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Biomedical subjects

I Polacheck

Publications and source records attributed to I Polacheck.

At least 55 records · Page 3Linked to original sources

Activity of phenothiazines against medically important yeasts.

Two phenothiazine compounds, trifluoperazine and chlorpromazine, inhibited growth in vitro of the five most common pathogenic yeasts, with MICs ranging from 10 to 40 micrograms/ml. Daily intraperitoneal injections of trifluoperazine (4 to 7 mg/kg of body weight) increased the survival of mice experimentally infected with Candida albicans or Cryptococcus neoformans. The potential use of these drugs against fungal meningitis is discussed.

Animals↗

beta-Glucosidase in Candida albicans and its application in yeast identification.

In this report we attempt to explain the discrepancy between beta-glucosidase (EC 3.2.1.21) activity in Candida albicans as measured by commercial kits and that found in an experimental assay. beta-Glucosidase activity in American and Israeli isolates of C. albicans was evaluated with the API ZYM and YeastIdent systems (Analytab Products) and with experimental biochemical assays. Activity was found with whole cells and cell extracts of isolates from both sources. The greatest beta-glucosidase activity was found at pH 5.0 and with p-nitrophenyl-beta-glucopyranoside (PNP-BDG) as the substrate. In assays with beta-naphthyl-beta-D-glucopyranoside and 6-bromo-2-naphthyl-beta-D-glucopyranoside (6-Br-2-naphthyl-BDG), no enzyme activity was detected in whole cells and only limited activity was found in cell extracts of isolates from both sources. In studies with PNP-BDG at pH 5.0 and 7.5, 29 to 38% less activity was found at both pHs with American whole cells, and minor activity (20%) was found at pH 7.5 with isolates from both sources. Because assays with PNP-BDG in cell extracts of isolates from both sources showed no significant differences in activity, the more limited beta-glucosidase activity in American whole cells was most likely due to less efficient transport. Because the API ZYM system uses 6-Br-2-naphthyl-BDG as the substrate and because the substrate is buffered at pH 7.5 in the API YeastIdent kit, both systems appear to be of limited value for the detection of beta-glucosidase activity in C. albicans.

Candida albicans↗

Invasive mucormycosis in a non-immunocompromised patient.

Primary invasive cutaneous mucormycosis in a non-immunocompromised patient is described. Cultures from the infected tissues yielded a zygomycete which was identified as Saksenaea vasiformis. The patient was successfully treated with debridement of the lesion and amphotericin B.

Aged↗

The susceptibility of Cryptococcus neoformans to an antimycotic agent (G2) from alfalfa.

Compound G2, 2-beta-hydroxy-3-beta-O-(beta-D-glucopyranosyl)-delta 12-oleanene-23,28-dionic acid, isolated from alfalfa roots, demonstrated considerable activity against Cryptococcus neoformans (MIC value of 2 micrograms/ml). Compound G2 exhibited rapid killing of this fungus (MFC value of 4 micrograms/ml) suggesting that it might be a useful active agent in the treatment of cryptococcosis.

Antifungal Agents↗

Canavanine resistance in Cryptococcus neoformans.

All of the isolates of Cryptococcus neoformans var. gattii which we tested were resistant to greater than or equal to 3.5 mM canavanine. All of the serotype D isolates and 28% of the serotype A isolates of C. neoformans var. neoformans tested were susceptible to less than or equal to 18 microM canavanine, whereas the remaining 72% of the serotype A isolates were as resistant as the C. neoformans gattii isolates. In the naturally resistant isolates, the mechanism of resistance appeared to be decomposition of canavanine to a nontoxic product. However, in a resistant mutant derived from a naturally susceptible isolate, the mechanism of resistance was an impaired uptake system for canavanine. The toxic effect of canavanine in Cryptococcus results from the incorporation of canavanine into the protein component that is essential for the synthesis of proteins and RNAs.

Arginase↗

Activity of compound G2 isolated from alfalfa roots against medically important yeasts.

