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China Pharmacy ; (12): 584-589, 2021.
Article in Chinese | WPRIM | ID: wpr-873673

ABSTRACT

OBJECTIVE:To study the effect of isofla vaspidicacid PB (called PB for short )on the biofilm adhesion and the gene expression of ergosterol metabolism related enzymes in Trichophyton rubrum . METHODS :M38-A2 method was adopted to determine MIC of PB to T. rubrum . MTT assay was used to screen the biolfilm condition and initial adhesion period of T. rubrum . The effects of different concentrations of PB (40,80,160 µg/mL)on the adhesion duration of T. rubrum (growth control group without PB was set up ,similarly hereinafter )were evaluated and the adhesion rate was calculated by using XTT assay ;the effects of different concentrations of PB (20,40,80 µg/mL)on the biofilm formation of T. rubrum at different initial adhesion periods (3,5,9 h)were observed and the adhesion rate was calculated by using XTT assay combined with inverted microscope ;qRT-PCR method was used to detect the effects of PB (320 µg/mL)on the mRNA expression of ergosterol metabolism related enzyme gene ERG6 and ERG11 in biofilm of T. rubrum . RESULTS :MIC of PB to T. rubrum was 20 µg/mL. The biofilm of T. rubrum in RPMI-1640 medium containing 10% FBS was the most metabolism activity at 6 h of initial adhesion. Compared with growth control group ,after treated with different concentrations of PB ,adhesion rate and mRNA expression of ERG6 and ERG11 in biofilm were decreased significantly (P<0.01). Hyphae decreased or even disappeared ,and the adhesion inhibition rate (at 5 and 9 h of initial adhesion )increased significantly (P<0.05 or P<0.01). CONCLUSIONS :PB can inhibit the adhesion of T. rubrum and reduce the hyphae ;the mechanism may be associated with the inhibition of the biofilm adhesion and mRNA expression of ergosterol metabolism related enzyme gene ERG6 and ERG11.

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