Chinese Journal of Experimental Traditional Medical Formulae
Protective Effects of Formula of Erigerontis Herba and Paeoniae Radix Rubra on Injury Induced by H2O2 of PC12 Cells
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    Abstract:

    Objective: To investigate the protective effect of the formula of Herba Erigerontis and Radix Paeoniae Rubra on H2O2-induced oxidative stress damage of PC12 cells and its possible mechanism. Method: The in vitro model of oxidative stress damage based on PC12 cells was established by treating with H2O2 (850 μmol·L-1) for 6 h. The formula of Herba Erigerontis and Radix Paeoniae Rubra with different concentrations (6.25, 12.5, 25, 50, 100 mg·L-1) pretreatment of PC12 cells (3×104-4×104 cells/mL)for 24 h. The MTT assay was used to determine the survival rate of PC12 cells. The activity of LDH in culture medium, the level of malondialdehyde(MDA) and the activity of superoxide dismutase(SOD) in cell lysis solution were detected by colorimetric method. The fluorescent probe DCFH-DA and Rhodamine 123 reagent were employed to determine the level of intracellular reactive oxygen species (ROS) and the changes of mitochondrial membrane potential(Δψm) by flow cytometry, respectively. Result: Compared with the controls, the H2O2 model showed decreased to 52.78% in survival. The LDH release in culture supernatants increased 110.13 U·L-1. In addition, the level of MDA and intracellular ROS were significantly increased, the activity of SOD and the Δψm were significantly decreased(P<0.01). Compared with model group, the survival rate of injured cells was increased, and the activity of LDH, the level of MDA and intracellular ROS were decreased in the formula group. In addition, the activity of SOD and the Δψm were significantly increased(P<0.05, P<0.01) in a certain range. Conclusion: The formula of Herba Erigerontis and Radix Paeoniae Rubra has the significant protective effects on the PC12 cells injured by H2O2, which may be associated with the inhibited of lipid peroxidation, the increased of antioxidase activity, the decrease of ROS and the increased stability of mitochondrial membrane potential.

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History
  • Received:October 22,2013
  • Revised:
  • Adopted:
  • Online: February 24,2014
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