An antimycotic agent was isolated from roots of alfalfa and further purified to yield a nonhemolytic, homogeneous compound (G2). This compound contained considerable activity against 10 medically important yeasts. MICs obtained by both agar and broth dilution methods ranged from 3 to 15 micrograms/ml. Compound G2 was fungicidal at a relatively low concentration for nine different species of yeasts tested (minimum fungicidal concentrations ranged between 6 and 24 micrograms/ml). The considerable stability of compound G2 and its strong inhibitory and fungicidal activity against a broad range of yeasts suggest that after further development it might be useful as an active agent in the treatment of mycotic infections.

Animals↗

Mycoses, bacterial infections and antibacterial activity in sandflies (Psychodidae) and their possible role in the transmission of leishmaniasis.

High incidence of mycoses were found in the guts and malpighian tubes of Phlebotomus papatasi from the Jordan Valley and P. tobbi from Zakinthos, Greece. Infections with several different bacteria were also found in the guts of female P. tobbi. Fungi cultured from guts of laboratory reared P. papatasi that had similar mycoses were identified as Aspergillus sclerotiorum and Saccharomyces cerevisiae. Fungi-infected laboratory reared P. papatasi were refractory to artificial infections with a Leishmania major strain specific to them. The crop contents of P. papatasi, where sugar meals are stored, demonstrated antibacterial activity against the following bacterial species in culture: Escherichia coli, Staphylococcus aureus, Shigella sonnei, Streptococcus group A and Pseudomonas aeruginosa. It is postulated that the bacteria-free gut normal to sandflies is effected by the bacterial inhibitor present in the crop.

Animals↗

Dementia and myoclonus in a case of cryptococcal encephalitis.

Dementia and generalized myoclonic jerks were the only neurologic features in a patient with cryptococcal encephalitis. Despite the presence of numerous budding yeasts identified as Cryptococcus neoformans in the CSF, there was no inflammatory reaction. Protein and glucose levels were normal, with no pleocytosis.

Aged↗

[Ketoconazole].

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Humans↗

Endochitinase, a mannan-associated enzyme from Saccharomyces cerevisiae.

A chitinase was extracted with digitonin from intact yeast cells and purified by adsorption-digestion on chitin. The purified enzyme liberates oligosaccharides of various sizes from chitin, thus behaving as an endochitinase. As found with other chitinases, the yeast enzyme is much more active on nascent chitin, i.e. the chitin formed in the same reaction mixture by the corresponding synthetase, than on preformed polysaccharide. The enzyme has a very low pH optimum, about pH 2.5, and is quite stable at pH 3. Polyacrylamide gel electrophoresis of different preparations of purified chitinase revealed a variable number of protein bands, whose pattern often changed after storage of the enzyme. The distribution of activity in the gel matched that of the stainable material. Association of the chitinase with mannan is indicated by the following results: (a) coincidence in Coomassie blue-staining and periodate-Schiff-staining bands after disc gel electrophoresis; (b) adsorption of the activity on concanavalin A-Sepharose and elution with alpha-methylmanoside; (c) precipitation of the chitinase with appropriate antimannan sera. A carbohydrate content of approximately 18% was found in a trichloroacetic acid-precipitated sample of purified enzyme. Protein and mannan were not dissociated by boiling with sodium dodecyl sulfate, urea, and beta-mercaptoethanol. It could not, however, be conclusively established whether protein and carbohydrate are covalently linked, because the chitinase is resistant to endo-beta-N-acetyl-glucosaminidase.

Chitinases↗

Phenoloxidase activity and virulence in isogenic strains of Cryptococcus neoformans.

A naturally occurring Mel- variant of Cryptococcus neoformans was isolated from the wild type. The effect of phenoloxidase activity on virulence was analyzed on genetically constructed Mel+ and Mel- isolates. The traits Mel+ and virulence in mice, as measured by cumulative mortality and replication potential in brain tissue, cosegregated among the progeny of a Mel+ X Mel- cross. Revertants (MelR) isolated during the course of the cumulative mortality experiment were used to compare virulence in isogenic sets of Mel- and MelR. In two separate sets of such isolates, Mel+ phenotype and virulence coreverted. Measurement of substrate uptake and phenoloxidase activity showed that loss of detectable phenoloxidase was the basis for the Mel- phenotype and that enzyme activity reappeared in the MelR isolates. An intermediate phenotype, Melbg, was also described. Cosegregation and coreversion of the melanin phenotype and virulence suggest that phenoloxidase is a virulence factor in C. neoformans.

