Literature DB >> 31611164

A new mutation in the SQLE gene of Trichophyton mentagrophytes associated to terbinafine resistance in a couple with disseminated tinea corporis.

A Hsieh1, S Quenan1, A Riat2, L Toutous-Trellu1, L Fontao3.   

Abstract

Trichophyton is the most common dermatophyte genus responsible for tinea corporis and topical treatment with terbinafine is effective for limited disease but extensive disease required systemic therapy. Failure of terbinafine therapy in patients infected with T. rubrum or T. mentagrophytes is associated with mutations in the gene encoding squalene epoxidase, the terbinafine target. We report two cases of tinea corporis resistant to systemic terbinafine in a 60-year-old man and his wife, a 51 year-old-woman. Both patients had multiple diffuse erythematous annular scaly plaques and T. mentagrophytes was isolated in culture. Systemic treatment with terbinafine in combination with topical terbinafine and then topical ketoconazole failed to improve the disease after 8 weeks. The broth microdilution tests performed to evaluate the antifungal sensitivity of the T. mentagrophytes isolate revealed a high MIC for terbinafine but a low MIC for posaconazole and itraconazole. An A1223T point mutation leading to a Q408L substitution was identified by DNA sequencing the SQLE gene of the isolate. Itraconazole 200mg daily was then introduced but stopped because of elevated liver transaminases in the man. Finally, complete healing was achieved only six months later for both patients and required a 3 and 2-week regimen of itraconazole with topical eberconazole in the man and woman respectively. We believe that a close monitoring and antifungal susceptibility tests should now be done more systematically in dermatophytic infections that do not respond to conventional treatment as terbinafine resistant strains are likely to spread worlwide.
Copyright © 2019 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Squalene epoxydase; Terbinafine resistance; Tinea corporis; Trichophyton mentagrophytes

Mesh:

Substances:

Year:  2019        PMID: 31611164     DOI: 10.1016/j.mycmed.2019.100903

Source DB:  PubMed          Journal:  J Mycol Med        ISSN: 1156-5233            Impact factor:   2.391


  14 in total

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3.  Antifungal Susceptibility and Mutations in the Squalene Epoxidase Gene in Dermatophytes of the Trichophyton mentagrophytes Species Complex.

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6.  Emergence of Difficult-to-Treat Tinea Corporis Caused by Trichophyton mentagrophytes Complex Isolates, Paris, France.

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7.  Molecular Epidemiology and Antifungal Susceptibility of Trichophyton Isolates in Greece: Emergence of Terbinafine-Resistant Trichophytonmentagrophytes Type VIII Locally and Globally.

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8.  Emergence of Terbinafine Resistant Trichophyton mentagrophytes in Iran, Harboring Mutations in the Squalene Epoxidase (SQLE) Gene.

Authors:  Simin Taghipour; Forough Shamsizadeh; Ivan M Pchelin; Ali Rezaei-Matehhkolaei; Ali Zarei Mahmoudabadi; Reza Valadan; Saham Ansari; Farzad Katiraee; Keyvan Pakshir; Kamiar Zomorodian; Mahdi Abastabar
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Journal:  Med Mycol       Date:  2020-11-10       Impact factor: 4.076

10.  Intrinsic resistance to terbinafine among human and animal isolates of Trichophyton mentagrophytes related to amino acid substitution in the squalene epoxidase.

Authors:  Dominik Łagowski; Sebastian Gnat; Aneta Nowakiewicz; Marcelina Osińska; Mariusz Dyląg
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