QIU Jian-li, CHAI Yu-na, LI Yue, et al. Effect of Drug Serum of Modified Yinchen Sini Tang on TGF-/Smads Signaling Pathways and Collagen of TGF--induced Rat Hepatic Stellate Cells[J]. Chinese journal of experimental traditional medical formulae, 2016, 22(13): 142-145.
QIU Jian-li, CHAI Yu-na, LI Yue, et al. Effect of Drug Serum of Modified Yinchen Sini Tang on TGF-/Smads Signaling Pathways and Collagen of TGF--induced Rat Hepatic Stellate Cells[J]. Chinese journal of experimental traditional medical formulae, 2016, 22(13): 142-145. DOI: 10.13422/j.cnki.syfjx.2016130142.
Objective: To investigate the effect of drug serum of modified Yinchen Sini Tang on transforming growth factor (TGF)-β1/Smads signaling pathways and Collagen3 of TGF-β1-induced rat hepatic stellate cells (HSC). Method: With rat hepatic stellate cells as the study objects
the cells were divided into blank group
model group
positive drug group (methylprednisolone
10%drug serum)
modified Yinchen Sini Tang high dose
middle dose and low dose groups (10%drug serum). All the other rats except those in blank group were given with TGF-β1 (10 g·L-1) and corresponding 10%drug serum culture was used
the effects of the drug serum on protein expression levels of Smad3
Smad7
Collagen3 in HSC-T6 cells were detected by using Western blot assay. Result: As compared with the blank group
protein expression levels of Smad3
Smad7
Collagen3 in HSC-T6 cells were increased in model group
and the increase of Collagen3 expression was more obvious (P < 0.05). As compared with the model group
the protein expression level of Smad3 was significantly decreased in modified Yinchen Sini Tang low dose group (P < 0.05)
the protein expression level of Collagen3 was significantly decreased in modified Yinchen Sini Tang middle dose group (P < 0.05). Conclusion: Drug serum of modified Yinchen Sini Tang could down-regulate the protein expression levels of Smad3 and Collagen3
while there was no significant change in Smad7
suggesting that the drug can delay the process of liver fibrosis under the in vitro conditions.