Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Cryptococcus”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,009 records · Page 56Linked to original sources

Synergic inhibitory activity of amphotericin-B and gamma interferon against intracellular Cryptococcus neoformans in murine macrophages.

Cryptococcus neoformans is responsible for pulmonary and meningal infections in HIV patients. The lack of effective cellular cooperation caused by the low level of CD4+ cells, and the resistance of C. neoformans to phagocytosis allows growth and persistence of the yeast in the host. We describe here an in-vitro model of intracellular replication of C. neoformans inside J774-A.1 macrophages, and the determination of the intracellular antifungal activity of amphotericin B and fluconazole alone or in association with IFN-gamma. The maximum inhibitory effect was observed with one MIC of amphotericin B and 100 or 1000 IU/mL of IFN-gamma. amphotericin B alone (at 1 x MIC), or either 1 x or 50 x MIC of fluconazole in normal or IFN-gamma activated macrophages, did not eradicate the ingested yeast. A potential underlying mechanism of the synergy of amphotericin B in IFN-gamma primed macrophages was investigated by measurement of nitrite level and by use of the NO synthase competitive inhibitor, NG-monomethyl L-arginine (NMMA). One MIC of amphotericin B was able to activate the synthesis of nitrogen reactive intermediates in IFN gamma-primed macrophages. NMMA treated infected macrophages responded less well to IFN-gamma priming, resulting in a moderate inhibition in subsequent amphotericin B exposure.

Amphotericin B↗

Combination of 5-flucytosine and capsule-binding monoclonal antibody in the treatment of murine Cryptococcus neoformans infections and in vitro.

The efficacy of combination therapy with 5-flucytosine and an IgG1 monoclonal antibody to Cryptococcus neoformans capsular glucuronoxylomannan was studied in vitro with J774. 16 murine macrophage-like cells and in vivo in murine cryptococcal infection. The combination of 5-flucytosine and IgG1 was more effective in reducing the numbers of C. neoformans colony-forming units in vitro and in vivo than either agent alone.

Animals↗

Antifungal pharmacodynamic characteristics of fluconazole and amphotericin B against Cryptococcus neoformans.

The activity of fluconazole and amphotericin B against three isolates of Cryptococcus neoformans was evaluated, with fluconazole and amphotericin B MICs of 2.0-4.0 mg/L and 1.0 mg/L respectively, using time-kill curve methods. Fluconazole was fungistatic against all isolates tested (<99.9% decrease in cfu from initial inoculum). The fungistatic activity of fluconazole was not enhanced by increasing the concentration of antifungal in solution. In contrast, amphotericin B was markedly fungicidal (> or = 99.9% decrease in cfu from initial inoculum). Both the rate and the extent of amphotericin B activity were enhanced when drug concentration was increased.

Amphotericin B↗

In-vitro susceptibility of Cryptococcus neoformans isolates to fluconazole and itraconazole.

The in-vitro susceptibilities of 143 isolates of Cryptococcus neoformans, collected from British patients between 1994 and 1996, to fluconazole and itraconazole were compared with those of 36 isolates collected between 1971 and 1985, 41 isolates collected between 1986 and 1989, and 43 Ugandan isolates collected in 1996. Testing was done with a broth microdilution method in YNB medium supplemented with glucose, incubation at 30 degrees C for 72 h, and an endpoint of 50% inhibition. The results showed that the MIC ranges, MIC50s and MIC90s of fluconazole and itraconazole for C. neoformans isolates from the UK have remained unchanged despite the recent widespread use of triazoles for long-term maintenance of patients with AIDS-associated cryptococcal meningitis. The MIC ranges, MIC50s and MIC90s of the 43 isolates from untreated Ugandan patients with AIDS were similar to those of the British isolates. Examination of our records for 1994-96 revealed six cases in which a four-fold or greater rise in the MIC of fluconazole was associated with relapsed cryptococcal meningitis.

Acquired Immunodeficiency Syndrome↗

Multi-centre evaluation of the Etest method for antifungal drug susceptibility testing of Candida spp. and Cryptococcus neoformans. BSAC Working Party on Antifungal Chemotherapy.

