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[Effects of piperazine ferulate on connective tissue growth factor and extracellular matrix in TGF-beta1 induced mesangial cells].

Yin Jp, Ping Fu, Xie Xs, Fan Liu, Fei Liu, Li Zhou

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Abstract

OBJECTIVE: To observe the effects of piperazine ferulate (PF) on synthesis of extracellular matrix and expression of connective tissue growth factor (CTGF) in transforming growth factor-betal (TGF-beta1) induced rat glomerular mesangial cells (GMC), and to investigate its mechanism on the prevention of glomerulosclerosis. METHODS: Rat HBZY-1 GMCs were cultured in vitro and divided into 5 groups: Normal control group, TGF-beta1-stimulated group, TGF-beta1 plus 50, 100, 200 ng/mL PF group. The level of CTGF protein expression induced by TGF-beta1 was measured by immunocytochemistry, The mRNA expression of CTGF was evaluated by quantitative real time fluroscent polymerase chain reaction. The expressions of fibronectin and collagen I were analyzed by enzyme linked immunosorbent assay (ELISA). RESULTS: With the stimulation of TGF-beta1, the expression of of CTGF protein and mRNA, as well as fibronectin and collagen I were markly increased (P < 0.05), which then were decreased by the treatment of PF. (P < 0.05). CONCLUSION: PF can partly inhibit synthesis of the extracellular matrix and CTGF. PF may take part in the prevention of glomerulosclerosis through the inhibition of CTGF expression.

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What this paper is about

OBJECTIVE: To observe the effects of piperazine ferulate (PF) on synthesis of extracellular matrix and expression of connective tissue growth factor (CTGF) in transforming growth factor-betal (TGF-beta1) induced rat glomerular mesangial cells (GMC), and to investigate its mechanism on the prevention of glomerulosclerosis. METHODS: Rat HBZY-1 GMCs were cultured in vitro and divided into 5 groups: Normal control group, TGF-beta1-stimulated group, TGF-beta1 plus 50, 100, 200 ng/mL PF group. The level of CTGF protein expression induced by TGF-beta1 was measured by immunocytochemistry, The mRNA expression of CTGF was evaluated by quantitative real time fluroscent polymerase chain reaction. The expressions of fibronectin and collagen I were analyzed by enzyme linked immunosorbent assay (ELISA). RESULTS: With the stimulation of TGF-beta1, the expression of of CTGF protein and mRNA, as well as fibronectin and collagen I were markly increased (P < 0.05), which then were decreased by the treatment of PF. (P < 0.05). CONCLUSION: PF can partly inhibit synthesis of the extracellular matrix and CTGF. PF may take part in the prevention of glomerulosclerosis through the inhibition of CTGF expression.

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Available abstract

OBJECTIVE: To observe the effects of piperazine ferulate (PF) on synthesis of extracellular matrix and expression of connective tissue growth factor (CTGF) in transforming growth factor-betal (TGF-beta1) induced rat glomerular mesangial cells (GMC), and to investigate its mechanism on the prevention of glomerulosclerosis. METHODS: Rat HBZY-1 GMCs were cultured in vitro and divided into 5 groups: Normal control group, TGF-beta1-stimulated group, TGF-beta1 plus 50, 100, 200 ng/mL PF group. The level of CTGF protein expression induced by TGF-beta1 was measured by immunocytochemistry, The mRNA expression of CTGF was evaluated by quantitative real time fluroscent polymerase chain reaction. The expressions of fibronectin and collagen I were analyzed by enzyme linked immunosorbent assay (ELISA). RESULTS: With the stimulation of TGF-beta1, the expression of of CTGF protein and mRNA, as well as fibronectin and collagen I were markly increased (P < 0.05), which then were decreased by the treatment of PF. (P < 0.05). CONCLUSION: PF can partly inhibit synthesis of the extracellular matrix and CTGF. PF may take part in the prevention of glomerulosclerosis through the inhibition of CTGF expression.

Key concepts: CTGF, Fibronectin, Extracellular matrix, Transforming growth factor, Connective tissue, Growth factor, Endocrinology, Internal medicine

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[Effects of piperazine ferulate on connective tissue growth factor and extracellular matrix in TGF-beta1 induced mesangial cells]. — Research Paper | ScholarLens