Yıl 2025,
Cilt: 9 Sayı: 1, 11 - 15
Ayşegül Akkoyunlu
,
Gorkem Dulger
,
Başaran Dülger
Kaynakça
- Akata I, Ergönül B, Kalyoncu F (2012). Chemical compositions and antioxidant activities of 16 wild edible mushroom species grown in Anatolia. International Journal of Pharmacology 8(2): 134-138.
- Ambikapathy V, Gomathi S, Panneerselvam A (2011). Effect of antifungal activity of some medicinal plants against Pythium debaryanum (Hesse). Asian Journal of Plant Science and Research 1(3): 131-134.
- Broekaert WF, Terras FRG, Cammue BPA, Vanderleyden J (1990). An automated quantitive assay for fungal growth inhibition. FEMS Micro Letters 69(1-2): 55-60.
- Castilho AL, Caleffi-Ferracioli KR, Canezin PH, Siqueira VLD, de Lima Scodro RB, Cadoso RF (2015). Detection of drug susceptibility in rapidly growing mycobacteria by Resazurin broth microdilution assay. Journal of Microbiological Methods 111: 119-121.
- CLSI (2018). Methods for antifungal disk diffusion susceptibility testing of yeasts. 3rd ed.CLSI guideline M44. Wayne, PA: Clinical and Laboratory Standards Institute.
- Emsen B, Türel A, Uzun Y (2019). Effects of Suillus collinitus (Fr.) Kuntze extracts on genotoxicity and proliferation of human lymphocytes. Anatolian Journal of Botany 3(2): 59-63.
- Froufe HJC, Abreu RMV, Ferreira ICFR (2011). QCAR models to predict wild mushrooms radical scavenging activity, reducing power and lipid peroxidation inhibition. Chemometrics and Intelligent Laboratory Systems 109(2): 192-196.
- Gupta C, Das S, Gaurav V, Singh PK, Rai G, Datt S, Tigga RA, Pandhi D, Bhattacharya SN, Ansari MA, Dar SA (2023). Review on host-pathogen interaction in dermatophyte infections. Journal of Medical Mycology 33: 101331.
- Hamers V, Huguet C, Bourjot M, Urbain A (2020). Antibacterial compounds from mushroom: a lead to fight ESKAPEE Pathogenic Bacteria? Planta Medica 87(5): 351-367.
- Heleno SA, Barros L, Sousa MJ, Martins A, Ferreira ICFR (2010). Tocopherols composition of Portuguese wild mushrooms with antioxidant capacity. Food Chemistry 119(4): 1443-1450.
- Holder IA, Boyce ST (1994). Agar well diffusion assay testing of bactericidal susceptibility to various antimicrobials in concentrations non-toxic for human cells in culture. Burns 20(5): 426-429.
- Jamuna S, Subramaniam P, Karthika K (2013). In vitro antifungal activity of leaf and root extracts of the medicinal plant, Hypochaeris radicata. International Journal of Pharmacy and Pharmaceutical Sciences 5(3): 758-761.
- Keller KA (2012). Therapeutic review: terbinafine. Journal of Exotic Pet Medicine 21(2): 181-185.
- Koneman EW, Allen SD, Janda WN, Schreckenber PC, Win WC (1997). Antimicrobial susceptibility testing. In Koneman EW, Allen SD, Janda WM, Schreckenberger PC, Winn, Jr WC (eds.) Color Atlas and Textbook of Diagnostic Microbiology (5th ed) Philadelphia: Lippincott. Pp. 785-856.
- Kumar K, Mehra R, Guiné RPF, Lima MJ, Kumar N, Kaushik R, Ahmed N, Yadav AN, Kumar H (2021). Edible mushrooms: A comprehensive review on bioactive compounds with health benefits and processing aspects. Foods 10(12): 2996.
- Moreno-Sabater A, Normand AC, Bidaud AL., Cremer G, Foulet F, Brun S, Bonnal C, Ait-Ammar N, Jabet A, Ayachi A, Piarroux R, Botterel F, Houzѐ S, Desoubeaux G, Hennequin C, Dannaoui E (2022). Terbinafine resistance in dermatophytes: a French multicenter prospective study. Journal of Fungi 8(3): 220.
- Shikwambana N, Mamokone M (2020). A survey of antifungal activity of selected south African plant species used for the treatment of skin infections. Natural Product Communications 15(5): 1-10.
- Watling R, Hills AE (2005). British Fungus Flora. Agarics and Boleti 1. Boletes and their allies. Edinburgh: Royal Botanic Garden.
- Vaz JA, Ferreira ICFR, Tavares C, Almeid, GM, Martins A, Helena Vasconcelos M (2012). Suillus collinitus methanolic extract increases p53 expression and causes cell cycle arrest and apoptosis in a breast cancer cell line. Food Chemistry 135(2): 596-602.
- Yamac M, Bilgili F (2006). Antimicrobial activities of fruit bodies and/or mycelial cultures of some mushroom isolates. Pharmaceutical Biology 44(9): 660-667.
