Abstract
The induction of lymphocyte suppressor activity with bacterial endotoxin is well documented. While most of the evidence has been obtained using animal models and has required large doses of endotoxin, we have demonstrated that additions of as little as 1.0 ng of chromatographically purified endotoxin [from Escherichia coli 055:B5, E. coli 0111:B4, Pseudomonas aeruginosa (Fisher-Devlin immunotype 1), Serratia marcescens, or Salmonella minnesota] to human mixed lymphocyte or to mitogen-stimulated cultures produced statistically significant suppression. In each case, endotoxin was most suppressive when present in the culture system prior to the introduction of the alloantigen or mitogen. Suppressive effects were dependent upon the participation of peripheral blood monocytes and could be blocked by the addition of the prostaglandin synthetase inhibitor indomethacin or meclofenamate sodium. Prostaglandin production by monocytes appeared to induce a population of "short-lived" suppressor cells, identified by the immediate and delayed addition of lymphocyte cocultures to endotoxin-preincubated cells. The suppressive behavior of endotoxin-primed lymphocytes was identical to the behavior of burn patient serum-primed lymphocytes or to lymphocyte populations derived from a subpopulation of burn patients whose serum was Limulus positive. We, therefore, feel that endotoxin plays a significant immunologic role in these patients.
MeSH Terms
Adult
Burns/immunology
Endotoxins/physiology
Escherichia coli
Humans
Indomethacin/pharmacology
Isoantigens/immunology
Lipopolysaccharides/pharmacology
Meclofenamic Acid/pharmacology
Middle Aged
Mitogens/pharmacology
Monocytes/metabolism
Prostaglandins/biosynthesis
Pseudomonas
Serratia
T-Lymphocytes/metabolism
T-Lymphocytes, Regulatory/immunology
Chemicals
Endotoxins
Isoantigens
Lipopolysaccharides
Mitogens
Prostaglandins
Meclofenamic Acid
Indomethacin
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Ninnemann J L
Stockland A E
Condie J T
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