Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “CANDIDA”

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 685 records · Page 38Linked to original sources

Ingestion of Candida albicans down-regulates mannose receptor expression on rat macrophages.

The frequency of infection and death due to various Candida species has increased steadily during the past decade, with mucocutaneous candidal infections as a common problem in the immunocompromised host. Mononuclear phagocytes are important in phagocytosis of this organism. In areas where there are low levels of opsonins, the macrophage-specific mannose receptor plays a dominant role in mediating Candida albicans ingestion. Following receptor-mediated infection, the host macrophage produces inflammatory cytokines and mediators that lead to ultimate killing of the invading Candida. Infection of macrophages by pathogens often leads to altered function that might effect their subsequent host defense properties. For example, function of both the complement receptor type 3 and the mannose receptor are down-regulated following exposure to pathogens or pathogen-derived products. In the current study, we have examined the down-regulation of mannose receptor expression following Candida infection and have investigated possible mechanisms that might be involved. Mannose receptor activity was decreased following 24 h postinfection with Candida. Both tumor necrosis factor and nitric oxide were produced during the infection, and inhibition of the these mediators partially blocked the effect on the receptor. Infection with Candida also inhibited the ability of dexamethasone to up-regulate mannose receptor expression. Finally, mannose receptor protein turnover was accelerated in Candida-infected macrophages. We conclude that Candida down-regulates one of the receptors involved in its internalization through a combination of production of modulatory molecules and enhanced receptor degradation. These results support the hypothesis that pathogens that infect macrophages have the ability to alter the phagocytic pathways available for subsequent host defense.

Animals↗

Effects of subinhibitory concentrations of ketoconazole on in vitro adherence of Candida albicans to vaginal epithelial cells.

The in vitro adherence of multiple 14C-glucose labeled isolates of Candida albicans to exfoliated vaginal epithelial cells in the presence of subinhibitory concentrations of ketoconazole was studied with a new method utilizing differential centrifugation in a gelatin-PBS solution as well as by the standard method of direct microscopy measurement. Pre-incubation of stationary-phase candida in ketoconazole at concentrations of 0.002 to 0.1 microgram/ml for 4 h at 37 degrees C had no effect on adherence. The addition of ketoconazole to logarithmic phase Candida albicans failed to reduce the total number of cell-associated adherent yeast but exposure to subinhibitory concentrations of ketoconazole was associated with a dystrophic morphology of the blastospores, extensive clumping and reduced germination resulting in fewer individual candida blastospores directly attached to the cell membranes. Germination inhibition and a marked reduction in adherent candida was observed when 0.01 microgram/ml ketoconazole was added to Candida albicans incubated in germination promoting medium. The diminished adherence of Candida albicans to vaginal epithelial cells after exposure to subinhibitory concentrations of ketoconazole may have clinical relevance in preventing recurrent candida vaginitis.

Adhesiveness↗

Comparative evaluation of a commercial system for identification of Candida lusitaniae.

The ability of the API Candida system (bioMérieux, France) to identify Candida lusitaniae isolates was evaluated in comparison to the Auxacolor and ID 32C systems using 52 clinical isolates previously identified on the basis of their morphology and their biochemical reactions in the Auxacolor and ID 32C systems. The API Candida system failed to definitively identify most of the strains tested within 24 h. No beta-maltosidase activity was detected in 28 strains, and supplementary tests were required to discriminate Candida lusitaniae, Candida famata and Candida guilliermondii. The API Candida system is not suitable for identification of Candida lusitaniae. In comparison, the Auxacolor system is easy to use and interpret, allowing rapid identification of this species; however, the ID 32C system is required for identification of atypical strains.

Bacterial Typing Techniques↗

Isolation and characterization of a species-specific DNA probe for the detection of Candida krusei.

