Reaction of endotoxin and surfactants. II. Immunologic properties of endotoxins treated with sodium deoxycholate.
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Biomedical subjects
Publications and source records attributed to K C Milner.
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When endotoxins extracted from enteric bacteria were mixed in the presence of sodium deoxycholate, and the bile salt was subsequently removed by dialysis or by extraction with ethanol, a new type of endotoxin was formed. The latter material was as biologically active as the original endotoxins and possessed a combination of antigenic determinants that were previously unique to each of the individual endotoxins in the mixture. This hybrid formation between endotoxins was detected by immunodiffusion and radioautography and by quantitative precipitation procedures.
Proteus L forms were disrupted by osmotic shock, and the sedimentable material present in the homogenate was further fragmented in a Sorvall pressure cell. The pressure cell was also used for disrupting normal Proteus cells. The homogenates obtained were fractionated by differential centrifugation. Purified endotoxins were isolated from the major fractions by phenol extraction. Material extracted with phenol from the membrane fraction of the L forms was about as toxic and pyrogenic on a weight basis as the typical enterobacterial endotoxins isolated from cell walls of normal bacteria. The yield of extract from L forms was about one-third of that from an equal weight of normal bacteria. No differences in the gross chemical composition of the phenol extracts from the L forms and the normal cells could be ascertained. A close serological relationship existed between extracts obtained from two L forms and their respective parent bacteria, but no such relationship was found in the case of the third L form studied and its parent bacterium. Diaminopimelic acid was not detected in the membranes of the L forms, but these membranes contained most of the succinic dehydrogenase of the organisms. Only small amounts of this enzyme were present in the wall fraction of normal bacteria. The data obtained suggest that precursors of the Proteus endotoxins are formed either in the soluble protoplasm of normal cells and L forms or at sites on the membrane from which they are readily liberated into the protoplasm, whereas the final steps of the synthesis of these toxins take place at the cytoplasmic membrane. In normal cells, much endotoxin is transported to and concentrated in the walls.
Electrophoretically purified Vi antigen from Citrobacter freundii 5396/38 was depolymerized by sonic treatment. The treatment caused an 80% reduction in specific viscosity and a reduction in molecular weight from 1.6 x 10(6) to 3.9 x 10(4). The O-acetyl and N-acetyl contents of the antigen and its infrared spectrum remained unchanged. The sonically treated antigen was only 1% as effective as the original antigen in eliciting protection in mice against challenge with Salmonella typhi. Sonically treated antigen also elicited lower antibody titers after single injections in mice and rabbits. No loss in ability to precipitate antibody or to sensitize red blood cells for hemagglutination was observed.
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Anacker, R. L. (Rocky Mountain Laboratory, Hamilton, Mont.), W. D. Bickel, W. T. Haskins, K. C. Milner, E. Ribi, and J. A. Rudbach. Frequency of occurrence of native hapten among enterobacterial species. J. Bacteriol. 91:1427-1433. 1966.-Smooth cultures of representative Enterobacteriaceae were screened for the presence of native hapten, a substance previously extracted with trichloroacetic acid from the protoplasmic fraction of one strain each of Escherichia coli O111:B4 and O113. Trichloroacetic acid extracts of protoplasmic fractions of the cells were analyzed for chemical composition, for constituent sugars by paper chromatography, for immunochemical relationship to endotoxin purified by gel filtration, for sedimentation behavior, and for pyrogenicity in rabbits and lethal toxicity in chick embryos. Extracts from two of three additional strains of E. coli O113, all five additional strains of E. coli O111:B4, and one strain each of E. coli O26:B6 and O55:B5 were similar to previously described native hapten in chemical composition, sedimentation properties (S(20,w), 3.7 to 5.2), biological potency (usually less than 0.1% that of corresponding endotoxin), and immunochemical relationship to endotoxin. Extracts of one strain each of E. coli O127:B8, Serratia marcescens, Citrobacter freundii, Salmonella enteritidis, and of two lipopolysaccharide-deficient mutants of S. enteritidis differed from typical native hapten. The biosynthetic relationship of native hapten to endotoxin has not yet been revealed.
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Ribi, E. (Rocky Mountain Laboratory, Hamilton, Mont.), R. L. Anacker, W. Brehmer, G. Goode, C. L. Larson, R. H. List, K. C. Milner, and W. C. Wicht. Factors influencing protection against experimental tuberculosis in mice by heat-stable cell wall vaccines. J. Bacteriol. 92:869-879. 1966.-Studies of nonviable, heat-stable vaccines for active protection against experimental tuberculosis have been continued with a test involving aerosol challenge of intravenously vaccinated mice. The previously reported activating effect of light mineral oil on disrupted cells of the BCG strain was found to be shared by certain other mineral oils and a synthetic, 24-carbon hydrocarbon, but not by kerosene or any of several vegetable oils. Dry cell walls coated with a small amount of oil and dispersed in saline with aid of an emulsifier were suitable for intravenous administration and were effective in promoting resistance to challenge. Oil used in this manner, in contrast to water-in-oil emulsions of the Freund type which could not be administered intravenously, did not potentiate the tuberculin-sensitizing activity of the cell walls. Although the amount of oil required for full effect was small (< 0.5 ml/100 mg of dry antigen), there was a critical level below which optimal enhancement was not achieved. More stable suspensions than could be obtained with the other oils were readily prepared from cell walls treated with the synthetic hydrocarbon, 7-n-hexyloctadecane. Extended experience has shown that in this test system both the viable BCG standard vaccine and heated, oil-treated experimental vaccines gave highly reproducible results showing graded responses to graded doses.
Ribi, E. (Rocky Mountain Laboratory, Hamilton, Mont.), R. L. Anacker, R. Brown, W. T. Haskins, B. Malmgren, K. C. Milner, and J. A. Rudbach. Reaction of endotoxin and surfactants. I. Physical and biological properties of endotoxin treated with sodium desoxycholate. J. Bacteriol. 92:1493-1509. 1966.-Endotoxins from three species of gram-negative bacteria were shown to be dissociated by the bile salt sodium deoxycholate (NaD) into nontoxic subunits with molecular weights of about 20,000. When the bile salt was removed by dialysis, the subunits reaggregated in an orderly manner to form a relatively uniform population of biologically active endotoxin particles with average molecular weights of 500,000 to 1,000,000. If a small amount of human plasma was added to the dissociated endotoxin before removal of the NaD, reassociation apparently did not occur and the preparation remained nonpyrogenic. However, the plasma protein could subsequently be removed from the endotoxin subunits, and reaggregation to the toxic form would then occur. The studies on the physical nature of endotoxin performed with biophysical solution techniques were supplemented and confirmed by direct examination of the endotoxin polymers by electron microscopy. The results of these studies were consonant with the theory that the biologically active endotoxic elements are composed of micellar aggregates of linear lipopolysaccharide subunits.