Ten laboratories tested 18 isolates of Candida spp. and two of Cryptococcus neoformans against amphotericin B, flucytosine, fluconazole and itraconazole on two occasions by the Etest method. Two individuals read each set of results. Of the 18 isolates of Candida spp., five were duplicated, but the participants were not told this. In 40 of the 60 drug-organism combinations studied, at least 80% of the Etest MICs fell within a five-concentration range corresponding to the modal MIC +/- 1 log2 dilution. In five combinations, >50% of the Etest MICs fell outside this five-concentration range. In 17 (85%) of the 20 drug-organism combinations tested in duplicate, at least 80% of the paired Etest results fell within two concentrations of each other (corresponding to one log2 dilution). Overall, 88.5% of the paired Etest results for amphotericin B agreed to within two concentrations, as did 94% of results for flucytosine, 92% for fluconazole and 79% for itraconazole. The broth microdilution MICs of the four antifungal agents for the 15 isolates were measured on five occasions in the Mycology Reference Laboratory, Bristol. In each case, the results fell within a three log2 concentration range. In 24 (40%) of the 60 drug-organism combinations tested, at least 80% of the Etest results fell within the broth microdilution test MIC range, but 27 (45%) showed <50% exact agreement. In 33 (73%) of 45 drug-organism combinations involving flucytosine, fluconazole or itraconazole, at least 80% of the Etest results fell within the same class (susceptible, resistant, or susceptible dependent upon dose) as the broth microdilution results. With fluconazole, the Etest method misclassified three susceptible isolates of Candida spp. as resistant in 1.5-15% of tests. With itraconazole, the Etest misclassified seven susceptible isolates of Candida spp. as resistant in 5-62.5% of tests. The Etest also misclassified both C. neoformans isolates as resistant to flucytosine, fluconazole and itraconazole in 7.5-65% of tests. Our results suggest that the Etest is suitable for routine use with Candida spp. and amphotericin B or flucytosine. It is less reliable for the azoles, and isolates that appear to demonstrate acquired resistance should be retested with well-established reference methods.

Amphotericin B↗

Comparison of a new commercial colorimetric microdilution method with a standard method for in-vitro susceptibility testing of Candida spp. and Cryptococcus neoformans.

The Sensititre Yeast One method (AccuMed International Ltd, East Grinstead, UK) is a microplate-based procedure that incorporates an oxidation-reduction indicator, Alamar Blue, for the in-vitro testing of five antifungal agents (amphotericin B, fluconazole, itraconazole, ketoconazole and flucytosine). We compared this colorimetric method with a standard broth microdilution test, performed according to US National Committee for Clinical Laboratory Standards document M27-A guidelines, for determining the in-vitro susceptibilities of 180 isolates of Candida spp. (50 Candida albicans, 50 Candida glabrata, ten Candida kefyr, 20 Candida krusei, ten Candida lusitaniae, 20 Candida parapsilosis and 20 Candida tropicalis) and 20 isolates of Cryptococcus neoformans. The overall agreement between the results of the two methods (colorimetric MICs within +/- two log2 dilutions of standard MICs) were 99% for amphotericin B, 96.5% for flucytosine, 93% for itraconazole, 91.5% for fluconazole and 85.5% for ketoconazole. The overall levels of agreement between the two methods were > or = 94% for six of the eight species tested, the exceptions being C. neoformans and C. tropicalis where the overall agreement was 89% and 80% respectively. The poorest agreement between the results for individual agents was seen with C. tropicalis and the three azole agents (60-75% of colorimetric MICs within +/- two log2 dilutions of standard MICs), and C. neoformans for ketoconazole (50%). The Yeast One method appears to be a suitable alternative procedure for routine antifungal susceptibility testing of Candida spp. and C. neoformans.

Antifungal Agents↗

In-vitro interactions of itraconazole with flucytosine against clinical isolates of Cryptococcus neoformans.

Treatment failures can occur in AIDS patients infected with Cryptococcus neoformans, despite aggressive antifungal therapy. Combination regimens with additive or synergic drugs could provide additional options for treating cryptococcosis. We studied the effects of itraconazole combined with flucytosine against 16 strains of C. neoformans var. neoformans. Combination therapy revealed different results for the various strains, including synergy (fractional inhibitory concentration (FIC) index 0.5, 63% of the interactions), addition (FIC >0.5 to 1.0, 31% of the interactions) and indifference (FIC >1.0 to <2.0, 6% of the interactions). Antagonism (FIC >2.0) was not observed. The efficacy of combination therapy was confirmed by quantitative cfu and killing curve assays. In particular, killing curves conducted in replicating cells showed that the addition of itraconazole prevented the development of flucytosine-resistant mutants of C. neoformans. These data show that the combination of itraconazole and flucytosine is significantly more active than either drug alone against C. neoformans in vitro.

Antifungal Agents↗

In-vitro and in-vivo activities of SCH56592 against Cryptococcus neoformans.

