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PUBMED FOR HANDHELDS

Journal Abstract Search


218 related items for PubMed ID: 15114480

  • 1. A proteomic approach to understanding the development of multidrug-resistant Candida albicans strains.
    Kusch H, Biswas K, Schwanfelder S, Engelmann S, Rogers PD, Hecker M, Morschhäuser J.
    Mol Genet Genomics; 2004 Jun; 271(5):554-65. PubMed ID: 15114480
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  • 4. Expression of Major Efflux Pumps in Fluconazole-Resistant Candida albicans.
    Pourakbari B, Teymuri M, Mahmoudi S, Valian SK, Movahedi Z, Eshaghi H, Mamishi S.
    Infect Disord Drug Targets; 2017 Jun; 17(3):178-184. PubMed ID: 28558643
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  • 5. Synthetic Organotellurium Compounds Sensitize Drug-Resistant Candida albicans Clinical Isolates to Fluconazole.
    Reis de Sá LF, Toledo FT, Gonçalves AC, Sousa BA, Dos Santos AA, Brasil PF, Duarte da Silva VA, Tessis AC, Ramos JA, Carvalho MA, Lamping E, Ferreira-Pereira A.
    Antimicrob Agents Chemother; 2017 Jan; 61(1):. PubMed ID: 27821447
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  • 6. The genetic basis of fluconazole resistance development in Candida albicans.
    Morschhäuser J.
    Biochim Biophys Acta; 2002 Jul 18; 1587(2-3):240-8. PubMed ID: 12084466
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  • 8. The transcription factor Mrr1p controls expression of the MDR1 efflux pump and mediates multidrug resistance in Candida albicans.
    Morschhäuser J, Barker KS, Liu TT, BlaB-Warmuth J, Homayouni R, Rogers PD.
    PLoS Pathog; 2007 Nov 18; 3(11):e164. PubMed ID: 17983269
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  • 9. Expression of fluconazole resistance-associated genes in biofilm from 23 clinical isolates of Candida albicans.
    Shi C, Liu J, Li W, Zhao Y, Meng L, Xiang M.
    Braz J Microbiol; 2019 Jan 18; 50(1):157-163. PubMed ID: 30617866
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  • 11. The evaluation of the overexpression of the ERG-11, MDR-1, CDR-1, and CDR-2 genes in fluconazole-resistant Candida albicans isolated from Ahvazian cancer patients with oral candidiasis.
    Maheronnaghsh M, Teimoori A, Dehghan P, Fatahinia M.
    J Clin Lab Anal; 2022 Feb 18; 36(2):e24208. PubMed ID: 34997991
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  • 12. The transcription factor Ndt80 does not contribute to Mrr1-, Tac1-, and Upc2-mediated fluconazole resistance in Candida albicans.
    Sasse C, Schillig R, Dierolf F, Weyler M, Schneider S, Mogavero S, Rogers PD, Morschhäuser J.
    PLoS One; 2011 Feb 18; 6(9):e25623. PubMed ID: 21980509
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  • 13. ABC transporter Cdr1p contributes more than Cdr2p does to fluconazole efflux in fluconazole-resistant Candida albicans clinical isolates.
    Holmes AR, Lin YH, Niimi K, Lamping E, Keniya M, Niimi M, Tanabe K, Monk BC, Cannon RD.
    Antimicrob Agents Chemother; 2008 Nov 18; 52(11):3851-62. PubMed ID: 18710914
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  • 14. Vulvovaginal candidiasis: species distribution, fluconazole resistance and drug efflux pump gene overexpression.
    Zhang JY, Liu JH, Liu FD, Xia YH, Wang J, Liu X, Zhang ZQ, Zhu N, Yan-Yan, Ying Y, Huang XT.
    Mycoses; 2014 Oct 18; 57(10):584-91. PubMed ID: 24962255
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  • 15. Competitive Fitness of Fluconazole-Resistant Clinical Candida albicans Strains.
    Popp C, Hampe IAI, Hertlein T, Ohlsen K, Rogers PD, Morschhäuser J.
    Antimicrob Agents Chemother; 2017 Jul 18; 61(7):. PubMed ID: 28461316
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  • 16. Multiple cis-acting sequences mediate upregulation of the MDR1 efflux pump in a fluconazole-resistant clinical Candida albicans isolate.
    Hiller D, Stahl S, Morschhäuser J.
    Antimicrob Agents Chemother; 2006 Jul 18; 50(7):2300-8. PubMed ID: 16801405
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  • 19. A Zinc Cluster Transcription Factor Contributes to the Intrinsic Fluconazole Resistance of Candida auris.
    Mayr EM, Ramírez-Zavala B, Krüger I, Morschhäuser J.
    mSphere; 2020 Apr 22; 5(2):. PubMed ID: 32321822
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  • 20. ERG11 mutations and expression of resistance genes in fluconazole-resistant Candida albicans isolates.
    Xu Y, Sheng F, Zhao J, Chen L, Li C.
    Arch Microbiol; 2015 Nov 22; 197(9):1087-93. PubMed ID: 26349561
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