In an attempt to design species-specific primers for the detection of Candida krusei by polymerase chain reaction, a partial genomic DNA library from Candida krusei was screened for hybridization with radiolabeled genomic probes from a broad variety of fungal and bacterial species and from human. Species-specific candidate DNA inserts were then tested for hybridization with dot blots of DNA from various organisms. One 570-basepair insert from Candida krusei DNA that hybridized under stringent conditions only with DNA from Candida krusei and human was sequenced. It revealed considerable homology with the gene for the mitochondrial inner membrane protease I of Saccharomyces cerevisiae, and the 147 amino acid residues deduced from an open reading frame showed considerable homology with the N-terminal portion of the enzyme from Saccharomyces cerevisiae. From the sequence of the Candida krusei DNA fragment, a pair of 21-base oligonucleotide primers enclosing a 501-basepair sequence was designed for polymerase chain reaction. When these primers were tested with a broad range of genomic DNAs, the expected amplification was obtained only with Candida krusei DNA and not with DNA from any other source, including human. Experiments with DNA from mixed cultures of Candida krusei and other yeasts and bacteria showed that the polymerase chain reaction was specific for Candida krusei and that as few as ten cells could be detected.

Amino Acid Sequence↗

Interferon-gamma responses to Candida recover slowly or remain low in immunodeficient HIV patients responding to ART.

Extended assessments of memory T-cell responses in HIV patients who have a satisfactory virological response to combination antiretroviral therapy (CART) have been limited by availability of longitudinal samples and of antigens to which most individuals (including HIV-negative controls) have been exposed. Studies of cytomegalovirus (CMV) show that interferon-gamma (IFN-gamma) responses never recover completely, but this may be antigen-specific. Here we present responses to Candida and CMV antigens analyzed using a statistical approach that derives overall trends from samples collected at variable time points. Results were considered in relation to putative markers of T-regulatory cells. Blood mononuclear cells collected from seventeen HIV-1 patients (nadir <100 CD4 T cells/mL) 0-8 years after initiation of CART were stimulated with Candida spp lysate, Candida enolase protein or CMV lysate and production of IFN-gamma was assessed by ELISpot assay. CD4 T-cell counts increased fivefold and stabilized within 24 months on CART, following control of plasma viremia. IFN-gamma responses to Candida antigens began low and increased slowly, generating positive slope up to 60 months on CART (Candida enolase p=0.008; Candida lysate p=0.03; mixed-model Wald test). Only two patients displayed a CMV or Candida-specific IFN-gamma response above the median for seronegative controls. Proportions of T cells expressing CD25 or CD57 did not correlate with IFN-gamma responses. Slow reconstitution of IFN-gamma responses to CMV and Candida in previously immunodeficient patients with restored CD4+ T-cell counts on CART suggests a broad and nonresolving defect in memory T-cell responses.

Adult↗

In Vitro comparison of herbal and conventional antifungals against Candida strains in Oral candidiasis: A systematic review and meta-analysis.

OBJECTIVE: This study aimed to systematically review and meta-analyze the in vitro antifungal activity of herbal and conventional antifungals against Candida strains. DESIGN: In vitro studies were identified through PubMed, Embase, Scopus, and Web of Science up until May 2026. This review is registered with Prospero (CRD420251128404). Eligibility was determined using the Population, Intervention, Comparison, and Outcome (PICO) framework, with specific inclusion and exclusion criteria focused on in vitro antifungal investigations comparing herbal antifungals with conventional antifungals. The risk of bias was assessed using the modified Quality Assessment Tool for In Vitro Studies (QUIN Tool). A meta-analysis was performed, with the primary outcome measure being the ratio of means (RoM). RESULTS: The systematic review included twenty-five articles. Most studies showed different results in inhibition zones or minimum inhibitory concentrations between herbal and conventional agents. The meta-analysis indicates that certain herbal antifungals are equally effective as or more effective than conventional antifungals against Candida dubliniensis, Candida lusitaniae, and Candida tropicalis. While the efficacy of herbal antifungals for Candida albicans and Candida glabrata was modest, Piper betle L. demonstrated significant inhibitory potential. In contrast, conventional antifungals outperformed herbal antifungals against Candida krusei and Candida parapsilosis. CONCLUSIONS: This systematic review and meta-analysis highlight herbal medicine as a potential antifungal therapy for oral candidiasis, emphasizing the need for new strategies due to resistance to conventional antifungals.

