Escherichia coli in extra-intestinal infections | Epidemiology & Infection | Cambridge Core (original) (raw)

References

Achtman, M., Mercer, A., Kusecek, B., Pohl, A.. Heuzenroeder, M., Aronson, W., Sutton, A. & Silver, R. P. (1983). Six widespread clones among Escherichia coli K 1 isolates. Injection and Immunity 39, 315–335.CrossRefGoogle Scholar

Bar-Sharit, Z., Ofek, I., Goldman, D., Mirelman, D. & Sharon, X. (1977). Mannose residues on phagocytes as receptors for the attachment of Escherichia coli and Salmonella typhi. Biomedical and Biophysical Research Communication 78, 455—160.Google Scholar

Barry, G. T. & Goebel, W. F. (1957). Colominic acid, a substance of bacterial origin related to sialic acid. Nature (London) 179, 206–208.CrossRefGoogle ScholarPubMed

Bergström, T., Lincoln, K., Orskov, F., Orskov, I. & Winherg, J. (1967). Studies of urinary tract infections in infancy and childhood. Journal of Pediatrics 71, 13–20.CrossRefGoogle ScholarPubMed

Bettelheim, K. A. & Taylor, J. (1969). A study of Escherichia coli isolated from chronic urinary infections. Journal of Medical Microbiology 2, 225–230.CrossRefGoogle Scholar

Björksten, B., Bortolussi, R., Gothefors, L. & Quie, P. G. (1976). Interaction of E. coli strains with human serum: Lack of relationship to K 1 antigen. Journal of Pediatrics 89, 892–899.CrossRefGoogle Scholar

Björkstén, B. & Kaijser, B. (1978). Interaction of human serum and neutrophils with Escherichia coli strains: difference between strains isolated from urine of patients with pyelonephritis or asymptomatic bacteriuria. Infection and Immunity 22, 308–311.CrossRefGoogle ScholarPubMed

Blumenstock, E. & Jann, K. (1982). Adhesion of piliated Eschericia coli strains to phagocytes: difference between bacteria with mannose-sensitive pili and those with mannose-resistant pili. Infection and Immunity 35, 264–269.CrossRefGoogle Scholar

Bolanos, R. & De Witt, C. W. (1966). Isolation and characterization of the K1 (L) antigen of Escherichia coli. Journal of Iiacteriology 91, 987–996.CrossRefGoogle ScholarPubMed

Bollgren, I. & Winherg, J. (1976). The periurethral aerobic bacterial flora in girls highly susceptible to urinary infections. Ada Paediatrica Scandinavica 65, 81–87.CrossRefGoogle ScholarPubMed

Bortolussi, R., Ferrieri, P., BjörkstéN, B. & Quie, P. B. (1979). Capsular K1 polysaccharide of Escherichia coli. Relationship to virulence in newborn rats and resistance to phagocytosis. Infection and Immunity 25, 293–298.Google ScholarPubMed

Braun, V. (1981). Escherichia coli cells containing the plasmid Col V produce the iron ionophore aerobactin. FEMS Microbiology Letters 11, 225–228.CrossRefGoogle Scholar

Brinton, C. C. Jr, Buzzell, A. & Lauffer, M. A. (1954). Electrophoresis and phage susceptibility studies on a filament-producing variant of the E. coli B bacterium. Biochemical and Biophysical Ada 15, 533–542.CrossRefGoogle Scholar

Brooks, H. J. L., O'guady, F., McSherry, A. & Cattell, W. R. (1980). Uropathogenic properties of Escherichia coli in recurrent urinary tract infection. Journal of Medical Microbiology 13, 57–58.CrossRefGoogle ScholarPubMed

Caugant, D. A., Levin, B. R. & Selander, R. K. (1981). Genetic diversity and temporal variation in the E. coli population of a human host. Genetics 98, 467–490.CrossRefGoogle Scholar

Cavalieri, S. J. & Snyder, I. S. (1982 a). Cytotoxic activity of partially purified Escherichia coli alpha haemolysin. Journal of Medical Microbiology 15, 11–21.CrossRefGoogle ScholarPubMed

Cavalieri, S. J. & Snyder, I. S. (1982 b). Effect of Escherichia coli alpha-hemolysin on human peripheral leucocyte viability in vitro. Infection and Immunity 36, 455–461.CrossRefGoogle ScholarPubMed

