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1.
Braz. j. infect. dis ; 21(1): 79-87, Jan.-Feb. 2017. tab, graf
Article in English | LILACS | ID: biblio-839188

ABSTRACT

Abstract The current increment of invasive fungal infections and the availability of new broad-spectrum antifungal agents has increased the use of these agents by non-expert practitioners, without an impact on mortality. To improve efficacy while minimizing prescription errors and to reduce the high monetary cost to the health systems, the principles of pharmacokinetics (PK) and pharmacodynamics (PD) are necessary. A systematic review of the PD of antifungals agents was performed aiming at the practicing physician without expertise in this field. The initial section of this review focuses on the general concepts of antimicrobial PD. In vitro studies, fungal susceptibility and antifungal serum concentrations are related with different doses and dosing schedules, determining the PD indices and the magnitude required to obtain a specific outcome. Herein the PD of the most used antifungal drug classes in Latin America (polyenes, azoles, and echinocandins) is discussed.


Subject(s)
Humans , Antifungal Agents/pharmacokinetics , Polyenes/therapeutic use , Polyenes/pharmacokinetics , Aspergillosis/metabolism , Aspergillosis/drug therapy , Azoles/therapeutic use , Azoles/pharmacokinetics , Triazoles/therapeutic use , Triazoles/pharmacokinetics , Candidiasis/metabolism , Candidiasis/drug therapy , Microbial Sensitivity Tests , Area Under Curve , Dose-Response Relationship, Drug , Echinocandins/therapeutic use , Echinocandins/pharmacokinetics , Latin America , Antifungal Agents/therapeutic use
2.
Braz. j. microbiol ; 47(4): 911-916, Oct.-Dec. 2016. tab
Article in English | LILACS | ID: biblio-828186

ABSTRACT

Abstract Objective Candida albicans is the primary causative agent of oral candidosis, and one of its key virulent attributes is considered to be its ability to produce extracellular phospholipases that facilitate cellular invasion. Oral candidosis can be treated with polyenes, and azoles, and the more recently introduced echinocandins. However, once administered, the intraoral concentration of these drugs tend to be sub-therapeutic and rather transient due to factors such as the diluent effect of saliva and cleansing effect of the oral musculature. Hence, intra-orally, the pathogenic yeasts may undergo a brief exposure to antifungal drugs. We, therefore, evaluated the phospholipase production of oral C. albicans isolates following brief exposure to sub-therapeutic concentrations of the foregoing antifungals. Materials and methods Fifty C. albicans oral isolates obtained from smokers, diabetics, asthmatics using steroid inhalers, partial denture wearers and healthy individuals were exposed to sub-therapeutic concentrations of nystatin, amphotericin B, caspofungin, ketoconazole and fluconazole for one hour. Thereafter the drugs were removed and the phospholipase production was determined by a plate assay using an egg yolk-agar medium. Results The phospholipase production of these isolates was significantly suppressed with a percentage reduction of 10.65, 12.14, 11.45 and 6.40% following exposure to nystatin, amphotericin B, caspofungin and ketoconazole, respectively. This suppression was not significant following exposure to fluconazole. Conclusions Despite the sub-therapeutic, intra oral, bioavailability of polyenes, echinocandins and ketoconazole, they are likely to produce a persistent antifungal effect by suppressing phospholipase production, which is a key virulent attribute of this common pathogenic yeast.


Subject(s)
Humans , Phospholipases/biosynthesis , Candida albicans/drug effects , Candida albicans/metabolism , Candidiasis, Oral/microbiology , Candidiasis, Oral/drug therapy , Antifungal Agents/pharmacology , Polyenes/therapeutic use , Polyenes/pharmacology , Azoles/therapeutic use , Azoles/pharmacology , Candida albicans/isolation & purification , Candida albicans/pathogenicity , Smoking , Microbial Sensitivity Tests , Dentures , Virulence Factors , Diabetes Mellitus , Enzyme Activation , Extracellular Space , Echinocandins/pharmacology , Antifungal Agents/therapeutic use
4.
Rev. bras. oftalmol ; 72(2): 132-141, mar.-abr. 2013. ilus, tab
Article in Portuguese | LILACS | ID: lil-678383

ABSTRACT

O tratamento das infecções oculares por fungos representa um desafio à prática oftalmológica. Para obtermos resposta terapêutica adequada, além do uso da droga correta, é necessária a administração desta de forma eficaz. Este manuscrito reúne informações a respeito das principais drogas antifúngicas utilizadas em infecções oculares, suas concentrações e principais vias de administração.


Treatment of fungal eye infections represents a challenge to the ophthalmology practice. For an adequate therapeutic response, besides correct drug choice, it is necessary an effectively administration. This script gathers information about the major antifungal drugs used in eye infections, their concentrations and main administration routes.


Subject(s)
Humans , Antifungal Agents/administration & dosage , Antifungal Agents/therapeutic use , Drug Interactions , Eye Infections, Fungal/drug therapy , Azoles/administration & dosage , Azoles/therapeutic use , Echinocandins/administration & dosage , Echinocandins/therapeutic use , Pyrimidines/administration & dosage , Pyrimidines/therapeutic use , Polyenes/administration & dosage , Polyenes/therapeutic use
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