Objective To explore the inhibition of juglone in Qinglongyi on A-549 cells in vitro.Methods MTT assay was used.Laser confocal scanning microscope was used to observe apoptotic morphology.Changes of cell cycle are stu...Objective To explore the inhibition of juglone in Qinglongyi on A-549 cells in vitro.Methods MTT assay was used.Laser confocal scanning microscope was used to observe apoptotic morphology.Changes of cell cycle are studied by flow cytometry analysis.Results MTT assay showed that juglone had a marked growth inhibition in A-549 cells and the IC50 is respectively 3.4×10-5 mol·L-1,1.8×10-5 mol·L-1 and 2.6×10-6 mol·L-1 after treatment for 24,48 and 72 h by juglone.Through Laser confocal scanning microscope,we can see that juglone can induce the apoptosis.Cell cycle changes are analyzed by flow cytometry with cells at G1 phase significantly less than those of control and cells at G2 phase significantly more than those of control.Conclusions It suggests that juglone could apoptosis of A-549 cells with the cell cycle arrest on G2 phase in distinct dose-dependent manner.展开更多
Objective To study the effect of Qinglongyi polysaccharides (QP) in the exocarp of Juglans mandshurica on the complex mobility of erythrocytes in S180 mice. Methods Erythrocytes were collected and prepared into suspen...Objective To study the effect of Qinglongyi polysaccharides (QP) in the exocarp of Juglans mandshurica on the complex mobility of erythrocytes in S180 mice. Methods Erythrocytes were collected and prepared into suspensions, and the complex mobility of cells was measured using high performance capillary electrophoresis (HPCE). Optimized experimental conditions were as follows: 50 cm × 75 μm capillary, buffer for electrophoresis; phosphate solution containing hydroxypropylmethyl cellulose (0.1 mol/L, pH 7.4), injection pressure 3.448 kPa, injection time 10 s, separation voltage 20 kV, and column temperature 25 ℃. Results The migration time of erythrocytes in S180 mice was longer than that in normal mice, which was 18.09 min for the model group and 12.11 min for the control group, and the complex mobility of erythrocytes in S180 mice was lower than that in normal mice, which was 0.92 × 104 cm2 /(V·s) for the model group and 1.38 × 104 cm2 /(V·s) for the control group. It was also found that S180 mice treated by QP could shorten the migration time and increase the complex mobility of erythrocytes. Conclusion QP could improve the complex mobility of erythrocytes in S180 mice, and HPCE could be used as a powerful tool for determining the physiological state and functions of erythrocytes.展开更多
文摘Objective To explore the inhibition of juglone in Qinglongyi on A-549 cells in vitro.Methods MTT assay was used.Laser confocal scanning microscope was used to observe apoptotic morphology.Changes of cell cycle are studied by flow cytometry analysis.Results MTT assay showed that juglone had a marked growth inhibition in A-549 cells and the IC50 is respectively 3.4×10-5 mol·L-1,1.8×10-5 mol·L-1 and 2.6×10-6 mol·L-1 after treatment for 24,48 and 72 h by juglone.Through Laser confocal scanning microscope,we can see that juglone can induce the apoptosis.Cell cycle changes are analyzed by flow cytometry with cells at G1 phase significantly less than those of control and cells at G2 phase significantly more than those of control.Conclusions It suggests that juglone could apoptosis of A-549 cells with the cell cycle arrest on G2 phase in distinct dose-dependent manner.
基金National Natural Science Foundation of China (30600816)Heilongjiang Province Natural Science Foundation (D200836)
文摘Objective To study the effect of Qinglongyi polysaccharides (QP) in the exocarp of Juglans mandshurica on the complex mobility of erythrocytes in S180 mice. Methods Erythrocytes were collected and prepared into suspensions, and the complex mobility of cells was measured using high performance capillary electrophoresis (HPCE). Optimized experimental conditions were as follows: 50 cm × 75 μm capillary, buffer for electrophoresis; phosphate solution containing hydroxypropylmethyl cellulose (0.1 mol/L, pH 7.4), injection pressure 3.448 kPa, injection time 10 s, separation voltage 20 kV, and column temperature 25 ℃. Results The migration time of erythrocytes in S180 mice was longer than that in normal mice, which was 18.09 min for the model group and 12.11 min for the control group, and the complex mobility of erythrocytes in S180 mice was lower than that in normal mice, which was 0.92 × 104 cm2 /(V·s) for the model group and 1.38 × 104 cm2 /(V·s) for the control group. It was also found that S180 mice treated by QP could shorten the migration time and increase the complex mobility of erythrocytes. Conclusion QP could improve the complex mobility of erythrocytes in S180 mice, and HPCE could be used as a powerful tool for determining the physiological state and functions of erythrocytes.