Cavalteri, S. J. & Snyder, I. S. (1982 c.) Effect of Escherichia coli alpha-hemolysin on human peripheral leucocyte function in vitro. Infection and Immunity 37, 966–974.CrossRefGoogle Scholar

Cheasty, T., Gross, R. J. & Rowe, B. (1977). Incidence of K 1 antigen in Escherichia cdli isolated from blood and cerebrospinal fluid of patients in the United Kingdom. Journal of Clinical Pathology 30, 945–950.CrossRefGoogle Scholar

Chick, S., Harber, M. J., MacKenzie, R. & Asscher, A. W. (1981). Modified method for studying bacterial adhesion to isolated uroepithelial cells and uromucoid. Infection and Immunity 34, 256–261.CrossRefGoogle ScholarPubMed

Cooke, E. M. & Ewins, S. P. (1975). Properties of strains of Escherichia coli isolated from a variety of sources. Journal of Medical Microbiology 8, 107–111.CrossRefGoogle ScholarPubMed

Cross, A. S., Gemski, P., Sadoff, J. C., Ørskov, F. & Ørskov, I. (1984). The importance of the K 1 capsule in invasive infections caused by Escherichia coli. Journal of Infectious Diseases 149, 184–193.CrossRefGoogle Scholar

De Boy, J. M., Wachsmuth, J. K. & Davis, B. R. (1980). Hemolytic activity in enterotoxigenic and non enterotoxigenic strains of Escherichia coli. Journal of Clinical Microbiology 12, 193–198.CrossRefGoogle ScholarPubMed

Dudgeon, L. S., Wordley, E. & Bawtree, F. (1921). On Bacillus coli infections of the urinary tract, especially in relation to haemolytic organisms. Journal of Hygiene A20, 137–144.CrossRefGoogle ScholarPubMed

Duguid, J. P. & Gillies, R. R. (1957). Fimbriae and adhesive properties of dysentery bacilli. Journal of Pathology and Bacteriology 74, 397–411.CrossRefGoogle Scholar

Duguid, J. P. & Old, D. C. (1980). Adhesive properties of Enterobacteriaceae. In Receptors and Recognition (ed. Beachy, E. H.), series B, vol. 6, pp. 185–217. London: Chapman & Hall.Google Scholar

Emödy, L., Pal, N., Safonova, N. V., Kuch, B. & Golutva, N. K. (1980). Alpha-haemolysin: an additive virulence factor in Escherichia coli. Ada Microbiologica Academiae Scientiarum Hungaricae 27, 333–342.Google ScholarPubMed

Escherich, T. (1885 a). Die Darmbakterien des Neugeborenen und Siiuglings. Fortschritte der Medizin 3, 515–522.Google Scholar

Escherich, T. (1885 b). Die Darmbakterien des Neugeborenen und Siiuglings. Fortschrilte der Medizin 3, 547–554.Google Scholar

Evans, D. J., Evans, D. G., Höhne, C., Noble, M. A., Haldane, E. V., Lior, H. & Young, L. S. (1981). Hemolysin and K antigens in relation to serotype and hemagglutination type of Escherichia coli isolated from extraintestinal infection. Journal of Clinical Microbiology 13, 171–178.CrossRefGoogle Scholar

Ewertsen, H. W. (1946). Dyreexperimentelle Undersogelser over Colibacillernes Patogenitet og Ejfekten af Coliserum, pp. 1–192. Copenhagen: Arnold Busck.Google Scholar

Fowler, J. E. Jr & Stamey, T. A. (1977). Studios of introital colonization in women with recurrent urinary infections. VII. The role of bacterial adherence. Journal of Urology 117, 472–476.CrossRefGoogle Scholar

Gadeherg, O. V. & Ørskov, I. (1984). In vitro cytotoxic oftoot of a-hemolvtic Escherichia coli on human blood granulocytes. Infection and Immunity 45, 255–260.CrossRefGoogle Scholar

Gadeberg, O. V., Ørskov, I. & Rhodes, J. M. (1983). Cytotoxic effect of an alpha-hemolytic Escherichia coli strain on human blood monocytes and granulocytes in vitro. Infection and Immunity 41, 358–364.CrossRefGoogle ScholarPubMed

Girson, F. & Magrath, D. I. (1969). The isolation and characterization of a hydroxatnie acid (aerobactin) formed by Aerobacter aerogenes 62–1. Biochemical and Biophysical Ada 192, 175–184.Google Scholar

