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Killing of Candida albicans by human salivary histatin 5 is modulated, but not determined, by the potassium channel TOK1.

Salivary histatin 5 (Hst 5), a potent toxin for the human fungal pathogen Candida albicans, induces noncytolytic efflux of cellular ATP, potassium, and magnesium in the absence of cytolysis, implicating these ion movements in the toxin's fungicidal activity. Hst 5 action on Candida resembles, in many respects, the action of the K1 killer toxin on Saccharomyces cerevisiae, and in that system the yeast plasma membrane potassium channel, Tok1p, has recently been reported to be a primary target of toxin action. The question of whether the Candida homologue of Saccharomyces Tok1p might be a primary target of Hst 5 action has now been investigated by disruption of the C. albicans TOK1 gene. The resultant strains (TOK1/tok1) and (tok1/tok1) were compared with wild-type Candida (TOK1/TOK1) for relative ATP leakage and killing in response to Hst 5. Patch-clamp measurements on Candida protoplasts were used to verify the functional deletion of Tok1p and to provide its first description in Candida. Tok1p is an outwardly rectifying, noisily gated, 40-pS channel, very similar to that described in Saccharomyces. Knockout of CaTOK1 (tok1/tok1) completely abolishes the currents and gating events characteristic of Tok1p. Also, knockout (tok1/tok1) increases residual viability of Candida after Hst 5 treatment to 27%, from 7% in the wild type, while the single allele deletion (TOK1/tok1) increases viability to 18%. Comparable results were obtained for Hst-induced ATP efflux, but quantitative features of ATP loss suggest that wild-type TOK1 genes function cooperatively. Overall, very substantial killing and ATP efflux are produced by Hst 5 treatment after complete knockout of wild-type TOK1, making clear that Tok1p channels are not the primary site of Hst 5 action, even though they do play a modulating role.

Adenosine Triphosphate↗

Genital Candida species detected in samples from women in Melbourne, Australia, before and after treatment with antibiotics.

Vulvovaginal candidiasis (VVC) remains a common cause of morbidity, with three-quarters of women affected during their lifetimes. Use of antibiotics is an acknowledged trigger for VVC, which adversely affects women's physical and emotional health. Knowledge of patterns of genital Candida species-level identification is important for management, as Candida species other than Candida albicans often fail first-line treatment. A community sample of women with no vaginal symptoms, and who were prescribed antibiotics, was recruited into this study, where the incidence of genital colonization by various Candida species was documented, as well as symptoms of VVC plus relevant associations, before and after treatment with antibiotics. Self-collected low vaginal swabs were taken prior to and 8 days after completion of antibiotic treatment, and data on various potential risk factors for VVC were collected simultaneously, with complete data being available for 233 participants. Baseline Candida species colonization was present in 21% of women (95% confidence intervals [CI], 17% to 27%), rising to 37% (95% CI, 31% to 44%) after antibiotic treatment. The primary species detected for either period was C. albicans (73%), with Candida glabrata detected in around 20%. Self-assessed proneness to VVC after antibiotic treatment and baseline colonization with Candida spp. were significantly associated with symptomatic VVC after antibiotic treatment. For microbiologically proven candidiasis, VVC symptoms had a sensitivity of 57% and a specificity of 91%. When physicians prescribe antibiotics, the history of risk of VVC is one issue that physicians should discuss with women, particularly those who are self-identified as being prone to VVC. Furthermore, we recommend that definitive microbiological diagnoses be made for women with recurrent symptoms or those failing initial treatment, to guide appropriate therapy.

Adolescent↗

Determination of MICs of aminocandin for Candida spp. and filamentous fungi.

