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P A Fuselier

Publications and source records attributed to P A Fuselier.

5 recordsLinked to original sources

Class specificity of naturally acquired and vaccine-induced antibody to type III group B streptococcal capsular polysaccharide: determination with a radioimmunoprecipitin assay.

A radioimmunoprecipitin test was developed to determine the immunoglobulin class distribution of naturally acquired and vaccine-induced antibody to the native capsular polysaccharide of type III group B streptococci (III-GBS). In sera from adults and pregnant women with naturally acquired antibody, the mean percentage of antigen bound by immunoglobulin G (IgG) was 74.9 and 78.6, respectively, whereas antigen bound by IgM comprised less than 10% of the total. In contrast, early-convalescent-phase sera (mean, 16.3 days) from neonates responding to III-GBS infection with an increase in specific antibody had significantly more IgM (mean, 36%; P less than 0.001, unpaired t test). However, in late convalescence, the immunoglobulin class distribution in sera from these neonates was similar to that of naturally immune adults. Four weeks after immunization with III-GBS polysaccharide vaccine, sera from adults with low (less than 2 micrograms/ml) preimmunization antibody levels in their sera and from those with moderate (mean, 5.5 micrograms/ml) preimmunization levels contained specific antibody predominantly of the IgG class. Although the percentage of IgG-specific antibody was greater in sera from naturally immune adults than in that from vaccinees with a presumed primary immune response, the major portion of antigen bound by sera at 4 weeks postimmunization (62.5%) was associated with IgG. These observations support the opinion that immunization of pregnant women with III-GBS capsular polysaccharide could be efficacious for the prevention of invasive neonatal III-GBS disease.

Adult

Enhanced susceptibility of mice with streptozotocin-induced diabetes to type II group B streptococcal infection.

Since diabetes mellitus predisposes adults to group B streptococcal (GBS) bacteremia, a murine model of streptozotocin-induced diabetes and type II GBS bacteremia was developed to assess certain immune factors which might influence susceptibility to infection. In diabetic mice, the 50% lethal dose for two strains of type II GBS was significantly lower (greater than 1 log10 decrease in CFU per milliliter) than in control animals. This enhanced virulence of GBS for diabetic animals was associated with prolonged bacteremia, persistent sequestration of organisms in the splanchnic reticuloendothelial system, and a shift from splenic to hepatic clearance. Although immunization of control and diabetic animals resulted in high concentrations of type-specific serum antibody, it had no effect on late reticuloendothelial system sequestration in diabetics. In contrast, depletion of complement by treatment of mice with cobra venom factor blocked reticuloendothelial system clearance and resulted in fatal infection in both diabetic and control mice. These results indicate that neither type-specific antibody nor an intact complement system is adequate for effective clearance of type II GBS bacteremia in mice with experimentally induced diabetes. This clearance deficit could be the result of a defect in hepatocyte membrane receptors necessary for removal of this encapsulated microorganism.

Animals

Species distribution of non-group D alpha-hemolytic streptococci in maternal genital and neonatal blood cultures.

At our hospital (Jefferson Davis Hospital, Houston, Tex.) since 1979, non-group D alpha-hemolytic streptococci have been isolated with increasing frequency from neonatal blood cultures with clinical findings of sepsis. A total of 47 such isolates were identified to the species level by the scheme of Facklam and were compared with 57 genital isolates from 167 maternity patients. Among the genital isolates, S. sanguis II and S. MG-intermedius accounted for 53 and 28%, respectively, and both were significantly less common in neonatal cultures (23 and 11%, respectively; P less than 0.05). Among neonatal isolates, S. mitis was the single most frequent species (35%), in contrast to its rare occurrence in maternal cultures (3.4%; P less than 0.001). The disparity between the prevalence of S. mitis in neonatal compared with maternal cultures suggests that this species of non-group D alpha-hemolytic streptococci may have increased virulence in neonatal hosts.

Female