Glynn, A. A., Brumfitt, W. & Howard, C. J. (1971). K antigens of Escherichia coli and renal involvment in urinary tract infections. Lancet i, 514–516.CrossRefGoogle Scholar

Glynn, A. A. & Howard, C. J. (1970). The sensitivity to complement of strains of Escherichia coli related to their K antigens. Immunology 18, 331–346.Google ScholarPubMed

Goldhar, J., Perry, R. & Ofek, I. (1984). Extraction and properties of nonfimbrial mannoseresistant hemagglutinin from a urinary isolate of Escherichia coli. Current Microbiology 11, 49–54.CrossRefGoogle Scholar

Goldman, R. C., Joiner, K. & Leive, L. (1984). Serum resistant mutants of Escherichia coli O111 contain increased lipopolysaccharide, lack an O antigen containing capsule and have more of their lipid A core with O antigen. Journal of Bacteriology 159, 877–882.CrossRefGoogle Scholar

Gower, P. E., Taylor, P. W., Koutsaimanis, K. G. & Roberts, A. P. (1972). Serum bactericidal activity in patients with upper and lower urinary tract infections. Clinical Science and Molecular Medicine 43, 13–22.Google ScholarPubMed

Grados, O. & Ewing, W. H. (1970). Antigenic relationship between Escherichia coli and Neisseria meningitidis. Journal of Infectious Diseases 122, 100–103.CrossRefGoogle ScholarPubMed

Gross, R. J., Cheasty, T. & ROWE, B. (1977). Isolation of bacteriophages specific for the K 1 polysaccharide antigen of Escherichia coli. Journal of Clinical Microbiology 6. 548–550.CrossRefGoogle Scholar

Grossman, N. & Leive, L. (1984). Complement activation via the alternative pathway by purified Salmonella lipopolysaccharide is affected by its structure but not its O antigen length. Journal of Immunology 132, 376–385.CrossRefGoogle Scholar

Grüneberg, R. N. (1969). Relationship of infecting urinary organisms to the fecal flora in patients with symptomatic urinary infection. Lancet ii, 766–768.CrossRefGoogle Scholar

Grüneberg, R. N., Leigh, D. A. & Brumfitt, W. (1968). Escherichia coli serotypes in urinary infection: studies in domiciliary, antenatal and hospital practice. In Urinary Tract Infection (ed. O'Grady, F. & Brumfitt, W.), pp. 68–79. London: Oxford University Press.Google Scholar

Hacker, J., Schröter, G., Schrettenbrunner, A., Hughes, C. & Goebel, W. (1983). Hemolytic Escherichia coli strains in the human fecal flora as potential urinary pathogens. Zentralblatt für Bakteriologie und Hygiene(I. Abt. Orig. A) 254. 370–378.Google Scholar

Hagberg, L., Engberg, I., Freter, R., Lam, J., Olling, S. & Svanborg Edén, C. (1983 a). Ascending, unobstructed urinary tract infection in mice caused by pyelonephritogenic Escherichia coli of human origin. Infection and Immunity 40, 273–283.CrossRefGoogle ScholarPubMed

Hagberg, L., Hull, R., Hull, S., Falkow, S., Freter, R. & Svanborg Edén, C. (1983 b)- Contribution of adhesin to bacterial persistence in the mouse urinary tract. Infection and Immunity 40, 265–272.CrossRefGoogle ScholarPubMed

Hagberg, L., Hull, R., Hull, S., McGhee, J. R., Michalek, S. M. & Svanborg Edén, C.. (1984). Difference in susceptibility to gram-negative urinary tract infection between C3H/He.I and C3H/HeN mice. Infection and Immunity 46, 839–844.CrossRefGoogle Scholar

Hagberg, L., Jodal, U., Korhonen, T. K., Lidin-Janson, G., Lindrerg, U. & Svanborg Edén, C. (1981). Adhesion, haemagglutination, and virulence of _Escherichia coli_causing urinary tract infections. Infection and Immunity 31, 564–570.CrossRefGoogle Scholar

Handrück, W., Steinrück, H., Spencker, F.-B., Braun, W. & Vogtman, C. (1982). Infektionen durch E. coli in der Neonatalperiode. II. Bericht über 61 Erkrankungen. Deutsches Gesundheitsicesen 37, 2212–2219.Google Scholar