The in-vitro and in-vivo activities of SCH56592, a triazole antifungal agent, against Cryptococcus neoformans were studied. MIC(90)s for 16 strains of C. neoformans measured by microdilution method (NCCLS M27-A) were 1 mg/L of SCH56592, 16 mg/L of fluconazole, 32 mg/L of flucytosine, and 0.5 mg/L of amphotericin B. In a murine model of pulmonary cryptococcosis, 10 mg/kg of SCH56592 was more effective than fluconazole. The fungal burden of the lung of animals treated with SCH56592 was significantly reduced (7.40 +/- 0.21 log(10) cfu/g), as compared with fluconazole (7.77 +/- 0.07 log(10) cfu/g) and control (7.79 +/- 0.1 log(10) cfu/g) (P < 0.01). For C. neoformans-infected mice following 7 days treatment with 10 mg/kg of SCH56592 there was a higher concentration in lung (3.36 +/- 0.62 ng/ml) than in plasma (2.16 +/- 0.86 ng/mL), and this was maintained for 12 h after administration.

Animals↗

In vitro susceptibility studies of Cryptococcus neoformans isolated from patients with no clinical response to amphotericin B therapy.

The in vitro activities of three antifungal drugs alone and in combination were evaluated against five isolates of Cryptococcus neoformans using time-kill curves (TKC). The isolates were from AIDS patients who had either died or had failed to show a clinical response during amphotericin B (AMB) treatment. AMB, fluconazole (FCZ) and flucytosine (5FC), and combinations of the drugs (AMB plus 5FC, AMB plus rifampicin (RIF) and FCZ plus 5FC), were evaluated. With all five isolates AMB did not show fungicidal activity; instead, a persistent or tolerant effect was observed. Combinations of AMB plus 5FC and AMB plus RIF showed a clear synergic effect, except for one isolate tested with AMB plus RIF. In contrast, the FCZ plus 5FC combination did not inhibit growth of any isolate.

Acquired Immunodeficiency Syndrome↗

In vitro susceptibility of Cryptococcus neoformans isolates to five antifungal drugs using a colorimetric system and the reference microbroth method.

Minimum inhibitory concentrations (MICs) of amphotericin B, 5-flucytosine, fluconazole, itraconazole and ketoconazole were determined against 42 clinical isolates of Cryptococcus neoformans var. neoformans using the Alamar YeastOne colorimetric method and the NCCLS reference microdilution method. No strains with resistance to amphotericin B, itraconazole or ketoconazole were detected with either method. Using the reference method, the MICs of fluconazole were >/= 64 mg/L, whereas using the colorimetric method all MICs were >/=16 mg/L. The MIC values of 5-flucytosine were also higher using the reference method (8-16 mg/L for 32% of isolates) compared with the colorimetric method. The percentage of agreement between the methods, using a difference of two dilutions, was 70.7% for itraconazole, 73.2% for amphotericin B, 80% for fluconazole, 88% for 5-flucytosine and 95% for ketoconazole. Overall, we conclude that for fluconazole and 5-flucytosine, in a low but not insignificant number of isolates, results with the two methods are discordant, some isolates being found sensitive with the colorimetric test, but resistant with the reference method.

Antifungal Agents↗

Lanoconazole, a new imidazole antimycotic compound, protects MAIDS mice against encephalitis caused by Cryptococcus neoformans.

The protective effect of a new antifungal compound, lanoconazole, against Cryptococcus neoformans infection in C57BL/6 mice exposed to LP-BM5 murine leukaemia virus (MuLV) (MAIDS mice) was investigated. Mice were infected intratracheally with C. neoformans, strain 613D, 40 days after infection with LP-BM5 MuLV. They were treated orally with various doses of lanoconazole or with fluconazole 10 mg/kg (a positive control) once daily beginning 1 day after the fungal infection and continuing until the end of the experimental period. The number of C. neoformans cells in the lungs and brains of infected mice was determined. Lanoconazole and fluconazole had a similar inhibitory effect on the growth of C. neoformans in the brains and lungs of normal mice. Whereas lanoconazole inhibited the growth of C. neoformans in the brains and lungs of MAIDS mice, the pathogen grew in the brains of MAIDS mice treated with fluconazole. Lanoconazole reduced the number of C. neoformans in the brains of normal mice treated with a type 2 cytokine mixture, whereas fluconazole did not. A predominance of type 2 T-cell responses was demonstrated in MAIDS mice. Splenic T cells from MAIDS mice, but not those from normal mice, released interleukins 4 and 10 into the culture medium when they were stimulated with an anti-CD3 monoclonal antibody. These results suggest that lanoconazole may have the potential to inhibit the growth of C. neoformans in AIDS patients with a predominance of type 2 T-cell responses.