Humans↗

Biliary candida infections in primary sclerosing cholangitis.

BACKGROUND/AIMS: Patients with Primary Sclerosing Cholangitis (PSC) frequently develop dominant stenoses of the bile ducts and bacterial infections represent a major problem in such patients. In the present study, the role of fungal infections of the bile ducts has been evaluated. METHODS: In a prospective non-randomized trial, in 67 consecutive patients with PSC, 148 bile samples, each taken at one endoscopic examination, were microbiologically analysed. RESULTS: Candida species were found in 8/67 patients whereas Aspergillus was not detected. Seven patients with biliary Candida had a dominant stenosis and one had a wide papillotomy with chronic ascending cholangitis. Altogether 7/49 of patients with dominant stenosis and 1/18 of patients without dominant stenosis had Candida in their bile. All patients with biliary Candida intermittently had received antibiotics and had advanced disease with cholestasis. Candida disappeared spontaneously in 2/7 patients, cleared after antifungal treatment in 2, and persisted in 3 patients. Patients with biliary Candida had more severe cholangitis with higher CRP and serum bilirubin compared to those without Candida infection. CONCLUSIONS: This is the first report on the identification of Candida species in the bile of patients with PSC. Apart from bacterial also fungal infection of the bile ducts should be considered in the treatment of such patients.

Adult↗

Identification of rare Candida species and other yeasts by polymerase chain reaction and slot blot hybridization.

Invasive candidiasis has become a major cause of morbidity and mortality in immunocompromised hosts. Here we describe a fast and reliable DNA extraction and PCR amplification method in combination with a slot blot hybridization assay. A genus-specific probe was designed that allowed to detect DNA from a broad range of Candida species and 3 other yeasts. In addition, species-specific oligonucleotides for emerging Candida and other yeast species allowed to identify DNA extracted from Candida lusitaniae, Candida humicola, Candida kefyr, Candida inconspicua, Candida solani, Malassezia furfur and Trichosporon cutaneum. A sensitivity of at least 10(1) CFU, corresponding to 100 fg of fungal DNA, was documented for all species-specific probes and the common Candida probe. In addition, the 18S rRNA genes of 7 yeast species (C. humicola, C. kefyr, C. solani, C. inconspicua, C. norvegensis, C. utilis and M. furfur) were completely sequenced. The sequencing primers described bind to highly conserved primer binding sites. Therefore, these primers would allow rapid cycle sequence of additional ribosomal genes throughout the whole kingdom of fungi.

Candida↗

Development and evaluation of the nuclisens basic kit NASBA for the detection of RNA from Candida species frequently resistant to antifungal drugs.

We describe a Nucleic Acid Sequence Based Amplification (NASBA) protocol to detect 6 different Candida species (Candida krusei, Candida glabrata, Candida inconspicua, Candida dubliniensis, Candida norvegensis, Candida lusitaniae) and compare it to a PCR assay. NASBA showed a sensitivity of 1 Colony Forming Unit and detected RNA from all 6 Candida species within 1 working day. All 5 patients with documented candidiasis showed identical results by both methods. This assay offers a sensitive, specific and fast possibility to detect yeast RNA.

Antifungal Agents↗

Appearance of colonies of Prototheca on CHROMagar Candida medium.