Hanson, L. Å., Ahlstedt, S., Fasth, A., Jodal, U., Kaijser, B.. Larsson, P., Lindberg, C., Olling, S., Sohl-Åkerlund, A. & Svanborg-Eden, C. (1977). Antigens of Escherichia coli. human immune response, and the pathogenesis of urinary tract infections. Journal of Infectious Diseases 136, Suppl. S 144–149.CrossRefGoogle ScholarPubMed

Harber, M. J., Chick, S., MacKenzie, R. & Asscher, A. W. (1982). Lack of adherence to epithelial cells by freshly isolated urinary pathogens. Lancet i. 586–588.CrossRefGoogle Scholar

HENKEL, W. (1970). Serumresistenz und Nephropathogenitiit antigenetisch definierten Stämme von E. coli. Zeitschrift für Medizinische Mikrobiologie und lmmunologie 156. 44–59.CrossRefGoogle Scholar

Hughes, C, Phillips, R. & Roberts, A. P. (1982). Serum resistance among Escherichia coli strains causing urinary tract infection in relation to O type and the carriage of hemolysin. eolicin, and antibiotic resistance determinants. Infection and Immunity 35. 270–275.CrossRefGoogle Scholar

HULL, R. A., Gill, R. E., HSU, P., Minshew, B. H. & FALKOW, S. (1981). Construction and expression of recombinant plasmids encoding type 1, or D-mannose-resistant pili from a urinary tract infection Escherichia coli isolate. Injection and Immunity 33, 933–938.CrossRefGoogle ScholarPubMed

Jann, K. & Jann, B. (1983). The K antigens of Escherichia coli. Progress in Allergy 33, 53–79.Google Scholar

Jann, K., Jann, B. & Schmidt, G. (1981). SDS polyacrylamide gel electrophoresis and serological analysis of pili from _Escherichia coli_of different pathogenic origin. FEMS Microbiology Letters 11, 21–25.CrossRefGoogle Scholar

Kaijser, B. (1973). Immunology of Escherichia coli: K antigen and its relation to urinary-tract infection. Journal of Infectious Diseases 127, 670–677.CrossRefGoogle ScholarPubMed

Kaijser, B., Hanson, L. Å., JODAL, U., Lidin-Janson, G. & ROBbiNS, J. B. (1977). Frequency of E. coli K antigens in urinary-tract infections in children. Lancet i, 663–664.CrossRefGoogle Scholar

Källenius, G. & Möllby, R. (1979). Adhesion of Escherichia coli to human periurethral cells correlated to mannose-resistant agglutination of human erythrocytes. FEMS Microbiology Letters 5, 295–299.CrossRefGoogle Scholar

Källenius, G., Möllby, R. & Winberg, J. (1980). In vitro adhesion of uropathogenic Escherichia coli to human periurethral cells. Infection and Immunity 28, 972–980, 1980.CrossRefGoogle ScholarPubMed

Källenius, G., Mollby, R., Svenson, S. B., Winberg, J. & Hultberg, H. (1980). Identification of a carbohydrate receptor recognized by uropathogenic Escherichia coli. Infection, Suppl. 3, S 288–293.CrossRefGoogle Scholar

Källenius, G., Svenson, S. B., Hultberg, H., Mollby, R., Helin, I., Cedergren, B. & Winberg, J. (1981). Occurrence of P-fimbriated _Escherichia coli_in urinary tract infections. Lancet ii, 1369–1372.CrossRefGoogle Scholar

Kauffmann, F. (1940). Zur Serologie des I-Antigens in der Salmonella Gruppe. Acta Pathologica et Microbiologica Scandinavica 17, 135–144.CrossRefGoogle Scholar

Kauffmann, F. (1943). Ober neue thermolabile Korperantigene der Coli-Bakterien. Acta Pathologica et Microbiologica Scandinavica 20, 21–44.Google Scholar

Kauffmann, F. (1944 a). Zur Serologie der Coli-Gruppe. Acta Pathologica et Microbiologica Scandinavica 21, 20–45.CrossRefGoogle Scholar

Kauffmann, F. (1944 b). Untersuchungen über die Körper-Antigene der Coli-Bakterien. Acta Pathologica et Microbiologica Scandinavica 21, 46–64.CrossRefGoogle Scholar

Kauffmann, F. & Vahlne, G. (1945). Über die Bedeutung des serologischen Formenwechsels für de Bakteriophagenvvirkung in der Coli-Gruppe. Acta Pathologica et Microbiologica Scaridinavka 22, 119–137.CrossRefGoogle Scholar