Candida and Aspergillus spp., as well as other filamentous molds, have increasingly been reported as the causes of severe invasive fungal infections. We evaluated the new echinocandin aminocandin (AMN) for its antifungal activities against a range of fungal pathogens by determination of the MICs for the organisms. The MICs of the comparator drugs amphotericin B, caspofungin, micafungin, and voriconazole were also determined. The MICs of AMN for 25 strains each of non-Candida albicans Candida spp. (including Candida parapsilosis, Candida krusei, Candida guilliermondii, and Candida tropicalis), Aspergillus fumigatus, Scedosporium spp., Fusarium spp., and zygomycetes (including Absidia, Mucor, and Rhizopus spp.) were determined by using the Clinical and Laboratory Standards Institute M27-A2 and M38-A methodologies for yeasts and filamentous molds, respectively. The MIC ranges of AMN for all yeasts were similar (0.03 to 4.0 microg/ml), while the MIC ranges of AMN for filamentous fungi were species specific. AMN demonstrated potent antifungal activity against A. fumigatus, limited activity against Scedosporium spp., and no activity against zygomycetes or Fusarium spp. Our data showed that AMN demonstrated potent antifungal activities against all of the yeasts and Aspergillus isolates tested, suggesting that AMN could be an important addition to our arsenal of antifungals for the treatment of invasive fungal disease.

Antifungal Agents↗

Use of a monoclonal antibody in a dot immunobinding assay for detection of a circulating mannoprotein of Candida spp. in neutropenic patients with invasive candidiasis.

A dot immunobinding assay for the detection of a circulating mannoprotein (MP) antigen of Candida species in the sera of neutropenic patients in a hematological setting is described. The technique is based on the use of a monoclonal antibody which recognizes an oligomannoside epitope shared by distinct MP of pathogenic Candida species. The sensitivity of the assay for antigen detection in serum was between 2 and 5 ng/ml, and MPs from Candida albicans, Candida tropicalis, Torulopsis glabrata, and Candida parapsilosis, but not Candida krusei, could be detected. A retrospective analysis of sera from patients with proven invasive candidiasis versus sera from controls (Candida-colonized and noncolonized subjects) revealed that the novel assay has sufficient sensitivity, specificity, and predictive values to be of potential diagnostic significance.

Antibodies, Monoclonal↗

Oral colonization, phenotypic, and genotypic profiles of Candida species in irradiated, dentate, xerostomic nasopharyngeal carcinoma survivors.

The aim of this study was to investigate oral yeast colonization and oral yeast strain diversity in irradiated (head and neck), dentate, xerostomic individuals. Subjects were recruited from a nasopharyngeal carcinoma clinic and were segregated into group A (age, <60 years [n = 25; average age +/- standard deviation (SD), 48 +/- 6 years; average postirradiation time +/- SD, 5 +/- 5 years]) and group B (age, >/=60 years [n = 8; average age +/- SD, 67 +/- 4 years; average postirradiation time +/- SD, 2 +/- 2 years]) and were compared with age- and sex-matched healthy individuals in group C (age, <60 years [n = 20; average age +/- SD, 44 +/- 12 years] and group D (age, >/=60 years [n = 10; average age, 70 +/- 3 years]). Selective culture of oral rinse samples was carried out to isolate, quantify, and speciate yeast recovery. All test subjects underwent a 3-month comprehensive oral and preventive care regimen plus topical antifungal therapy, if indicated. A total of 12 subjects from group A and 5 subjects from group B were recalled for reassessment of yeast colonization. Sequential (pre- and posttherapy) Candida isolate pairs from patients were phenotypically (all isolate pairs; biotyping and resistotyping profiles) and genotypically (Candida albicans isolate pairs only; electrophoretic karyotyping by pulsed-field gel electrophoresis, restriction fragment length polymorphism [RFLP], and randomly amplified polymorphic DNA [RAPD] assays) evaluated. All isolates were Candida species. Irradiated individuals were found to have a significantly increased yeast carriage compared with the controls. The isolation rate of Candida posttherapy remained unchanged. A total of 9 of the 12 subjects in group A and 3 of the 5 subjects in group B harbored the same C. albicans or Candida tropicalis phenotype at recall. Varying degrees of congruence in the molecular profiles were observed when these sequential isolate pairs of C. albicans were analyzed by RFLP and RAPD assays. Variations in the genotype were complementary to those in the phenotypic characteristics for some isolates. In conclusion, irradiation-induced xerostomia seems to favor intraoral colonization of Candida species, particularly C. albicans, which appeared to undergo temporal modifications in clonal profiles both phenotypically and genotypically following hygienic and preventive oral care which included topical antifungal therapy, if indicated. We postulate that the observed ability of Candida species to undergo genetic and phenotypic adaptation could strategically enhance its survival in the human oral cavity, particularly when salivary defenses are impaired.