Evaluation of antifungal activities of the ethalolic extract of the macrofungus Suillus collinitus against dermatophytes
Yıl 2025,
Cilt: 9 Sayı: 1, 11 - 15
Ayşegül Akkoyunlu
,
Gorkem Dulger
,
Başaran Dülger
Öz
In this study, the ethanolic crude extracts obtained from the macrofungus Suillus collinitus (Fr.) O. Kuntze (Suillaceae, Bolatales) were investigated for their antifungal activities against dermatophytes such as the isolates Microsporum gypseum, Trichophyton rubrum and Epidermophyton floccosum by the agar well diffusion method as well as tube dilution method. The ethanol extracts have a strong effect with mean values zone of inhibition at different concentrations and a wide zone of inhibition was determined at 1500 mg/mL (20.8 mm) for M. gypseum, (18.2 mm) for T. rubrum and (16.8 mm) for E. floccosum. MIC of M. gyspseum at 50 µg/mL, MIC of T. rubrum at 60 µg/mL and E. floccosum at 70 µg/mL were observed, respectively. Terbinafine as the comparison antifungal agent gave MIC values between 10 µg/mL for E. floccosum and T. rubrum and 20 µg/mL for M. gypseum. These findings against dermatophytes support our observations regarding the use of this macrofungus among the public. Besides, the findings of this screening study are a preliminary step to further pharmaceutical researches on the relevant macrofungus in the future.
Kaynakça
- Akata I, Ergönül B, Kalyoncu F (2012). Chemical compositions and antioxidant activities of 16 wild edible mushroom species grown in Anatolia. International Journal of Pharmacology 8(2): 134-138.
- Ambikapathy V, Gomathi S, Panneerselvam A (2011). Effect of antifungal activity of some medicinal plants against Pythium debaryanum (Hesse). Asian Journal of Plant Science and Research 1(3): 131-134.
- Broekaert WF, Terras FRG, Cammue BPA, Vanderleyden J (1990). An automated quantitive assay for fungal growth inhibition. FEMS Micro Letters 69(1-2): 55-60.
- Castilho AL, Caleffi-Ferracioli KR, Canezin PH, Siqueira VLD, de Lima Scodro RB, Cadoso RF (2015). Detection of drug susceptibility in rapidly growing mycobacteria by Resazurin broth microdilution assay. Journal of Microbiological Methods 111: 119-121.
- CLSI (2018). Methods for antifungal disk diffusion susceptibility testing of yeasts. 3rd ed.CLSI guideline M44. Wayne, PA: Clinical and Laboratory Standards Institute.
- Emsen B, Türel A, Uzun Y (2019). Effects of Suillus collinitus (Fr.) Kuntze extracts on genotoxicity and proliferation of human lymphocytes. Anatolian Journal of Botany 3(2): 59-63.
- Froufe HJC, Abreu RMV, Ferreira ICFR (2011). QCAR models to predict wild mushrooms radical scavenging activity, reducing power and lipid peroxidation inhibition. Chemometrics and Intelligent Laboratory Systems 109(2): 192-196.
- Gupta C, Das S, Gaurav V, Singh PK, Rai G, Datt S, Tigga RA, Pandhi D, Bhattacharya SN, Ansari MA, Dar SA (2023). Review on host-pathogen interaction in dermatophyte infections. Journal of Medical Mycology 33: 101331.
- Hamers V, Huguet C, Bourjot M, Urbain A (2020). Antibacterial compounds from mushroom: a lead to fight ESKAPEE Pathogenic Bacteria? Planta Medica 87(5): 351-367.
- Heleno SA, Barros L, Sousa MJ, Martins A, Ferreira ICFR (2010). Tocopherols composition of Portuguese wild mushrooms with antioxidant capacity. Food Chemistry 119(4): 1443-1450.
- Holder IA, Boyce ST (1994). Agar well diffusion assay testing of bactericidal susceptibility to various antimicrobials in concentrations non-toxic for human cells in culture. Burns 20(5): 426-429.
- Jamuna S, Subramaniam P, Karthika K (2013). In vitro antifungal activity of leaf and root extracts of the medicinal plant, Hypochaeris radicata. International Journal of Pharmacy and Pharmaceutical Sciences 5(3): 758-761.
- Keller KA (2012). Therapeutic review: terbinafine. Journal of Exotic Pet Medicine 21(2): 181-185.
- Koneman EW, Allen SD, Janda WN, Schreckenber PC, Win WC (1997). Antimicrobial susceptibility testing. In Koneman EW, Allen SD, Janda WM, Schreckenberger PC, Winn, Jr WC (eds.) Color Atlas and Textbook of Diagnostic Microbiology (5th ed) Philadelphia: Lippincott. Pp. 785-856.
- Kumar K, Mehra R, Guiné RPF, Lima MJ, Kumar N, Kaushik R, Ahmed N, Yadav AN, Kumar H (2021). Edible mushrooms: A comprehensive review on bioactive compounds with health benefits and processing aspects. Foods 10(12): 2996.
- Moreno-Sabater A, Normand AC, Bidaud AL., Cremer G, Foulet F, Brun S, Bonnal C, Ait-Ammar N, Jabet A, Ayachi A, Piarroux R, Botterel F, Houzѐ S, Desoubeaux G, Hennequin C, Dannaoui E (2022). Terbinafine resistance in dermatophytes: a French multicenter prospective study. Journal of Fungi 8(3): 220.
- Shikwambana N, Mamokone M (2020). A survey of antifungal activity of selected south African plant species used for the treatment of skin infections. Natural Product Communications 15(5): 1-10.
- Watling R, Hills AE (2005). British Fungus Flora. Agarics and Boleti 1. Boletes and their allies. Edinburgh: Royal Botanic Garden.
- Vaz JA, Ferreira ICFR, Tavares C, Almeid, GM, Martins A, Helena Vasconcelos M (2012). Suillus collinitus methanolic extract increases p53 expression and causes cell cycle arrest and apoptosis in a breast cancer cell line. Food Chemistry 135(2): 596-602.
- Yamac M, Bilgili F (2006). Antimicrobial activities of fruit bodies and/or mycelial cultures of some mushroom isolates. Pharmaceutical Biology 44(9): 660-667.