The microorganisms capable of producing opportunist infections include the yeast-like organisms of the genus Candida, and the unicellular algae of the genus Prototheca, which share common features and can, therefore, lead to confusion. Their colonies are almost identical and they grow in the same culture media used routinely in mycology. CHROMagar Candida is a new chromogenic differential isolation medium that facilitates the presumptive differentiation of some of the most clinically important yeast-like organisms. To our knowledge, the use of CHROMagar Candida with Prototheca spp. has not been reported in the literature. This report describes the growth of 151 strains of Prototheca on CHROMagar Candida compared to the growth of a total of 326 well-characterized yeast organisms of the genera Candida, Cryptococcus, Trichosporon, Geotrichum, and Saccharomyces. It is clinically relevant to note that algae of the genus Prototheca (P. wickerhamii, P. zopfii, and P. stagnora) and of the genus Candida parapsilosis produced similar cream-colored colonies on CHROMagar Candida medium. Based on their growth on CHROMagar, a new species of Candida is described, C. zeylanoides, which has blue-green colonies. The colonies of two species of Trichosporon are also differentiated: the blue-green colonies of T. beigelii and the pink colonies of T. capitatum.

Candida↗

Candida albicans suppresses nitric oxide (NO) production by interferon-gamma (IFN-gamma) and lipopolysaccharide (LPS)-stimulated murine peritoneal macrophages.

We examined the in vitro effect of Candida albicans on NO production by macrophages. Candida albicans suppressed not only NO production but also expression of inducible NO synthase (iNOS) mRNA by murine IFN-gamma and bacterial LPS-stimulated peritoneal macrophages. The suppression was not associated with inhibition but rather stimulation of IL-1 beta production. This effect was observed when more than 1 x 10(3)/ml of Candida albicans were added to macrophage cultures (1 x 10(6) cells/ml) and reached a maximal level at 1 x 10(6)/ml. The NO inhibitory effect of Candida albicans was mediated predominantly by as yet unidentified soluble factor(s) and to a lesser extent by direct contact. In addition, heat- or paraformaldehyde-killed Candida albicans did not show this inhibitory activity. Culture supernatant of Candida albicans also inhibited NO production by activated macrophages in a dose-dependent manner, and increased IL-1 beta production. Finally, the inhibitory effect was not mediated by IL-10 and transforming growth factor-beta (TGF-beta), since neutralizing antibodies to these cytokines did not influence Candida albicans-induced reduction in macrophage NO production. Our results suggest that Candida albicans may evade host defence mechanism(s) through a soluble factor-mediated suppression of NO production by stimulated macrophages, and that the effect is independent of production of immunosuppressive cytokines such as IL-10 and TGF-beta.

Animals↗

Funguria and Candida-specific immunoglobulins in patients with systemic candidosis.

UNLABELLED: Funguria, indirect anti-Candida haemagglutination test (C-IHT) and Candida-specific immunoglobulins C-IgM, C-IgG and C-IgA were investigated under suspicion of systemic candidosis in critically ill patients. A total of 143 urine cultures were studied for Candida from 74 adults and a median count of log 3.0 CFU ml-1 was found. Most isolated Candida species were Candida albicans and Candida glabrata. In 14 cases of candidaemia there was no regular agreement between the finding of Candida species in blood and urine. In cases with candiduria > = or log 3.0 CFU ml-1 a stronger increase of C-IHT titres and all three Candida-specific immunoglobulins after 5-7 days was observed. Some statistically significant correlations were found between the levels of urinary yeast counts and immunological parameters concerning C-IHT, C-IgA and C-IgG on the first day and after 5-7 days. Clinical findings in some cases coincided well with funguria and courses of titres before and after treatment. CONCLUSION: In critically ill patients suspected of having systemic candidosis not only blood cultures should be made. Cultural studies with specimens taken from different sites including funguria are essential for a complete specific serological investigation.

Aged↗

Incidence of Candida in psoriasis--a study on the fungal flora of psoriatic patients.

