Back to Search Start Over

Modulation of the Antifungal Activity of New Medicinal Plant Extracts Active on Candida glabrataby the Major Transporters and Regulators of the Pleiotropic Drug-Resistance Network in Saccharomyces cerevisiae.

Authors :
Marcin Kolaczkowski
Anna Kolaczkowska
Frank R. Stermitz
Source :
Microbial Drug Resistance: Mechanism, Epidemiology, & Disease. Mar2009, Vol. 15 Issue 1, p11-17. 7p.
Publication Year :
2009

Abstract

The increased incidence of drug-resistant fungal infections, a process in which active efflux plays an important role, calls for the development of new treatments. Candida albicansand Candida glabrataare the most frequent human fungal pathogens. The latter, in spite of its increased azole tolerance, is rarely used in medicinal plant screening. Several extracts inhibiting the growth of this pathogenic yeast are identified here. The ethyl acetate extract of the herb Dalea formosaof the American Southwest, not previously known to possess antifungal activity, proved most active against azole-sensitive and azole-resistant isolates. The model yeast Saccharomyces cerevisiae, related to C. glabrata, was used to evaluate the influence of multidrug efflux on the antifungal activity of identified extracts and selected fractions from further purification steps, together with their ability to modulate ketoconazole resistance. The differential involvement of the major pleiotropic drug transporters of the ATP-binding cassette superfamily Pdr5p, Snq2p, and Yor1p as well as their transcriptional activators Pdr1p and Pdr3p in the detoxification of the antifungal constituents of several important medicinal plants is demonstrated. These include Artemisia annuaand its widely used antimalarial component artemisinin. This approach revealed the concomitant presence of multidrug efflux pump substrates and modulators in the extract of A. annuaand also allowed the identification of an extract not affected by the major pleiotropic drug-resistance genes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10766294
Volume :
15
Issue :
1
Database :
Academic Search Index
Journal :
Microbial Drug Resistance: Mechanism, Epidemiology, & Disease
Publication Type :
Academic Journal
Accession number :
37035674
Full Text :
https://doi.org/10.1089/mdr.2009.0854