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J Domer

Publications and source records attributed to J Domer.

6 recordsLinked to original sources

Massive fungal contamination in animal care facilities traced to bedding supply.

During the course of immunologic studies involving the gastrointestinal colonization of mice with Candida albicans, it became apparent that the animals were being exposed to large numbers of Aspergillus fumigatus spores which interfered with the C. albicans colonization. To determine the source of the A. fumigatus exposure and the extent of fungal contamination of the medical school vivarium and four satellite facilities, fungal analyses of feed, bedding, and air were undertaken. Initial samples from the air were collected with 3-h settle plates; air sampling following cleanup was done with an Anderson air sampler. The source of contamination in the mouse rooms was determined to be Beta Chip bedding, which came from the manufacturer highly contaminated. Beta Chip bedding (1 g) obtained from the manufacturer just prior to testing contained 10(4) CFU of A. fumigatus, 20 CFU of a zygomycete, and 10 CFU of a Penicillium sp. Coarse-grade Beta Chip had approximately one-half those levels of contamination. Pure Cob bedding was highly contaminated also, but with a Fusarium sp. and a Cladosporium sp. Untreated and heat-treated Sani-Chip as well as all other heat-treated preparations obtained from the manufacturer contained no detectable spores. Rodent chow direct from the manufacturer had no A. fumigatus, although it did contain 150 CFU of fungus per g, including 80 CFU of a Rhodotorula sp., 60 CFU of Cryptococcus uniguttulatus, and 1 CFU of a Penicillium sp.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Paecilomyces lilacinus infection in an immunocompromised patient.

Systemic infections caused by saprophytic fungi are being diagnosed more frequently. We describe the second reported instance of Paecilomyces lilacinus causing infection in an immunocompromised host. The diagnosis and treatment of this unusual pathogen are discussed.

Child↗

Modulation of immune responses by surface polysaccharides of Candida albicans.

Fungal polysaccharides, especially those from the cell wall of the nonpathogenic yeast Saccharomyces cerevisiae, have been investigated as modulators of immune function for many years. More recently, because surface-associated components are known to be elaborated and circulate during serious episodes of candidiasis, investigators have taken interest in the opportunistic fungus Candida albicans. This review emphasizes the immunomodulatory activities of mannan and cell wall-derived glycoproteins from C. albicans. Mannan extracted with hot citrate buffer has been shown in an antibody-forming cell assay to be a heterogeneous mixture with components capable of enhancing or suppressing antibody responses when administered to mice at or near the time of immunization with type III pneumococcal polysaccharide (SSS-III), a T helper cell-independent antigen, or with sheep erythrocytes (SRBC), a T helper cell-dependent antigen. The components responsible for these opposing effects have been separated on the basis of size or charge by column chromatography. Two similar cell wall glycoproteins, removed from isolated cell walls by different procedures, induced enhancement only of the immune response to SSS-III and SRBC. The mechanism(s) by which these polysaccharides effect modulatory activity has not been elucidated. The enhancing property does not appear related to a direct mitogenic effect on lymphocytes or to stimulation of the production of B cell growth factors or interleukin 2.

Animals↗