Fig. 1. Chromatogram and structure of four compounds purified from KGC-03-PS (KGC3P).
Fig. 2. Determination of optical ratio between Korean red ginseng and Salvia plebeia R. Br on suppression of creating radical and leukotriene.
Fig. 3. Experimental schedule to make coal combustion-fly ash-diesel exhaust particles complex (CFD)-induced mice model and Histopathology.
Fig. 4. The Effect of Salvia plebeia, Korean red ginseng and complexs on the infiltration of granulocytes in airway from coal combustion-fly ash-diesel exhaust particles complex (CFD)-induced mice model.
Fig. 5. The Effect of Salvia plebeia, Korean red ginseng and complexs on pro-inflammatory cytokine in BALF.
Fig. 6. The restoration of airway immune response associated chemokines and inflammatory cytokines by Salvia plebeia, Korean red ginseng and complexs in coal combustion-fly ash-diesel exhaust particles complex (CFD)-induced mice models.
Fig. 7. The effect of KGC3P on airway immune cell number and neutrophilic airway inflammation in coal combustion-fly ashdiesel exhaust particles complex (CFD)-induced airway inflammation mice model.
Fig. 8. The dose dependent reduced production of ROS by KGC3P in BAL fluid of coal combustion-fly ash-diesel exhaust particles complex (CFD)-induced mice models.
Fig. 9. Effect of Salvia, Korea red ginseng and KGC-03-PS on the amount of tracheal phenol red secretion in mice.
Fig. 10. Effect of KGC-03-PS on carbachol-induced contraction of isolated trachea from guinea pigs.
Table 1. Mouse oligonucleatide primer sequence.
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