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J Poolman

Publications and source records attributed to J Poolman.

22 records · Page 2Linked to original sources

Serological study of meningococcal isolates in Switzerland and France 1980-1986.

A study was performed of 342 disease-related strains of meningococci isolated in Switzerland and France between 1980 and 1986, including more than 50% of all strains isolated in Switzerland in 1986. Using a newly developed spot-blot enzyme-linked immunoassay and a panel of monoclonal anti-meningococcal antibodies, 96% of all strains were shown to react with at least one antibody. In both countries more than 50% of the strains were group B. In France serotype 2a was the prevalent serotype and was often associated with subtype P1.2. In Switzerland serological markers of epidemic strains recently described in Northern Europe (serotype 15 and subtype P1.16) were observed with increasing frequency in 1986. However, serotype 4 has been prevalent in Switzerland since 1980 and no clonal population was seen to emerge.

Antibodies, Monoclonal↗

Homogeneity of cell envelope protein subtypes, lipopolysaccharide serotypes, and biotypes among Haemophilus influenzae type b from patients with meningitis in The Netherlands.

Eighty strains of Haemophilus influenzae type b were randomly selected from 531 strains collected between 1975 and 1982 from patients with meningitis in The Netherlands. Subtyping by sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed that 67 of 80 isolates had identical major outer membrane protein patterns (subtype 1). Among the 13 other isolates four different polyacrylamide gel electrophoresis patterns were observed, two of which closely resembled subtype 1. Lipopolysaccharides were characterized immunologically by immunoprecipitation (Ouchterlony technique) and the gel-immuno-radio-assay. Four serotypes were found among the 80 selected strains, leaving one strain not typable. Seventy-four strains (93%) belonged to the same lipopolysaccharide serotype; 77 (97%) of 80 of the strains belonged to biotype I. Sixty strains (75%) had identical major outer membrane protein patterns (subtype 1), lipopolysaccharide serotypes (serotype 1), and biotypes (I).

Animals↗

Characteristics of major outer membrane proteins of Haemophilus influenzae.

Several properties of Haemophilus influenzae outer membrane proteins were analyzed to define related proteins in various isolates. H. influenzae type b 760705 had six major outer membrane proteins with the following characteristics. Protein a (Mr, 47,000) demonstrated heat modifiability in sodium dodecyl sulfate; its apparent molecular weight was 34,000 at temperatures below 60 degrees C. This protein was extracted from cell envelopes by using Triton X-100-10 mM MgCl2; in cell envelope preparations, the protein was degraded by trypsin. Proteins b (Mr, 41,000) and c (Mr, 40,000) were insensitive to trypsin degradation, were not heat modifiable in sodium dodecyl sulfate, and were peptidoglycan associated in 0.5% Triton X-100-0.2% sodium dodecyl sulfate. The amount of protein b was reduced in ultrasonically obtained cell envelopes. Protein d (Mr, 37,000) was heat modifiable in sodium dodecyl sulfate with an Mr of 28,000 at temperatures below 100 degrees C and was degraded by trypsin, leaving a membrane-bound fragment of Mr, 27,000. Both the intact and degraded proteins were immunologically cross-reactive with the heat-modifiable OmpA protein of Escherichia coli K-12. Protein d was absent in LiCl-EDTA extracts of cells. Protein e (Mr, 30,000), invariably present in all H. influenzae strains tested, was insensitive to trypsin and absent in LiCl-EDTA extracts of cells. Protein k (Mr, 58,000) was extracted from cell envelopes with 2% Triton X-100-10 mM MgCl2 and, in cell envelopes, appeared to be sensitive to trypsin degradation. Proteins with similar properties to those of proteins a to k were found in 10 other H. influenzae b strains, reference strains with serotype a, c, d, e, and f capsules, and 18 of 20 nonencapsulated strains. Their relative molecular weights, however, varied.

Bacterial Outer Membrane Proteins↗