Animals↗

Susceptibility of Cryptococcus neoformans by the NCCLS microdilution and Etest methods using five defined media.

The susceptibility of 12 isolates of Cryptococcus neoformans to amphotericin B, 5-fluorocytosine, fluconazole, itraconazole and ketoconazole was tested using the NCCLS and Etest methods with yeast nitrogen base (YNB) pH 5.6 and pH 7.0, RPMI MOPS pH 7.0 with and without added glucose (2%) and RPMI buffered with phosphate buffer to pH 7.0. Some isolates yielded poor growth in RPMI MOPS after 72 h. Tests indicated that YNB pH 5.6 was the best medium for 5-fluorocytosine but was unsuitable for ketoconazole. In conclusion, YNB pH 7.0 or RPMI MOPS with 2% glucose can be used with either method.

Amphotericin B↗

Comparison of the Etest and microdilution method for antifungal susceptibility testing of Cryptococcus neoformans to four antifungal agents.

We performed a prospective study to compare the Etest and the microdilution method (NCCLS guidelines) for determining the MICs of fluconazole, itraconazole, flucytosine and amphotericin B for 35 strains of Cryptococcus neoformans. For the microdilution method (MDM) RPMI 1640 medium with 2% glucose was used for fluconazole, itraconazole and flucytosine, and Antibiotic Medium 3 for amphotericin B. For the Etest, RPMI 1640 medium with 2% glucose and solidified with 1.5% agar was used for the four antifungal agents. Amphotericin B was also tested on Antibiotic Medium 3 solidified with 1.5% agar. Fluconazole and flucytosine MICs by the Etest showed good correlation with the broth MDM (81.1 and 89.2% agreement within two dilutions, respectively). With the tested population of itraconazole- and amphotericin B-susceptible isolates, the MIC agreement for itraconazole was 54%; amphotericin B showed the lowest agreement (8.1% on Antibiotic Medium 3 and 13.5% on RPMI).

Amphotericin B↗

Inhibition of H(+)-ATPase-mediated proton pumping in Cryptococcus neoformans by a novel conjugated styryl ketone.

We investigated the in vitro susceptibility of clinical isolates of Cryptococcus neoformans to the novel conjugated styryl ketone NC1175 by broth microdilution. The MIC(90) and the MFC of NC1175 for C. neoformans were 1 and 2 mg/L, respectively. NC1175 at low concentrations (1-4 mg/L) completely inhibited the glucose-induced acidification of the external medium caused by the extrusion of intracellular protons mediated by the plasma membrane located H(+)-ATPase. These data suggest that NC1175 is a fungicidal agent for C. neoformans and its possible cellular target(s) include the H(+)-ATPase.

Antifungal Agents↗

Activity of the new antifungal triazole, posaconazole, against Cryptococcus neoformans.

The new antifungal derivative posaconazole was tested against three clinical isolates of Cryptococcus neoformans var. neoformans using a broth microdilution procedure performed according to the guidelines established by the NCCLS. Posaconazole MICs were 0.125, 0.25 and 1.0 mg/L for isolates 491, 2337 and 486, respectively. To investigate the in vivo activity of this new compound, we established an experimental model of systemic cryptococcosis in CD1 mice by iv injection of cells of each strain of C. neoformans. Low (3 mg/kg/day) and high (10 mg/kg/day) doses of posaconazole were compared with amphotericin B given at 0.3 mg/kg/day for 10 consecutive days. Survival studies showed that all treatment regimens were effective in prolonging the survival of mice infected with C. neoformans 486 (P < 0.001). Only posaconazole at 10 mg/kg and amphotericin B were effective in prolonging the survival in mice infected with C. neoformans 2337 (P from <0.01 to <0.001), while neither agent was effective in mice infected with C. neoformans 491. Tissue burden experiments performed 24 h after the end of therapy revealed that posaconazole at 10 mg/kg was effective at reducing the fungal burden in both lung and brain tissues of all three strains of C. neoformans. In particular, for C. neoformans 491 and 2337 posaconazole was superior to amphotericin B at reducing the fungal burden in the brain (P < 0.05). The efficacy of posaconazole was also confirmed by determining the capsular antigen serum levels of treated mice versus untreated mice. Our study underlines the excellent activity of posaconazole against this pathogenic yeast.

Animals↗

Fluconazole and itraconazole susceptibility of clinical isolates of Cryptococcus neoformans at a tertiary care centre in India: a need for care.