Adult↗

Single-nucleotide polymorphisms (SNPs) in human beta-defensin 1: high-throughput SNP assays and association with Candida carriage in type I diabetics and nondiabetic controls.

beta-Defensins are cationic antimicrobial peptides expressed in epithelia. They exhibit antibacterial, antifungal, and antiviral properties. Defensins are a component of the innate immune response, and it has been proposed that they have a protective role in the oral cavity. Previous studies have shown that human beta-defensin 1 (hBD-1) is constitutively expressed in oral epithelial cells but that expression varies between individuals. We tested the hypothesis that genetic variations in defensin peptide expression may be associated with opportunistic infections. This may be critical in the immunocompromised patient population, in which innate immune responses may have a relatively more important role. Oral Candida carriage status and the presence of six single-nucleotide polymorphisms (SNPs) in the DEFB1 gene encoding hBD-1 were evaluated in type I diabetic patients (n = 43) and nondiabetic controls (n = 50). Genomic DNA was obtained from buccal swabs. Portions of the DEFB1 gene were amplified, and each SNP was analyzed by a TaqMan assay, standardized with control DNA of known genotype. Candida carriage status was determined from unstimulated saliva on CHROMagar plating medium. A low level of Candida carriage was defined as < or = 350 CFU/ml. A high level of Candida carriage was seen in 44% of the diabetic subjects but only in 28% of the nondiabetic controls (P < 0.05). C. albicans predominated; however, diabetic subjects, especially those with high levels of carriage, showed an increased proportion of Candida glabrata and C. tropicalis. There was a strong association between an SNP in the 5' untranslated region (C-->G at position -44) and Candida carriage in both groups. Among individuals in the diabetic population who had the SNP allele 2 (G), 58% had low CFU, while 6% had high CFU. The C-->G SNP at position -44 is associated with low levels of Candida carriage. The resultant odd ratios are statistically significant for a protective effect (odd ratios, 25 for diabetic subjects and 8.5 for nondiabetic subjects). These results indicate that genetic variations in the DEFB1 gene encoding hBD-1 may have a major role in mediating and/or contributing to susceptibility to oral infection.

Adolescent↗

Cross-resistance between fluconazole and ravuconazole and the use of fluconazole as a surrogate marker to predict susceptibility and resistance to ravuconazole among 12,796 clinical isolates of Candida spp.

Cross-resistance within a class of antimicrobial agents is a problem that is often encountered with antibacterial agents, and it is also an issue with antifungal agents. A current example is ravuconazole, a new triazole antifungal with an expanded spectrum and potency against Candida spp., Aspergillus spp., and other opportunistic fungal pathogens. The present study addresses the issue of cross-resistance between fluconazole and ravuconazole and the use of fluconazole as a surrogate marker to predict the susceptibility of Candida spp. to ravuconazole. Reference broth microdilution MIC results for 12,796 strains of Candida spp. isolated from more than 200 medical centers worldwide were used. Ravuconazole MICs and tentative interpretive categories (susceptible, </=1 microg/ml; resistant, >/=2 microg/ml) were compared with those of fluconazole by using regression statistics and error rate bounding analyses. For all 12,796 isolates, the absolute categorical agreement rate was 92.5% (rate of false-susceptible results, or very major errors [VME], 0.1%). Ravuconazole was active (MIC, </=1 microg/ml) against 99.9% of the fluconazole-susceptible isolates, 96% of the fluconazole-susceptible dose-dependent isolates, and 49% of the fluconazole-resistant isolates, including 99% of the Candida krusei isolates. Since ravuconazole is 16- to 32-fold more potent than fluconazole, the performance of fluconazole as a surrogate marker for ravuconazole susceptibility was improved by designating those isolates with fluconazole MICs of </=32 microg/ml susceptible to ravuconazole, resulting in a categorical agreement rate of 98.3%, with a VME rate of 0.3% (99 and 0.4%, respectively, when C. krusei was omitted). Cross-resistance between fluconazole and ravuconazole applies most directly to fluconazole-resistant Candida glabrata and is variable among other species of Candida. Fluconazole may serve as a surrogate marker to predict the susceptibility of Candida spp. to ravuconazole.

Antifungal Agents↗

Epidemiology and predictors of mortality in cases of Candida bloodstream infection: results from population-based surveillance, barcelona, Spain, from 2002 to 2003.