Catechol Oxidase↗

Biochemical studies of phenoloxidase and utilization of catecholamines in Cryptococcus neoformans.

Protoplasts of Cryptococcus neoformans contain phenoloxidase as a membrane-bound enzyme. The enzyme appeared to be attached on the inner side of cytoplasmic membranes. Synthesis of the enzyme was derepressed by low levels of glucose but was not affected by the level of ammonium. Copper chelators which inhibited the phenoloxidase of other organisms did not affect cryptococcal enzymes. However, cyanide- or iron-chelating agents such as hydroximide derivates or 8-hydroxyquinoline were effective inhibitors, suggesting that cryptococcal phenoloxidase is an iron-containing enzyme. Phenoloxidase of C. neoformans catalyzed the oxidation of various diphenols via dopachrome and labile intermediates to melanin polymers. The kinetic constants (Km) of the phenoloxidase and the permease for dopamine and norepinephrine were low. The correlation between phenoloxidase and the preferential growth of C. neoformans in the host brain is discussed.

Ammonia↗

Melanin-lacking mutants of Cryptococcus neoformans and their virulence for mice.

A double mutant of Cryptococcus neoformans which lacked the ability to produce melanin (Mel-) on media containing diphenols and failed to grow at 37 degrees C (temperature sensitive, Tem-) was obtained by UV irradiation and subsequent cloning. The mutant showed two lesions in melanogenesis in that it lacked the active transport system for diphenolic compounds and also lacked phenoloxidase. Ultrastructures of the mutant and wild-type cells grown on a medium with or without L-dopa showed that only the wild-type cells grown on L-dopa medium formed a dark cell wall layer, presumably containing melanin. The mutant was crossed with a wild type, and the phenotypes of the progeny were analyzed. The analysis showed no linkage between the mating type and either Mel or Tem loci, but loose linkage was seen between Mel and Tem loci. The progeny, Mel+ Tem+, Mel+ Tem-, Mel- Tem+, and Mel- Tem-, were studied for their virulence in mice. Only Mel+ Tem+ types killed mice with an inoculum of 5 X 10(5) cells within 50 days.

Animals↗

Improved diagnostic medium for separation of Cryptococcus neoformans var. neoformans (serotypes A and D) and Cryptococcus neoformans var. gattii (serotypes B and C).

A simple new agar medium containing L-canavanine, glycine, and bromthymol blue was found to give a clearer and more accurate distinction between serotype A or D (Cryptococcus neoformans var. neoformans) and serotype B or C (C. neoformans var. gattii) than creatinine-dextrose-bromthymol blue or glycine-cycloheximide-phenol red media. Among 143 isolates of serotype A or D and 70 isolates of serotype B or C, the new medium correlated completely with the serotype, whereas nearly 11% of these isolates gave discrepant reactions with creatinine-dextrose-bromthymol blue and glycine-cycloheximide-phenol red media.

Cryptococcus↗

Creatinine metabolism in Cryptococcus neoformans and Cryptococcus bacillisporus.

The pathogenic species of Cryptococcus, C. neoformans and C. bacillisporus, utilized creatinine as a source of nitrogen but not of carbon. Chromatographic and autoradiographic studies suggest that creatinine metabolism in both species involves a single step resulting in the production of methylhydantoin and ammonia. The enzyme responsible for this step, creatinine deiminase, was produced by the cells only in the presence of creatinine in both species. The synthesis of creatinine deiminase was repressed by ammonia in C. neoformans, but not in C. bacillisporus. A possible explanation for this variation, based on the ecological differences between the two species, is discussed. A novel method for measuring creatinine deiminase activity is also described.

Aminohydrolases↗