In vitro susceptibility of mycelial and yeast forms of Penicillium marneffei to amphotericin B, fluconazole, 5-fluorocytosine and itraconazole. 1993

A S Sekhon, and A K Garg, and A A Padhye, and Z Hamir
National Centre for Human Mycotic Diseases, University of Alberta, Edmonton, Canada.

The mycelial (25 degrees C) and yeast-like (37 degrees C) forms of Penicillium marneffei clinical and type strains were investigated for their in vitro susceptibility to amphotericin B (AmB), 5-fluorocytosine (5-FC), fluconazole (FLU) and itraconazole (ITZ), using Bacto antibiotic medium 3, yeast-nitrogen, Sabouraud's dextrose (pH 5.7) and high resolution (pH 7.1) broth media (1ml/tube), respectively. Results indicated that the minimal inhibitory and minimal fungicidal concentrations (MICs and MFCs) for the mycelial cultures of P. marneffei to AmB were in the range 0.78-1.56 and 0.78-3.125 micrograms/ml, respectively, as against 3.125-25 micrograms (MICs) for the yeast form cultures. The MFCs to AmB for the yeast form were one dilution higher. The MICs to FLU were generally lower for the yeast form (6.25-25 micrograms) than the mycelial form (25-50 micrograms/ml), whereas MFCs for the mycelial cultures were > 100 micrograms as compared to 6.25-100 micrograms for their yeast form. The MICs for the mycelial form to 5-FC ranged from < 0.195-0.39 microgram. Higher MICs (6.25 micrograms) were recorded for their yeast form. The MFCs to 5-FC for the yeast form were 25-100 micrograms/ml. The MICs for the mycelial form to ITZ ranged from < 0.195 to 3.125 micrograms/ml. Higher values (< 0.195-50 micrograms) were recorded for their yeast-like form. The MFCs to ITZ for mycelial and yeast forms ranged from < 0.195-0.39 and 25-100 micrograms/ml, respectively. Results indicate that P. marneffei's yeast form is more sensitive to FLU and ITZ (8 of 10 strains) while the mycelial form displayed greater susceptibility to AmB and 5-FC. The MICs for ITZ remained steady in SD medium, pH 5.7 to 7.1. However, some strains gave higher MIC values (0.39-1.56 micrograms/ml) when tested in the HR.

UI MeSH Term Description Entries
D008826 Microbial Sensitivity Tests Any tests that demonstrate the relative efficacy of different chemotherapeutic agents against specific microorganisms (i.e., bacteria, fungi, viruses). Bacterial Sensitivity Tests,Drug Sensitivity Assay, Microbial,Minimum Inhibitory Concentration,Antibacterial Susceptibility Breakpoint Determination,Antibiogram,Antimicrobial Susceptibility Breakpoint Determination,Bacterial Sensitivity Test,Breakpoint Determination, Antibacterial Susceptibility,Breakpoint Determination, Antimicrobial Susceptibility,Fungal Drug Sensitivity Tests,Fungus Drug Sensitivity Tests,Sensitivity Test, Bacterial,Sensitivity Tests, Bacterial,Test, Bacterial Sensitivity,Tests, Bacterial Sensitivity,Viral Drug Sensitivity Tests,Virus Drug Sensitivity Tests,Antibiograms,Concentration, Minimum Inhibitory,Concentrations, Minimum Inhibitory,Inhibitory Concentration, Minimum,Inhibitory Concentrations, Minimum,Microbial Sensitivity Test,Minimum Inhibitory Concentrations,Sensitivity Test, Microbial,Sensitivity Tests, Microbial,Test, Microbial Sensitivity,Tests, Microbial Sensitivity
D008828 Microbiological Techniques Techniques used in microbiology. Microbiologic Technic,Microbiologic Technics,Microbiologic Technique,Microbiological Technics,Technic, Microbiologic,Technics, Microbiological,Technique, Microbiologic,Techniques, Microbiologic,Microbiologic Techniques,Microbiological Technic,Microbiological Technique,Technic, Microbiological,Technics, Microbiologic,Technique, Microbiological,Techniques, Microbiological
D010407 Penicillium A mitosporic Trichocomaceae fungal genus that develops fruiting organs resembling a broom. When identified, teleomorphs include EUPENICILLIUM and TALAROMYCES. Several species (but especially PENICILLIUM CHRYSOGENUM) are sources of the antibiotic penicillin. Penicilliums
D010641 Phenotype The outward appearance of the individual. It is the product of interactions between genes, and between the GENOTYPE and the environment. Phenotypes
D005437 Flucytosine A fluorinated cytosine analog that is used as an antifungal agent. 5-Fluorocytosine,Alcobon,Ancobon,Ancotil
D000666 Amphotericin B Macrolide antifungal antibiotic produced by Streptomyces nodosus obtained from soil of the Orinoco river region of Venezuela. Amphocil,Amphotericin,Amphotericin B Cholesterol Dispersion,Amphotericin B Colloidal Dispersion,Fungizone
D000935 Antifungal Agents Substances that destroy fungi by suppressing their ability to grow or reproduce. They differ from FUNGICIDES, INDUSTRIAL because they defend against fungi present in human or animal tissues. Anti-Fungal Agents,Antifungal Agent,Fungicides, Therapeutic,Antibiotics, Antifungal,Therapeutic Fungicides,Agent, Antifungal,Anti Fungal Agents,Antifungal Antibiotics
D015725 Fluconazole Triazole antifungal agent that is used to treat oropharyngeal CANDIDIASIS and cryptococcal MENINGITIS in AIDS. Apo-Fluconazole,Béagyne,Diflucan,Fluc Hexal,FlucoLich,Flucobeta,Fluconazol AL,Fluconazol AbZ,Fluconazol Stada,Fluconazol von ct,Fluconazol-Isis,Fluconazol-ratiopharm,Flunazul,Fungata,Lavisa,Loitin,Neofomiral,Oxifungol,Solacap,Triflucan,UK-49858,Zonal,Apo Fluconazole,Fluconazol Isis,Fluconazol ratiopharm,UK 49858,UK49858
D017964 Itraconazole A triazole antifungal agent that inhibits cytochrome P-450-dependent enzymes required for ERGOSTEROL synthesis. Orungal,R-51211,Sporanox,R 51211,R51211

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