We conducted population-based surveillance for Candida bloodstream infections in Spain to determine its incidence, the extent of antifungal resistance, and risk factors for mortality. A case was defined as the first positive blood culture for any Candida spp. in a resident of Barcelona, from 1 January 2002 to 31 December 2003. We defined early mortality as occurring between days 3 to 7 after candidemia and late mortality as occurring between days 8 to 30. We detected 345 cases of candidemia, for an average annual incidence of 4.3 cases/100,000 population, 0.53 cases/1,000 hospital discharges, and 0.73 cases/10,000 patient-days. Outpatients comprised 11% of the cases, and 89% had a central venous catheter (CVC) at diagnosis. Overall mortality was 44%. Candida albicans was the most frequent species (51% of cases), followed by Candida parapsilosis (23%), Candida tropicalis (10%), Candida glabrata (8%), Candida krusei (4%), and other species (3%). Twenty-four isolates (7%) had decreased susceptibility to fluconazole (MIC > or = 16 microg/ml). On multivariable analysis, early death was independently associated with hematological malignancy (odds ratio [OR], 3.5; 95% confidence interval [CI], 1.1 to 10.4). Treatment with antifungals (OR, 0.05; 95% CI, 0.01 to 0.2) and removal of CVCs (OR, 0.3; 95% CI, 0.1 to 0.9) were protective factors for early death. Receiving adequate treatment, defined as having CVCs removed and administration of an antifungal medication (OR, 0.2; 95% CI, 0.08 to 0.8), was associated with lower odds of late mortality; intubation (OR, 7.5; 95% CI, 2.6 to 21.1) was associated with higher odds. The incidence of candidemia and prevalence of fluconazole resistance are similar to other European countries, indicating that routine antifungal susceptibility testing is not warranted. Antifungal medication and catheter removal are critical in preventing mortality.

Adolescent↗

Use of fluorescent probes to determine MICs of amphotericin B and caspofungin against Candida spp. and Aspergillus spp.

We investigated the utility of mechanism-based fluorescent probes for determination of MICs (FMICs) of amphotericin B and caspofungin against Candida spp. and Aspergillus spp. Amphotericin B was selected as a membrane-active antifungal agent, and caspofungin was selected as a cell wall-active agent. FMICs were also compared to the MIC determined by CLSI (formerly NCCLS) methods. Five isolates per species of Candida albicans, Candida glabrata, Candida parapsilosis, Aspergillus fumigatus, and Aspergillus terreus were studied with either amphotericin B or caspofungin. The fluorescent probes, carboxyfluorescein diacetate (CFDA) for cytoplasmic esterase activity and dihexyloxacarbocyanine iodide (DiOC6) for cell membrane potential, were each added to their respective plates. MICs and FMICs were determined in at least three separate experiments (in duplicate). Fluorescence was measured using a 96-well plate fluorometer. For amphotericin B and caspofungin, the FMIC end point was the lowest concentration of drug at which the percent growth inhibition from treated organisms versus control organisms displayed 80% inhibition for amphotericin B and 50% inhibition for caspofungin as measured by a fluorescent signal. The MIC for amphotericin B was defined as the lowest concentration of antifungal displaying no visible growth for both Aspergillus and Candida spp. The MIC for caspofungin was the lowest concentration of drug that displayed a minimum effective concentration for Aspergillus spp. For Candida spp., the MIC for caspofungin was defined as the concentration at which the antifungal agent significantly inhibits the organism. The FMICs of both antifungals, as measured by the DiOC6 membrane probe, showed good agreement (83% to 100%), within one well dilution, with the MICs against amphotericin B and caspofungin for all species. Also, the FMICs measured by the CFDA cytoplasmic esterase probe reflecting damage due to cell wall or cell membrane showed strong agreement (79 to 100%) with the MICs of both amphotericin B and caspofungin for all species. There was no significant difference in comparisons of MIC and FMIC values (P > or = 0.05). The use of fluorescent probes provides a mechanism-based method of determination of MICs of amphotericin B and caspofungin against Candida spp. and Aspergillus spp. that correlates well with standard methods.

Amphotericin B↗

Differentiation between women with vulvovaginal symptoms who are positive or negative for Candida species by culture.

