Antifungal Susceptibility and Mutations in the Squalene Epoxidase Gene in Dermatophytes of the Trichophyton mentagrophytes Species Complex
暂无分享,去创建一个
A. Chowdhary | J. Meis | G. S. de Hoog | Weida Liu | P. Nenoff | P. Verweij | A. Al‐Hatmi | Y. Gräser | P. Zhan | Ashutosh Singh | Steven Hainsworth | Sarah A. Ahmed | Chao Tang | Xue Kong
[1] A. Chowdhary,et al. Taxonomy of the Trichophyton mentagrophytes/T. interdigitale Species Complex Harboring the Highly Virulent, Multiresistant Genotype T. indotineae , 2021, Mycopathologia.
[2] S. Gnat,et al. Complementary effect of mechanism of multidrug resistance in Trichophyton mentagrophytes isolated from human dermatophytoses of animal origin , 2021, Mycoses.
[3] T. Walther,et al. Spread of Terbinafine-Resistant Trichophyton mentagrophytes Type VIII (India) in Germany–“The Tip of the Iceberg?” , 2020, Journal of fungi.
[4] M. Hayette,et al. Belgian National Survey on Tinea Capitis: Epidemiological Considerations and Highlight of Terbinafine-Resistant T. mentagrophytes with a Mutation on SQLE Gene , 2020, Journal of fungi.
[5] M. Arendrup,et al. How to: perform antifungal susceptibility testing of microconidia-forming dermatophytes following the new reference EUCAST method E.Def 11.0, exemplified by Trichophyton. , 2020, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[6] P. Elsner,et al. Indian Trichophyton mentagrophytes squalene epoxidase erg1 double mutants show high proportion of combined fluconazole and terbinafine resistance , 2020, Mycoses.
[7] H. Kamata,et al. Trichophyton indotineae sp. nov.: A New Highly Terbinafine-Resistant Anthropophilic Dermatophyte Species , 2020, Mycopathologia.
[8] P. Hamal,et al. Multicentre validation of a EUCAST method for the antifungal susceptibility testing of microconidia-forming dermatophytes. , 2020, The Journal of antimicrobial chemotherapy.
[9] A. Ebert,et al. Alarming India‐wide phenomenon of antifungal resistance in dermatophytes: A multicentre study , 2020, Mycoses.
[10] K. Zomorodian,et al. Emergence of Terbinafine Resistant Trichophyton mentagrophytes in Iran, Harboring Mutations in the Squalene Epoxidase (SQLE) Gene , 2020, Infection and drug resistance.
[11] S. Dogra,et al. MIC and Upper Limit of Wild-Type Distribution for 13 Antifungal Agents against a Trichophyton mentagrophytes-Trichophyton interdigitale Complex of Indian Origin , 2020, Antimicrobial Agents and Chemotherapy.
[12] S. Dogra,et al. Rapid detection of terbinafine resistance in Trichophyton species by Amplified refractory mutation system-polymerase chain reaction , 2020, Scientific Reports.
[13] Ashutosh Kumar Singh,et al. A unique multidrug-resistant clonal Trichophyton population distinct from Trichophytonmentagrophytes / Trichophytoninterdigitale complex causing an ongoing alarming dermatophytosis outbreak in India: genomic insights and resistance profile. , 2019, Fungal genetics and biology : FG & B.
[14] L. Fontao,et al. A new mutation in the SQLE gene of Trichophyton mentagrophytes associated to terbinafine resistance in a couple with disseminated tinea corporis. , 2019, Journal de mycologie medicale.
[15] C. Zachariae,et al. Emerging Terbinafine Resistance in Trichophyton: Clinical Characteristics, Squalene Epoxidase Gene Mutations, and a Reliable EUCAST Method for Detection , 2019, Antimicrobial Agents and Chemotherapy.
[16] H. Kamata,et al. Terbinafine‐resistant strain of Trichophyton interdigitale strain isolated from a tinea pedis patient , 2019, The Journal of dermatology.
[17] A. Chowdhary,et al. Perspectives on misidentification of Trichophyton interdigitale/Trichophyton mentagrophytes using internal transcribed spacer region sequencing: Urgent need to update the sequence database , 2018, Mycoses.
