune Rheumatic Diseases. — 科研速览 Science Skim