OBJECTIVE: To investigate whether clinical criteria could differentiate between women with vulvovaginitis who were culture positive or negative for vaginal Candida species. METHODS: Vulvovaginal specimens were obtained from 501 women with a vaginal discharge and/or pruritus. Clinical information and wet mount microscopy findings were obtained. All specimens were sent to a central laboratory for species identification. RESULTS: A positive culture for Candida species was obtained from 364 (72.7%) of the specimens. C. albicans was identified in 86.4% of the positive cultures, followed by C. glabrata in 4.5%, C parapsilosis in 3.9%, C. tropicalis in 2.7% and other Candida species in 1.4%. Women with a positive Candida culture had an increased utilization of oral contraceptives (26.1% vs. 16.8%, p = 0.02) and antibiotics (8.2% vs. 0.7%, p = 0.001), and were more likely to be pregnant (9.1% vs. 3.6%, p = 0.04) than the culture-negative women. Dyspareunia was more frequent in women without Candida (38.0% vs. 28.3%, p = 0.03) while vaginal erythema (p = 0.01) was more common in women with a positive Candida culture. CONCLUSIONS: Although quantitative differences were observed, the presence of vaginal Candida vulvovaginitis cannot be definitively identified by clinical criteria.

Adult↗

Initiation of T-helper cell immunity to Candida albicans by IL-12: the role of neutrophils.

The Th1/Th2 paradigm of acquired immunity is proving essential for a better understanding of immunoregulation in candidiasis and perhaps other fungal infections, conditions that may be life-threatening in humans and difficult to control by chemotherapy alone, especially in neutropenic and severely immunocompromised patients. In its basic conception applied to Candida infection in mice, this paradigm calls for: (i) an association between Th1 responses and the onset/maintenance of phagocyte-dependent immunity, critical for opposing infectivity of the commensal, focusing an infection, and clearing the yeast from infected tissue; (ii) the ability of the yeast to activate Th2 response as an evasive strategy; (iii) the reciprocal regulation of Th1 and Th2 responses, resulting in a dynamic balance between these two types of reactivity. This balance, in concert with a variety of environmental factors, may regulate the status of the yeast as a commensal or pathogen in the mucosal tissue of colonized humans, but may also determine the outcome of deep-seated systemic infections once hematogenous dissemination of the yeast has occurred. An important corollary of this hypothesis may be the possible combined effects on Th immunity of Candida carriage/infection and various disease states. While immune deficiency or dysregulation, resulting in an altered cytokine balance as may occur in AIDS, can reasonably be expected to increase local infectivity of the yeast, it is even more intriguing that antifungal chemotherapy will resolve some of the unusual skin (atopic dermatitis-like) disorders frequently observed in this clinical setting, patients with AIDS. Besides, an immunopathologic role for Candida has been suggested for atopic dermatitis, atopy, and other conditions, overtly associated or not with Candida. Thus, the Th cell dichotomy to Candida may have important implications not only for regulation of the balance between commensalism and infection, but may also contribute to the onset or dominance of Th2 responses in other disease states. A similar example, although with different effects, may be provided by the temporary improvement seen in atopic dermatitis patients in concomitance with acute severe infections, an effect that has been proposed to result from transient down-regulation of the predominant Th2 cell reactivity. With a view to either controlling Candida infections or opposing Candida-related immunopathology, the promotion of yeast-specific Th1 responses appears to be a promising immunotherapeutic approach. This, in principle, could be achieved by subtraction of Th2 cytokines or by administration of Th1-promoting cytokines. However, our initial studies with exogenous IL-12 were unsuccessful, suggesting that the recombinant cytokine: (i) is unable to oppose Th2 differentiation driven in vivo by IL-4/IL-10; (ii) may induce endogenous IL-10 production as a regulatory response, and (iii) may potentate local inflammatory responses in gastrointestinal infection or even trigger IFN-gamma-dependent mechanisms of fungal septic shock.. More recent studies seem to provide encouraging results, at least under specific conditions of testing. In acute candidemia, neutrophils appear to be a major source of the directive cytokines, IL-12 and IL-10, thus contributing to the selection of Th1 and Th2 cell responses to LVS or virulent infection, respectively. Neutrophils may also be an important source of IL-10 released in response to challenge with exogenous IL-12. As a result, the Th1-promoting role of IL-12 may be largely unopposed (by IL-10 induction) in neutropenic mice, which would otherwise succumb to LVS challenge. These animals are, in fact, cured by replacement therapy with IL-12 and acquire durable, Th1-associated anticandidal protection. These findings may be very important for immunotherapy of fungal infections in humans. Neutropenic patients are those at the highest risk for developing systemic candidal infections. (ABSTRACT TRUNCATED)

Animals↗

In vitro susceptibility testing of Candida isolates from clinical specimens to four antifungal agents.