OBJECTIVES: In cryptococcosis, fluconazole is a standard prophylactic, therapeutic and maintenance option, particularly in the expanding HIV/AIDS group. However, its excessive use may lead to resistance in Cryptococcus neoformans. Variations in clinical response to fluconazole have already been noted elsewhere, and cases of post-therapy relapse are not uncommon. To assess azole antifungal susceptibility profiles of clinical cryptococcal isolates in India, the All India Institute of Medical Sciences (AIIMS) has recently initiated preliminary studies using NCCLS M27-A. MATERIALS AND METHODS: Twenty-eight randomly chosen AIIMS clinical isolates (spanning 1997-2000), 16 isolates from other institutions in North India, and six reference strains of C. neoformans were subjected to susceptibility testing to fluconazole and itraconazole. RESULTS: Among clinical isolates, susceptibilities to fluconazole and itraconazole were 84.1% and 93.2%, respectively. MICs for all clinical isolates were 0.25-32 mg/L for fluconazole and <0.03-0.25 mg/L for itraconazole. MIC50 and MIC90 values for fluconazole were 4 and 16 mg/L, respectively, and those for itraconazole were 0.032 and 0.125 mg/L, respectively. Out of 28 AIIMS clinical isolates, 22 had minimum fungicidal concentrations (MFCs) of fluconazole at 128 mg/L. Moderately high fluconazole MICs (16-32 mg/L) were observed in 16% of clinical isolates--probably the first such report from India. MIC/MFC ratios for fluconazole and itraconazole were 1:32 or more in 16 AIIMS clinical isolates, indicating possible azole tolerance. There was good agreement between MIC values obtained by the micro- and macro-broth dilution techniques of M27-A compared in this study. CONCLUSIONS: The observed MIC data warrant continued surveillance of susceptibility values of clinical cryptococcal isolates in India.

Confidence Intervals↗

Increasing in vitro resistance to fluconazole in Cryptococcus neoformans Cambodian isolates: April 2000 to March 2002.

OBJECTIVES: Cryptococcal meningitis is the third-most-common opportunistic infection in HIV patients in Cambodia. Hospitalized patients were given amphotericin B for initial therapy followed by fluconazole for maintenance therapy. The antifungal drug susceptibility of Cryptococcus neoformans isolated from cerebrospinal fluid (CSF) was determined. METHODS: Isolates of C. neoformans were collected during active laboratory-based surveillance, the first batch from April 2000 to March 2001 (134 new cases), the second batch from April 2001 to March 2002 (268 new cases). Etest strips were used to determine the MICs of amphotericin B and fluconazole. The antigenic agglutination slide test was used for serotyping. RESULTS: The MIC(50)s and MIC(90)s of fluconazole changed significantly from year 2000 to 2002; the MIC(50)s increased from 4 to 12 mg/L, and the MIC(90)s from 12 to 96 mg/L. For amphotericin B, the MIC(50)s and MIC(90)s remained stable. Moreover, in the second batch, fluconazole MICs were >/=256 mg/L for 20 isolates. By serotyping, it was found that 98.5% of the isolates were serotype A. CONCLUSIONS: C. neoformans strains isolated from CSF of AIDS patients in Cambodia remain susceptible in vitro to amphotericin B. These strains are less susceptible in vitro to fluconazole, 2.5% being resistant in the first year and 14% in the second year of study. Nevertheless, in vitro resistance of C. neoformans to fluconazole appeared to be linked to extended maintenance treatments.

AIDS-Related Opportunistic Infections↗

Rates of antifungal resistance among Spanish clinical isolates of Cryptococcus neoformans var. neoformans.

OBJECTIVES: Activities in vitro of six antifungal agents were tested against a collection of 317 Cryptococcus neoformans var. neoformans clinical isolates. METHODS: The procedure described in document 7.1 by the European Committee on Antibiotic Susceptibility Testing with minor modifications was employed. RESULTS: Amphotericin B, itraconazole, voriconazole and ravuconazole exhibited a potent activity with geometric mean (GM) MICs under 0.26 mg/L. The GM MIC of flucytosine was 7.33 mg/L and that of fluconazole was 4.16 mg/L. The rates of antifungal resistance were 5.3% for amphotericin B, 0.9% for voriconazole and 3.1% for ravuconazole. Fifteen point eight per cent of strains had itraconazole MICs > or = 1 mg/L, and 46% of strains had flucytosine MICs > or = 8 mg/L. Fluconazole susceptibility (MIC < or = 8 mg/L) stood at 53.4%. CONCLUSIONS: The percentage of fluconazole susceptibility was significantly lower than that in other surveys. Cross-resistance to itraconazole was common (33.8%) but almost the whole collection was susceptible to voriconazole and ravuconazole. These results should be confirmed with prospective and population-based surveillance programmes.

Antifungal Agents↗