The presence of Candida albicans and other Candida species in saliva and faeces of 50 psoriatic patients compared with a control group of 50 healthy donors was examined quantitatively. The quantity of Candida in saliva and faeces of the psoriatics proved to be significantly higher than in the controls. Candida was detected in 78% of the saliva samples of the psoriatics but in only 50% of the controls, and in the faeces samples in 72% of the psoriatics, but in only 46% of the controls. Qualitative analysis revealed a predominance of Candida albicans (saliva, 77%; faeces, 64%) and Candida rugosa (saliva, 28%; faeces, 28%). We did not find a correlation between the severity of the psoriasis according to the Psoriasis Area and Severity Index and the amount of Candida in the saliva or in the faeces. Our results reinforce the hypothesis that C. albicans is one of the triggers to both exacerbation and persistence of psoriasis. We propose that in psoriatics with a significant quantity of Candida in faeces, an antifungal treatment should be considered as an adjuvant treatment of psoriasis.

Adolescent↗

Relationship between salivary flow rates and Candida counts in subjects with xerostomia.

OBJECTIVE: This study evaluated the relationship between salivary flow and Candida colony counts in the saliva of patients with xerostomia. STUDY DESIGN: Sialometry and Candida colony-forming unit (CFU) counts were taken from 112 subjects who reported xerostomia in a questionnaire. Chewing-stimulated whole saliva was collected and streaked in Candida plates and counted in 72 hours. Species identification was accomplished under standard methods. RESULTS: There was a significant inverse relationship between salivary flow and Candida CFU counts (P =.007) when subjects with high colony counts were analyzed (cutoff point of 400 or greater CFU/mL). In addition, the median sialometry of men was significantly greater than that of women (P =.003), even after controlling for confounding variables like underlying disease and medications. Sjögren's syndrome was associated with low salivary flow rate (P =.007). There was no relationship between the median Candida CFU counts and gender or age. There was a high frequency (28%) of mixed colonization. Candida albicans was the most frequent species, followed by C parapsilosis, C tropicalis, and C krusei. CONCLUSIONS: In subjects with high Candida CFU counts there was an inverse relationship between salivary flow and Candida CFU counts.

Adolescent↗

Comparative in vitro activity of antiseptics and disinfectants versus clinical isolates of Candida species.

OBJECTIVE: To evaluate the in vitro activity of antiseptics and detergents against Candida. DESIGN: One strain each of Candida albicans, Candida tropicalis, Candida lusitaniae, Candida parapsilosis, Candida kefyr, Candida glabrata, and an American Type Culture Collection strain of Escherichia coli (control) were studied. Clinical isolates were obtained from patients in a bone marrow unit of a large tertiary hospital. Antiseptic and disinfectant agents studied were used in the hospital where isolates were identified for cleaning of inanimate surfaces or hand washing. In vitro susceptibility was determined using a broth macrodilution method with exposure times to antiseptic or disinfectant agent of 15 seconds to 4 minutes and concentrations of agents that ranged from undiluted to 1:10,000 dilution. SETTING: A 900-bed teaching hospital. RESULTS: Of disinfectants tested, Vestal and Sparquat inhibited growth of all species at dilutions of < or = 1:100 at all contact times for all species. Clorox showed inhibition of growth at 1:100 dilution after 30 seconds of contact time for all isolates. Of antiseptics studied, Hibiclens inhibited growth of all species except C tropicalis at dilutions of < or = 1:100 at all contact times and for C tropicalis after 60 seconds. Clinidine inhibited growth of all species at dilutions of < or = 1:100 at all contact times for all species with the exception of Cglabrata and C tropicalis, which grew at the undiluted concentration. Ultradex failed to demonstrate killing of any species for any dilutions tested. CONCLUSIONS: The results of this study show varying degrees of in vitro inhibition of growth by a variety of antiseptics and disinfectants against clinical isolates of Candida species from hospitalized patients.

Anti-Infective Agents, Local↗

Infections due to resistant Candida species in patients with cancer who are receiving chemotherapy.