Kétyi, I. (1981). Suckling mouse model of urinary tract infections caused by Escherichia coli. Acta Microbiologica Academiae Scientiamtn Hungaricae 28, 393–399.Google ScholarPubMed

Kétyi, I., Emödy, L., Kontrohr, T., Vertenyi, A., Pacsa, S., Avdeeva, T. A., Safonova, N. V. & Golutova, N. K. (1978). Mouse lung oedema caused by a toxic substance of Escherichia coli strains. Acta Microbiologica Academiae Scientiarum Hungaricae 25, 307–317.Google ScholarPubMed

Kétyi, I., Naumann, G. & Nimmich, W. (1983). Urinary tract infectivity of R strains of Escherichia coli carrying various virulence factors. Acta Microbiologica Academiae Scientiarum Hungaricae 30, 155–161.Google ScholarPubMed

Klemm, P., Ørskov, I. & Ørskov, F. (1983). Isolation and characterization of F12 adhesive fimbrial antigen from uropathogenic Escherichia coli strains. Infection and Immunity 40, 91–96.CrossRefGoogle ScholarPubMed

Knipschildt, H. E. (1945). Undersogelser over Coligruppens Serologi, pp. 1–156. Copenhagen: Nyt Nordisk Forlag, Arnold Busck.Google Scholar

Korhonen, T. K., Leffler, H. & Svanborg Eden, C. (1981). Binding specificity of piliated strains of Escherichia coli and Salmonella typhimurium to epithelial cells, Saccharomyces cerevisiae and erythrocytes. Infection and Immunity 32, 796–804.CrossRefGoogle ScholarPubMed

Korhonen, T. K., Väisänen, V., Saxén, H., Hultberg, H. & Svenson, S. B. (1982). P-antigen-recognizing limbriae from human uropathogenic Escherichia coli strains. Infection and Immunity 37, 286–291.CrossRefGoogle ScholarPubMed

Korhonen, T. K., Väisänen-Rhen, V., Rhen, M., Pere, A., Parkkinen, J. & Finne, J. (1984). Escherichia coli fimbriae recognizing sialyl galactosides. Journal of Bacteriology 159, 762–766, 1984.CrossRefGoogle ScholarPubMed

Korhonen, T. K., Valtonen, M. V., Parkkinen, J., Väisänen-Rhen, V., Finne, J., Ørskov, F., Ørskov, I., Svenson, S. B. & Mäkelä, P. H. (1985) _Escherichia coli_strains associated with neonatal sepsis and meningitis: Serotypes, hemolysin production and receptor recognition. Infection and Immunity 48, 486–491.CrossRefGoogle Scholar

kreger, B. E., Craven, D. E., Carling, P. C. & McCabe, W. R., (1980). Gram-negative bacteremia. III. Reassessment of etiology, epidemiology and ecology in G12 patients. American Journal of Medicine 68, 332–343.CrossRefGoogle Scholar

Kunin, C. M. (1982). Urinary tract infection: new information concerning pathogenesis and management. Journal of Urology 128, 1233.CrossRefGoogle Scholar

Kunin, C. M., Deutscher, R. & Paquin, A. (1964). Urinary tract infection in school children: an epidemiological, clinical and laboratory study. Medicine 43, 91–130.Google ScholarPubMed

Labigne-Roussel, A. F., Lark, D., Schoolnik, G. & Falkow, S. (1984). Cloning and expression of an afimbrial adhesin (AFA-I) responsible for P blood group-independent, mannose-resistant hemagglutination from a pyelonephritic _Escherichia coli_strain. Infection and Immunity 46, 251–259.CrossRefGoogle Scholar

Leffler, H. & Svanborg Edén, C. (1981). Chemical identification of a glycosphincolipid receptor for Escherichia coli attaching to human urinary epithelial cells and agglutinating human erythrocytes. FEMS Microbiology Letters 8, 127–134.CrossRefGoogle Scholar

Lidin-Janson, G., Hanson, L. Å., Kaijser, B., Lincoln, K., Lindberg, U., Olling, S. & Wedel, H. (1977). Comparison of Escherichia coli from bacteriuric patients with those from faeces of healthy school children. Journal of Infectious Diseases 136, 346–353.CrossRefGoogle Scholar

Lindberg, U., Hanson, L. Å., Jodal, U., Lidin-Janson, G., Lincoln, K. & Olling, S. (1975 a). Asymptomatic bacteriuria in schoolgirls. II. Differences in Escherichia coli causing asymptomatic and symptomatic bacteriuria. Acta Paediatrica Scayidinavica 64, 432–436.CrossRefGoogle Scholar

