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Biomedical subjects

F Finley

Publications and source records attributed to F Finley.

2 recordsLinked to original sources

Lethal effect of complement and lysozyme on polymyxin-treated, serum-resistant gram-negative bacilli.

When genetically serum-resistant Escherichia coli, Klebsiella pneumoniae, and Citrobacter freundii, but not Pseudomonas aeruginosa or Proteus mirabilis, were exposed to polymyxin B, they became susceptible to the bactericidal action of normal human and rabbit sera. In constrast, beta-lactam and aminoglycoside antibiotics did not render any serum-resistant bacteria serum-sensitive. Synergy between polymyxin B and the serum bactericidal system could be demonstrated by the addition of polymyxin B to bacteria in vitro, as well as to bacilli in serum from rabbits injected with the antibiotic. Polymyxin B-treated bacteria were killed by normal, lysozyme-depleted, C2-deficient, and hypogammaglobulinemic sera, but not by heated or C6-deficient sera. These findings indicate that polymyxin B-treated bacteria can be killed via the alternative complement pathway. However, C3 and C3b were detected on the surface of serum-resistant E. coli, regardless of whether the bacteria had been treated with polymyxin B. This observation suggests that a change in susceptibility to the alternative complement pathway was not the only explanation for the acquired serum sensitivity. Polymyxin B may also affect a step in the complement sequence beyond the activation of C3, a step that is apparently blocked in serum-resistant gram-negative bacteria.

Animals

Deficient serum bactericidal activity against Escherichia coli in patients with cirrhosis of the liver.

The serum bactericidal activity (SBA) of cirrhotic patients was compared with that of normal individuals using the release of (51)Cr from radiolabeled Escherichia coli as the assay method. 80% (22/27) of patients were found to have deficient SBA against at least one of three smooth, serum-sensitive test strains of E. coli. Cirrhotic patients were found to have normal levels of serum lysozyme. Although some patients were mildly hypocomplementemic, this abnormality did not correlate with the presence of a bactericidal defect. Bactericidal antibody in normal and cirrhotics' sera was limited to the immunoglobulin (Ig)M class. Purified IgM from patients with deficient SBA against E. coli 0111 had lower concentrations of bactericidal antibody for that E. coli than did IgM from normal sera; the calculated bactericidal activity of total serum IgM was also lower. The bactericidal defect in cirrhotic serum could be completely corrected by either human antiserum to the homologous strain of E. coli or by purified, normal human IgM. However, because higher concentrations of IgM were required to restore normal SBA to a cirrhotic's serum than to agammaglobulinemic serum, there may be an inhibitor of bactericidal antibody in addition to a deficiency of bactericidal IgM antibody to E. coli in the serum of patients with cirrhosis. The bactericidal activity of the alternative complement pathway was also assessed. Sera from cirrhotic patients had no deficit in SBA attributable to the alternative complement pathway. In fact, in some, the activity of the alternative complement pathway was supernormal, compensating in part for the deficit in IgM-mediated SBA.

Antibodies, Bacterial