PubMed HealthSearch

Biomedical subjects

J M Small

Publications and source records attributed to J M Small.

10 recordsLinked to original sources

Sixth sense.

Explore the source record for details and available documents.

Aged

Strain variation in antiphagocytic activity of capsular polysaccharides from Cryptococcus neoformans serotype A.

Strains of Cryptococcus neoformans vary in resistance to phagocytosis in vitro. The binding of isolated capsular polysaccharide (CPS) to a capsule-free mutant of C. neoformans confers resistance to phagocytosis. The importance of capsule composition to differences among strains in susceptibility to phagocytosis was evaluated. CPSs from five strains of C. neoformans serotype A, designated 6, 15, 98, 110, and 145, which had previously been isolated and characterized as to molecular size, composition, and binding properties, were evaluated for relative antiphagocytic potencies. In the presence of 5% normal isologous serum, murine thioglycolate-elicited peritoneal macrophages phagocytized (i.e., attached to or engulfed) 80% of 51Cr-labeled cells of C. neoformans 602, a capsule-free mutant. Added CPS inhibited the uptake of these yeast cells. CPS from strain 110 was most potent, followed in decreasing order of inhibitory activity by CPSs from strains 6, 145, 98, and 15. The presence of 100 micrograms of strain 110 CPS per ml reduced uptake of cells of strain 602 from 80 to 50%. CPS had no effect on the uptake of 51Cr-labeled Saccharomyces cerevisiae. Cells of strain 602 that were preincubated with CPS and then washed were more resistant to phagocytosis than nonpretreated control cells, indicating the importance of bound, not free, CPS. Added CPS did not affect the uptake of wild-type, encapsulated cells of C. neoformans. Addition of endotoxin had no effect on phagocytosis. CPSs from strains of C. neoformans serotype A varied widely in their abilities to inhibit the uptake of capsule-free cells. The antiphagocytic activity of CPS did not correlate with the ability to bind to capsule-free mutant but was somewhat related to the capsule size of the strain from which the CPS was isolated.

Animals

Strain variation in composition and molecular size of the capsular polysaccharide of Cryptococcus neoformans serotype A.

The capsule of Cryptococcus neoformans is an important virulence factor. In this investigation capsular polysaccharides (CPSs) were isolated by ethanol precipitation from culture filtrates of C. neoformans serotype A strains 6, 15, 98, 110, and 145. Capsule sizes on India ink examination ranged from barely perceptible (strain 15) to greater than the diameter of the yeast cell (strain 6); the others were intermediate in size. On ion-exchange chromatography on DEAE-cellulose each CPS eluted at 0.2 M NaCl; CPS of strain 15 had two major peaks, designated III and IV. On gel-permeation chromatography CPSs of strains 6, 98, 110, and 145 eluted at the void volume of Sepharose CL-2B in the presence or 0.1 M EDTA, while the CPS of strain 15 eluted in two peaks. Sephacryl S-1000 resolved CPSs of all five strains in the following order, from largest to smallest molecular size: 145 greater than 110 greater than 98 greater than 6 much greater than 15. All five CPSs contained mannose, xylose, and glucuronic acid, while the carboxyl-reduced CPS of strain 110 also contained a large percentage of an inositol-like compound. The CPS of strain 110 contained approximately 30% uronic acid by weight, while the others had 15 to 20%. The composition of peak IV from the CPS of strain 15 resembled those of the other strains; peak III of strain 15 contained a substantial amount of galactose. Each CPS contained less than 0.2% protein by weight. The significant differences in molecular size and sugar composition among CPSs of these strains of C. neoformans serotype A may partially explain strain differences in virulence and biological properties of the organism.

Amino Acids

Binding of purified and radioiodinated capsular polysaccharides from Cryptococcus neoformans serotype A strains to capsule-free mutants.

Strains 6, 15, 98, 110, and 145 of Cryptococcus neoformans serotype A vary in capsule size, animal virulence, and susceptibility to in vitro phagocytosis. The isolated capsular polysaccharides (CPSs) differ in monosaccharide composition ratios and molecular size, as determined by gel filtration. The purpose of this investigation was to characterize the binding of CPSs to capsule-free mutants of C. neoformans and to examine CPSs from these strains for differences in their ability to bind, to determine whether such differences might explain the variation in the pathobiology of these strains. CPSs were partially periodate oxidized, tyraminated, iodinated with 125I, and used in binding studies with two capsule-free mutants of C. neoformans, strain 602 and Cap59. Binding was specific for yeast species and for polysaccharide and was saturable, which is consistent with a receptor-mediated mechanism of attachment. Binding occurred rapidly and was only slowly reversible. Binding was also independent of pH from pH 5.5 to 8, of cation concentrations, and of competition by sugars up to 1.0 M concentrations. Only a portion of CPS was capable of binding, and strains varied in the extent to which their CPS bound. CPS-15-IV (peak IV was the major polysaccharide peak on DEAE-cellulose chromatography of CPS from strain 15) had the highest proportion of binding (40%), followed by CPS from strains 98, 6, 145, 110, and 15-III (peak III was an earlier eluting fraction of CPS from strain 15). The CPSs differed similarly in their ability to competitively inhibit binding. Treatment of CPS, but not yeast cells, with proteinase XIV abolished binding without altering the CPS gross structure. Treatment of yeast cells with proteases, heat, or formaldehyde did not alter binding, and both strain 602 and Cap59 bound CPS similarly. Binding to encapsulated yeast cells was minimal.

Chemical Phenomena

The frequency of fungal involvement in abnormal vocal cord biopsy specimens.

Finding an unsuspected fungal infection of the true vocal cord prompted a retrospective study of abnormal vocal cords received as surgical specimens. Of 30 cases initially diagnosed histologically as either inflammation or hyperkeratosis, two (in addition to the index case) contained fungal elements visible on special stains. None of the patients had systemic mycoses on examination or on follow-up. Local excision apparently cured all lesions. Fungi may cause more vocal cord lesions than previously recognized and cannot be well visualized on routine sections.

Aged

Doctor's pay.

Explore the source record for details and available documents.

Economics