A total of 231 isolates of Candida species including 163 of Candida albicans (132 of serotype A and 31 of serotype B), 42 of Candida tropicalis, 17 of Candida glabrata, 7 of Candida parapsilosis and 2 of Candida krusei were collected from clinical specimens in two medical centers, one in Japan and the other in the United States. The in vitro antifungal activities of amphotericin B, 5-fluorocytosine, miconazole and fluconazole were evaluated for the above isolates by means of a photo-read broth microdilution method for determination of the 30% inhibitory concentration (IC30). The results showed that IC30 values of fluconazole were generally great compared with those of the other drugs, regardless of Candida species. The isolates of C. albicans serotype B showed a significantly lessened susceptibility to 5-fluorocytosine compared with those of serotype A (p less than 0.01). This method has the advantage of objective measurement, thus minimizing observer variability as compared with the agar dilution test.

Amphotericin B↗

Rapid recruitment of late endosomes and lysosomes in mouse macrophages ingesting Candida albicans.

Candida albicans is an important opportunistic pathogen, whose interaction with cells of the immune system, in particular macrophages (MO), is poorly understood. In order to learn more about the nature of the infectious mechanism, internalisation of Candida albicans was studied in mouse MO by confocal immunofluorescence and electron microscopy in comparison with latex beads of similar size, which were coated with mannosyl-lipoarabinomannan (ManLAM) to target the MO mannose receptor (MR). Uptake of Candida yeasts had characteristics of phagocytosis, required intact actin filaments, and depended on the activity of protein kinase C (PKC). Candida phagosomes rapidly attracted lysosome-associated membrane protein (Lamp)-rich vacuoles, indicative of fusion with late endosomes and lysosomes. Rapid recruitment of late endosomes and lysosomes could be observed regardless of heat-inactivation or serum-opsonisation of Candida, but did not follow binding of the mannosylated-beads to MO, which suggest that this phenotype is not MR-specific. The yeasts developed germ tubes within phagolysosomes, distended their membranes and escaped, destroying the non-activated MO. The filamentous form of Candida could penetrate intact MO even when phagocytosis was blocked, and also attracted Lamp-rich organelles. Inhibition of lysosomal acidification and associated lysosomal fusion reduced germ tube formation of Candida within the phagolysosomes. These data suggest that rapid recruitment of late endocytic/lysosomal compartments by internalizing C. albicans favours survival and virulence of this pathogen.

Acids↗

Differentiation of Candida species obtained from nosocomial candidemia using RAPD-PCR technique.

Thirteen strains of the genus Candida were isolated from catheter, urine and surgical wounds from individual patients of the Santa Casa de Misericórdia, Belo Horizonte, MG, Brazil. Ten strains were characterized as Candida albicans, two as Candida glabrata, and one as Candida parapsilosis. Isolates were evaluated for molecular relatedness by random amplified polymorphic DNA technique using 15 primers. The analysis of the genomic DNA obtained revealed a low intraspecific polymorphism and did not allow for the differentiation between strains of the same species obtained from distinct clinical sources (catheter, urine and surgical wounds). The RAPD profiles generated were able to differentiate among the species of Candida albicans, Candida parapsilosis and Candida glabrata strains isolated in this study.

Candida↗

Candida albicans levels in patients with Sjögren's syndrome before and after long-term use of pilocarpine hydrochloride: a pilot study.

