Abstract
Certain polysaccharides have been shown to inhibit the antibody response of rabbits to the common enterobacterial antigen (CA). The present investigation revealed that striking differences exist in the immunosuppressive effects of enteric bacteria and their lipolysaccharides (lps), depending upon CA production by the strains. Mixtures of immunogenic strains (Escherichia coli F2378 [R4], E. coli F470 [R1], or Shigella boydii F3140 [R]) and non-immunogenic CA-producing strains, such as E. coli O1, E. coli O113, Salmonella montevideo, and S. minnesota, as well as the R mutants E. coli F614 (R1), E. coli F757 (R1), and S. typhimurium his 642 (Ra), failed to elicit CA antibodies. In contrast, mixtures of the immunogen and CA-negative strains S. typhimurium his 386 (Ra) and S. minnesota P595 (Re) or R555 (Ra) yielded antibodies in titers similar to those elicited by the immunogen alone. Further, LPS of CA-positive but not of CA-negative strains exerted this immunosuppressive effect. Quantitative studies revealed that LPS of S. minnesota in amounts of 100 mug/ml was strongly immunosuppressive, in amounts of 20 mug/ml slightly effective, and in amounts of 4 mug/ml ineffective. It is postulated that hitherto unknown differences exist, either in composition or in configuration, between LPS obtained from different microorganisms to account for the strain-related differences in immunosuppressive effects and, further, that the immunosuppressive LPS interacts with immunogenic CA.
MeSH Terms
Animals
Antibodies, Bacterial/biosynthesis
Antigens, Bacterial
Enterobacteriaceae/immunology
Escherichia coli/immunology
Hemagglutinins/analysis
Immunosuppression Therapy
Lipopolysaccharides/pharmacology
Polysaccharides, Bacterial/pharmacology
Rabbits
Salmonella/immunology
Shigella boydii/immunology
Species Specificity
Chemicals
Antibodies, Bacterial
Antigens, Bacterial
Hemagglutinins
Lipopolysaccharides
Polysaccharides, Bacterial
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Whang H Y
Mayer H
Schmidt M G
Neter E
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