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1. The m6A reader IGF2BP1 contributes to the activation of hepatic stellate cells through facilitating TUBB4B mRNA stabilization.

2. Fibroblast Growth Factor 9 is expressed by activated hepatic stellate cells and promotes progression of hepatocellular carcinoma.

3. Bruceine A attenuates fibrogenesis and inflammation through NR2F2-regulated HMGB1 inflammatory signaling cascades in hepatic fibrosis.

4. A novel pectin-like polysaccharide from Crocus sativus targets Galectin-3 to inhibit hepatic stellate cells activation and liver fibrosis.

5. Targeting CFTR restoring aggrephagy to suppress HSC activation and alleviate liver fibrosis.

6. Restoration of RECK expression attenuates liver fibrosis induced by carbon tetrachloride through the Nrf2-MMP9 axis.

7. ASIC1a regulates ferroptosis in hepatic stellate cells via the Hippo/Yap-1 pathway in liver fibrosis.

8. Mouse liver blood flow is regulated by hepatic stellate cells in response to the sympathetic neurotransmitter norepinephrine.

9. Substance P alleviates liver fibrosis by modulating inflammation and mobilizing reparative stem cells.

10. Impact of heterogeneity in liver matrix and intrahepatic cells on the progression of hepatic fibrosis.

11. Naringenin ameliorates MASH fibrosis via regulating TAK1/MAPK/FoxO3a-mediated apoptosis in the activated hepatic stellate cells.

12. FoxD1 expression identifies a distinct subset of hepatic stellate cells involved in liver fibrosis.

13. Key regulators of hepatic stellate cell activation in alcohol liver Disease: A comprehensive review.

14. Ficus hirta Vahl. ameliorates liver fibrosis by triggering hepatic stellate cell ferroptosis through GSH/GPX4 pathway.

15. Hepatic stellate cells promote hepatocellular carcinoma development by regulating histone lactylation: Novel insights from single-cell RNA sequencing and spatial transcriptomics analyses.

16. An inducible sphingosine kinase 1 in hepatic stellate cells potentiates liver fibrosis.

17. Targeting TGR5 to mitigate liver fibrosis: Inhibition of hepatic stellate cell activation through modulation of mitochondrial fission.

18. Sequential system based on ferritin delivery system and cell therapy for modulating the pathological microenvironment and promoting recovery.

19. Imperatorin attenuates CCl 4 -induced cirrhosis and portal hypertension by improving vascular remodeling and profibrogenic pathways.

20. Glycyrrhizic acid ameliorates hepatic fibrosis by inhibiting oxidative stress via AKR7A2.

21. Early activation of hepatic stellate cells induces rapid initiation of retinyl ester breakdown while maintaining lecithin:retinol acyltransferase (LRAT) activity.

22. Nimodipine ameliorates liver fibrosis via reshaping liver immune microenvironment in TAA-induced in mice.

23. Cryptotanshinone alleviates liver fibrosis via inhibiting STAT3/CPT1A-dependent fatty acid oxidation in hepatic stellate cells.

24. The circAno6/miR-296-3p/TLR4 signaling axis mediates the inflammatory response to induce the activation of hepatic stellate cells.

25. Lycorine relieves the CCl 4 -induced liver fibrosis mainly via the JAK2/STAT3 and PI3K/AKT signaling pathways.

27. Adipocyte Fatty Acid Binding Protein Promotes the Onset and Progression of Liver Fibrosis via Mediating the Crosstalk between Liver Sinusoidal Endothelial Cells and Hepatic Stellate Cells

28. H3K18 lactylation accelerates liver fibrosis progression through facilitating SOX9 transcription.

29. Ba-Qi-Rougan formula alleviates hepatic fibrosis by suppressing hepatic stellate cell activation via the MSMP/CCR2/PI3K pathway.

30. Arctigenin induces activated HSCs quiescence via AMPK-PPARγ pathway to ameliorate liver fibrosis in mice.

31. Advances in Research on the Effectiveness and Mechanism of Active Ingredients from Traditional Chinese Medicine in Regulating Hepatic Stellate Cells Autophagy Against Hepatic Fibrosis.

32. Sodium arsenite induces hepatic stellate cells activation by m 6 A modification of TGF-β1 during liver fibrosis.

33. Paeoniflorin promotes PPARγ expression to suppress HSCs activation by inhibiting EZH2-mediated histone H3K27 trimethylation.

34. Esculin inhibits hepatic stellate cell activation and CCl 4 -induced liver fibrosis by activating the Nrf2/GPX4 signaling pathway.

35. The mechanical mechanism of angiotensin II induced activation of hepatic stellate cells promoting portal hypertension.

36. Aflatoxin B 1 -exposed hepatocyte-derived extracellular vesicles: Initiating hepatic stellate cell-mediated liver fibrosis through a p53-Parkin-dependent mitophagy pathway.

37. Lipopolysaccharide modification enhances the inhibitory effect of clodronate liposomes on hepatic fibrosis by depletion of macrophages and hepatic stellate cells.

38. Cordycepin alleviates hepatic fibrosis in association with the inhibition of glutaminolysis to promote hepatic stellate cell senescence.

39. Albiflorin ameliorates thioacetamide-induced hepatic fibrosis: The involvement of NURR1-mediated inflammatory signaling cascades in hepatic stellate cells activation.

40. N6-methyladenosine modification regulates ferroptosis through autophagy signaling pathway in hepatic stellate cells

41. The use of micelles to deliver potential hedgehog pathway inhibitor for the treatment of liver fibrosis

42. Notoginsenoside R1 targets PPAR-γ to inhibit hepatic stellate cell activation and ameliorates liver fibrosis.

43. Sevelamer reverses liver fibrosis by deactivation of hepatic stellate cells.

44. Arbidol attenuates liver fibrosis and activation of hepatic stellate cells by blocking TGF-β1 signaling.

45. Interleukin-24 protects against liver injury in mouse models

46. Expression of 6 Biomarkers in Liver Grafts After Pediatric Liver Transplantation : Correlations with Histology, Biochemistry, and Outcome

47. The BRD7-P53-SLC25A28 axis regulates ferroptosis in hepatic stellate cells

48. Reversion of in vivo fibrogenesis by novel chromone scaffolds

49. Reduced production of laminin by hepatic stellate cells contributes to impairment in oval cell response to liver injury in aged mice

50. Interaction of TWEAK with Fn14 leads to the progression of fibrotic liver disease by directly modulating hepatic stellate cell proliferation‡