The apparent increase in the prevalence of candidal infections among patients with cancer and the changes in the spectrum of Candida pathogens infecting these patients are associated with a number of factors. Selection of less-susceptible organisms occurs because antibacterial and antifungal agents alter microbial flora, and the use of these agents can lead to mutations that confer antibiotic resistance to initially susceptible organisms. Candida organisms that are resistant to polyenes and azoles have been increasingly isolated from specimens from oncology patients, and outbreaks of infections due to these less-susceptible organisms have been reported in several centers. Antifungal resistance has largely been observed among non-albicans Candida species, especially Candida parapsilosis, Candida lusitaniae, and Candida krusei. However, there also has been an increase in the isolation of resistant Candida albicans, the more prevalent and more virulent species of Candida, from specimens from other patients. Isolation of resistant C. albicans from oncology patients has been rare, although the potential for further problems exists. These observations emphasize the importance of the selective pressure exerted by antifungal agents on the microbiological flora of patients and the influence of these agents on the prevalence and spectrum of fungal pathogens in clinical settings.

Antifungal Agents↗

In-vitro antifungal activity of sertaconazole, bifonazole, ketoconazole, and miconazole against yeasts of the Candida genus.

The in-vitro antifungal activity of sertaconazole against 110 strains of Candida yeasts (50 Candida albicans, 15 Candida glabrata, 2 Candida guilliermodii, 8 Candida krusei, 1 Candida kefyr, 8 Candida parapsilosis and 26 Candida tropicalis) was assessed in comparison with bifonazole, ketoconazole, econazole and miconazole. The majority of the strains were clinical isolates; some reference strains were included. A commercial agar diffusion method (NeoSensitabs, Rosco, Taastrup, Denmark) in Shadomy's modified medium pH 7 was used. Using the manufacturer's criteria, 86.4% of the strains were classified as "sensitive" to sertaconazole. The only strain classified as "resistant" to sertaconazole was the control reference strain of C. albicans. The remaining strains were classified as "moderately sensitive". The sensitivity/resistance percentages for the other antifungals tested were 75.5/1.8 for ketoconazole, 71.8/2.7 for miconazole, 63.7/13.6 for econazole, and 59.1/5.5 for bifonazole. Sertaconazole showed a higher antifungal activity than that of the other antimycotics, tested in vitro which was statistically significant (P < 0.001), as well as a lower resistance rate than that of econazole, bifonazole and ketoconazole.

Antifungal Agents↗

In-vitro activity of essential oils, in particular Melaleuca alternifolia (tea tree) oil and tea tree oil products, against Candida spp.

The in-vitro activity of a range of essential oils, including tea tree oil, against the yeast candida was examined. Of the 24 essential oils tested by the agar dilution method against Candida albicans ATCC 10231, three did not inhibit C. albicans at the highest concentration tested, which was 2.0% (v/v) oil. Sandalwood oil had the lowest MIC, inhibiting C. albicans at 0.06%. Melaleuca alternifolia (tea tree) oil was investigated for activity against 81 C. albicans isolates and 33 non-albicans Candida isolates. By the broth microdilution method, the minimum concentration of oil inhibiting 90% of isolates for both C. albicans and non-albicans Candida species was 0.25% (v/v). The minimum concentration of oil killing 90% of isolates was 0.25% for C. albicans and 0.5% for non-albicans Candida species. Fifty-seven Candida isolates were tested for sensitivity to tea tree oil by the agar dilution method; the minimum concentration of oil inhibiting 90% of isolates was 0.5%. Tests on three intra-vaginal tea tree oil products showed these products to have MICs and minimum fungicidal concentrations comparable to those of non-formulated tea tree oil, indicating that the tea tree oil contained in these products has retained its anticandidal activity. These data indicate that some essential oils are active against Candida spp., suggesting that they may be useful in the topical treatment of superficial candida infections.

Antifungal Agents↗