OBJECTIVE: The purpose of this study was to compare the quantities of oral Candida albicans in patients with primary and secondary Sjögren's syndrome before and after the use of orally administered pilocarpine hydrochloride for 1 year. METHOD AND MATERIALS: Twelve female subjects with primary (n = 4) and secondary (n = 8) Sjögren's syndrome (mean age +/- SEM = 56.7 +/- 5.7 years) were enrolled in the study, after meeting rigid enrollment criteria. Oropharyngeal collection of samples and culturing was performed on each subject. Cultures specific for Candida albicans were plated into a culture media tube using the Oricult kit and also by serial dilutions and plating by a streptomycin-vancomycin technique. Cultures were incubated for 48 hours at 37 degrees C. The subjects used 5 mg of pilocarpine hydrochloride, administered orally three times daily, for 1 year, after which both of the Candida cultures were repeated. None of the subjects used antifungal medications, none smoked, and all were dentate. RESULTS: There was a significant difference in the prevalence of Candida after the use of pilocarpine hydrochloride for both groups. At the start of the study, 75% of all subjects were positive for Candida. Following the use of pilocarpine, 25% had positive cultures. There was also a decrease in the prevalence of clinical manifestations of infection from 75% of subjects to 25%. There was a significant decrease in the numbers of Candida cultured following the use of pilocarpine. CONCLUSION: Long-term administration of pilocarpine hydrochloride resulted in a significant reduction in Candida albicans colonization in patients with primary or secondary Sjögren's syndrome.

Adult↗

Growth of the fungal pathogen Candida in parotid saliva of patients with burning mouth syndrome.

Subclinical Candida infection has been suggested as one of the aetiological factors in patients with burning mouth syndrome (BMS). In order to investigate the possible factors which contribute to the relatively high isolation rate of Candida in BMS, parotid saliva samples (20 in toto) from patients with this condition were collected and the growth of Candida in each sample dynamically observed using a computerized turbidometric assay system. A total of thirteen parotid saliva samples obtained from healthy individuals served as normal controls. The results showed no significant growth differential within the test and control saliva samples, when a single isolate each of Candida albicans and Candida tropicalis were cultured for 24 h, at 37 degrees C. A single isolate of Candida glabrata tended to grow better in the saliva from BMS patients than the controls. These results indicate that the composition of saliva may be a contributory factor for the high isolation rate of Candida in saliva of BMS patients.

Adult↗

Cost-effectiveness and efficacy of CHROMagar Candida medium in clinical specimens.

CHROMagar Candida is a new medium for the differential isolation and identification of certain clinically important Candida species. This study evaluated the cost-effectiveness of this medium compared with conventional methods. Thirty reference strains, 158 clinical specimens and 105 stock cultures were investigated. Specimens were cultured on CHROMagar Candida medium and on Sabouraud chloramphenicol agar. Identification was by conventional methods on Sabouraud agar and appearance of colonies on CHROMagar Candida medium. CHROMagar Candida correctly identified isolates of C. albicans, C. tropicalis and C. krusei. It was superior in detecting mixed cultures. A comparison of time and cost was carried out. CHROMagar Candida provides a simple, accurate and cost-effective method for identifying some clinically important Candida species.

Agar↗

Clinical significance of Candida species isolated from cerebrospinal fluid.

Candida species have only rarely been isolated from the cerebrospinal fluid. Some of these isolates are true pathogens with a high morbidity and mortality, while others are only colonizers or contaminants. Spontaneous recovery from Candida meningitis has also been reported. The purpose of this study was to identify factors indicative of patients positive for Candida from cerebrospinal fluid who should receive antifungal therapy. A total of 36 patients with a positive cerebrospinal fluid culture for Candida were included in this retrospective analysis. Seventeen of these patients had received antifungal therapy under the impression of Candida meningitis. The differences in the case fatality rate and the duration of hospitalization between the antifungal treatment and untreated groups were statistically significant (p<0.04 and p<0.005, respectively). Statistical analysis showed a significant difference in the percentage of patients with previous ventricular shunt (14/17 vs 8/19, p<0.05), central venous line in situ (9/17 vs 1/19, p<0.005), multiple positive cerebrospinal fluid culture (11/17 vs 1/19, p<0.0005), isolation of Candida at least 20 days after hospitalization in adults (6/7 vs 1/13, p<0.005), and cerebrospinal fluid white blood cell count (median 77 vs 2 /mm3, p<0.005). These results suggest that antifungal agent should be initiated promptly in patients whose cerebrospinal fluid is positive for Candida and who have one or more of the identified risk factors.

Adult↗