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22 results on '"Chen, Shuang"'

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1. Paired box 9 regulates VSMC phenotypic transformation, proliferation, and migration via sonic hedgehog.

3. The impact of monocyte to high-density lipoprotein ratio on reduced renal function: insights from a large population.

4. Intercepting the Lipid-Induced Integrated Stress Response Reduces Atherosclerosis.

5. Chlamydia pneumoniae Hijacks a Host Autoregulatory IL-1β Loop to Drive Foam Cell Formation and Accelerate Atherosclerosis.

7. Chlamydia and Lipids Engage a Common Signaling Pathway That Promotes Atherogenesis.

8. Hepatic Tm6sf2 overexpression affects cellular ApoB-trafficking, plasma lipid levels, hepatic steatosis and atherosclerosis.

9. Ogg1-Dependent DNA Repair Regulates NLRP3 Inflammasome and Prevents Atherosclerosis.

10. A single infection with Chlamydia pneumoniae is sufficient to exacerbate atherosclerosis in ApoE deficient mice.

11. Deficiency of CCAAT/enhancer binding protein-epsilon reduces atherosclerotic lesions in LDLR-/- mice.

12. Marked acceleration of atherosclerosis after Lactobacillus casei-induced coronary arteritis in a mouse model of Kawasaki disease.

13. IL-17A is proatherogenic in high-fat diet-induced and Chlamydia pneumoniae infection-accelerated atherosclerosis in mice.

14. Emerging role of IL-17 in atherosclerosis.

15. TLR/MyD88 and liver X receptor alpha signaling pathways reciprocally control Chlamydia pneumoniae-induced acceleration of atherosclerosis.

16. T-Cell-Intrinsic Receptor Interacting Protein 2 Regulates Pathogenic T Helper 17 Cell Differentiation

17. Chlamydia pneumoniae Infection in Mice Induces Chronic Lung Inflammation, iBALT Formation, and Fibrosis

19. HDAC9 in the Injury of Vascular Endothelial Cell Mediated by P38 MAPK Pathway.

20. Chlamydia and Lipids Engage a Common Signaling Pathway That Promotes Atherogenesis

21. Wenyang Huoxue Jiedu formula inhibits thin-cap fibroatheroma plaque formation via the VEGF/VEGFR signaling pathway.

22. The activation of liver X receptors inhibits toll-like receptor-9-induced foam cell formation.

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