Determination of Changing Expression of miR-212 and EGFR Genes

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Skin infections with dermatophytes are common in the world and are called Tinea. As an anthropophilic fungus, Trichophyton rubrum is the most frequent cause of Tinea in the world. EGFR gene as an epidermal growth factor receptor has been shown to prevent the presence and colonization of dermatophytes on human skin. Inhibition of EGFR gene when confronting the dermatophyte leads to dermatophytosis and will have a direct effect on the presence or absence of AMPs in dermatophyte-infected keratinocytes. EGFR-related AMPs that help the host control and inhibit fungal growth or lead to disease. MiR-212 in tissue samples infected with Trichophyton rubrum dermatophyte significantly reduced the expression of EGFR gene, and the expression of miR-212 gene increased by about eight fold compared to that of EGFR gene. On the other hand, in tissue samples used as control, the expression of miR-212 was much less1 than that of EGFR gene, so the subject has been able to resist the invasion of T. rubrum in the peripheral areas of the lesion due to the presence of EGFR gene and consequent presence of AMPs.

Autorentext

Master en Ciencias Micología Médica, Universidad de Ciencias Médicas de Kerman, tiene un artículo ISI: Determinación de los cambios en la expresión de los genes MIR-212 y EGFR en muestras clínicas... . Empleado de un laboratorio de diagnóstico médico durante 17 años, Universidad de Ciencias Médicas de Irán Y actualmente el supervisor del laboratorio.

Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Autor Maryam Esfidani
    • Titel Determination of Changing Expression of miR-212 and EGFR Genes
    • Veröffentlichung 04.12.2020
    • ISBN 6203029335
    • Format Kartonierter Einband
    • EAN 9786203029338
    • Jahr 2020
    • Größe H220mm x B150mm x T6mm
    • Untertitel Determination of Changing Expression of miR-212 and EGFR Genes in Clinical Samples of Trichophyton rubrum dermatophyte
    • Gewicht 143g
    • Genre Medizin
    • Anzahl Seiten 84
    • Herausgeber LAP LAMBERT Academic Publishing
    • GTIN 09786203029338

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