[18] P. Nenoff,et al. A clarion call for preventing taxonomical errors of dermatophytes using the example of the novel Trichophyton mentagrophytes genotype VIII uniformly isolated in the Indian epidemic of superficial dermatophytosis , 2018, Mycoses.
[19] M. Monod,et al. Ausgeprägte Tinea corporis durch ein Terbinafin-resistentes Trichophyton-mentagrophytes-Isolat vom indischen Genotyp bei einem Säugling aus Bahrain in Deutschland , 2019, Der Hautarzt.
[20] A. Chowdhary,et al. Correlation of In Vitro Susceptibility Based on MICs and Squalene Epoxidase Mutations with Clinical Response to Terbinafine in Patients with Tinea Corporis/Cruris , 2018, Antimicrobial Agents and Chemotherapy.
[21] Ashutosh Kumar Singh,et al. High terbinafine resistance in Trichophyton interdigitale isolates in Delhi, India harbouring mutations in the squalene epoxidase gene , 2018, Mycoses.
[22] S. Dogra,et al. Mutation in the Squalene Epoxidase Gene of Trichophyton interdigitale and Trichophyton rubrum Associated with Allylamine Resistance , 2018, Antimicrobial Agents and Chemotherapy.
[23] S. Dogra,et al. Emergence of recalcitrant dermatophytosis in India. , 2018, The Lancet. Infectious diseases.
[24] H. Kamata,et al. Resistance Mechanism in a Terbinafine-Resistant Strain of Microsporum canis , 2018, Mycopathologia.
[25] W. Melchers,et al. Single-Center Evaluation of an Agar-Based Screening for Azole Resistance in Aspergillus fumigatus by Using VIPcheck , 2017, Antimicrobial Agents and Chemotherapy.
[26] M. Ilkit,et al. Successive potassium hydroxide testing for improved diagnosis of tinea pedis. , 2017, Cutis.
[27] R. Tanaka,et al. Terbinafine Resistance of Trichophyton Clinical Isolates Caused by Specific Point Mutations in the Squalene Epoxidase Gene , 2017, Antimicrobial Agents and Chemotherapy.
[28] Leszek Rychlewski,et al. Detailed Mechanism of Squalene Epoxidase Inhibition by Terbinafine , 2011, J. Chem. Inf. Model..
[29] M. Ilkit,et al. Diagnostic value of morphological, physiological and biochemical tests in distinguishing Trichophyton rubrum from Trichophyton mentagrophytes complex. , 2008, Medical mycology.
[30] D. Denning,et al. EUCAST Definitive Document EDef 7.1: method for the determination of broth dilution MICs of antifungal agents for fermentative yeasts: Subcommittee on Antifungal Susceptibility Testing (AFST) of the ESCMID European Committee for Antimicrobial Susceptibility Testing (EUCAST)∗ , 2008 .
[31] D. Denning,et al. EUCAST DEFINITIVE DOCUMENT E.DEF 9.1: Method for the determination of broth dilution minimum inhibitory concentrations of antifungal agents for conidia forming moulds , 2008 .
[32] W. Maccheroni,et al. Role of the ABC transporter TruMDR2 in terbinafine, 4-nitroquinoline N-oxide and ethidium bromide susceptibility in Trichophyton rubrum. , 2006, Journal of medical microbiology.
[33] C. K. Campbell,et al. Evaluation of the Viability of Pathogenic Filamentous Fungi after Prolonged Storage in Sterile Water and Review of Recent Published Studies on Storage Methods , 2006, Mycopathologia.
[34] C. Ruckenstuhl,et al. Single amino acid exchanges in FAD-binding domains of squalene epoxidase of Saccharomyces cerevisiae lead to either loss of functionality or terbinafine sensitivity. , 2005, Biochemical Society transactions.
[35] R. Prasad,et al. Squalene epoxidase encoded by ERG1 affects morphogenesis and drug susceptibilities of Candida albicans. , 2005, The Journal of antimicrobial chemotherapy.
[36] M. Bard,et al. Candida glabrata erg1 Mutant with Increased Sensitivity to Azoles and to Low Oxygen Tension , 2004, Antimicrobial Agents and Chemotherapy.
[37] K. Landl,et al. Molecular Mechanism of Terbinafine Resistance in Saccharomyces cerevisiae , 2003, Antimicrobial Agents and Chemotherapy.