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1. CXCL4 drives fibrosis by promoting several key cellular and molecular processes

2. CXCL4 drives fibrosis by promoting several key cellular and molecular processes

4. Characterization of long non-coding rnas in systemic sclerosis monocytes: A potential role for psmb8-as1 in altered cytokine secretion

5. CXCL4 triggers monocytes and macrophages to produce PDGF-BB, culminating in fibroblast activation: Implications for systemic sclerosis

6. CXCL4 triggers monocytes and macrophages to produce PDGF-BB, culminating in fibroblast activation: Implications for systemic sclerosis

7. MTOR inhibition by metformin impacts monosodium urate crystal-induced inflammation and cell death in gout : A prelude to a new add-on therapy?

8. Histone modifications underlie monocyte dysregulation in patients with systemic sclerosis, underlining the treatment potential of epigenetic targeting

9. MTOR inhibition by metformin impacts monosodium urate crystal-induced inflammation and cell death in gout: A prelude to a new add-on therapy?

10. Histone modifications underlie monocyte dysregulation in patients with systemic sclerosis, underlining the treatment potential of epigenetic targeting

12. Serum microRNA screening and functional studies reveal miR-483-5p as a potential driver of fibrosis in systemic sclerosis

13. Association of MicroRNA-618 Expression With Altered Frequency and Activation of Plasmacytoid Dendritic Cells in Patients With Systemic Sclerosis

14. Association of MicroRNA-618 Expression With Altered Frequency and Activation of Plasmacytoid Dendritic Cells in Patients With Systemic Sclerosis

16. Impaired uptake of conjugated bile acids and hepatitis b virus pres1‐binding in na + ‐taurocholate cotransporting polypeptide knockout mice

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