Lindberg, U., Jodal, U., Hanson, L. Å. & Kauser, B. (1975 b). Asymptomatic bacteriuria in schoolgirls. IV. Difficulties of level diagnosis and the possible relation to the character of infecting bacteria. Acta Paediatrica Scandinavica 64, 574–580.CrossRefGoogle Scholar

Linggood, M. A. & Ingram, P. L. (1982). The role of alpha haemolysin in the virulence of Escherichia coli for mice. Journal of Medical Microbiology 15, 23–30.CrossRefGoogle ScholarPubMed

Lomberg, H., Hellström, M., Jodal, U., Leffler, H., Lincoln, K. & Svanborg Eden, C. (1984). Virulence-associated traits in _Escherichia coli_causing first and recurrent episodes of urinary tract infection in children with or without reflux. Journal of Infectious Diseases 150, 561–569.CrossRefGoogle ScholarPubMed

Mabeck, C. E., Ørskov, F. & Ørskov, I. (1971 a). Escherichia coli serotypes and renal involvement in urinary tract infection. Lancet i, 1312–1314.CrossRefGoogle Scholar

Mabeck, C. E., Ørskov, F. & Ørskov, I. (1971 b). Studies in urinary tract infections. VIII. Escherichia coli O: H serotypes in recurrent infections. Acta Medico Scandinavica 190, 279–282.CrossRefGoogle Scholar

McCabe, W. R., Carling, P. C., Bruins, S. & Greely, A. (1975). The relation of K antigen to virulence of coli. Journal of Infectious Diseases 131, 6–10.CrossRefGoogle ScholarPubMed

McCabe, W. R., Kaijser, B., Ollings, J., Uwaydah, M. & Hanson, L. Å. (1978). Escherichia coli in bacteremia: K and O antigens and serum sensitivity of strains from adults and neonates. Journal of Infectious Diseases 138, 33–41.CrossRefGoogle Scholar

McCracken, G. H., Sarff, L. D., Glode, M. P., Mize, S. G.. Schiffer, M. S., Robbins, J. B.. Gotschlich, E. C.Ørskov, I. & Ørskov, F. (1974). Relation between Escherichia coli Kl capsular polysaccharide antigen and clinical outcome in neonatal meningitis. Lancet ii, 246–250.CrossRefGoogle Scholar

McGeachie, J. (1965). Serological grouping of urinary Escherichia coli. Journal of Clinical Pathology 18, 428–431.CrossRefGoogle ScholarPubMed

Maiztegui, J. I., Biegeleisen, J. Z. Jr. Cherry, W. B. & Kaas, E. H. (1965). Bacteriemia due to gram-negative rods. A clinical bacteriologic, serologic, and immunofluoreseent study. New England Journal of Medicine 272. 222–229.CrossRefGoogle Scholar

Mangan, D. F. & Snyder, I. S. (1970). Mannose-sensitive interaction of Escherichia coli with human peripheral leucocytes in vitro. Infection and Immunity 26, 520–527.CrossRefGoogle Scholar

Minshew, B., Jorgensen, J., Counts, G. W. & Falkow, S. (1978). Association of hemolysin production, hemagglutination of human erythrocytes. and virulence for chicken embryos of extraintestinal _Escherichia coli_isolates. Infection and Immunity 20. 50–54.CrossRefGoogle Scholar

Moll, A., Manning, P. A. & Timmis, K. N. (1980). Plasmid-determined resistance to serum activity: a major membrane protein, the _tra_7'gene product is responsible for plasmid specified serum resistance in Escherichia coli. Infection and Immunity 28. 359–367.CrossRefGoogle Scholar

Mulder, C. J. J., Van Alimien, L. & Zanen, H. C. (1984). Neonatal meningitis caused by Escherichia coli in The Netherlands. Journal of Infectious Diseases 150, 935–940.CrossRefGoogle ScholarPubMed

Mulder, C. J. J. & Zanen, H. C. (1984). A study of 280 cases of neonatal meningitis in The Netherlands. Journal of Infection 8. 177–184.CrossRefGoogle Scholar

Myerowitz, R. L., Alhers, A. C., Yee, R. B. & Ørskov, F. (1977). Relationship of K1 antigen to biotypo in clinical isolates of Escherichia coli. Journal of Clinical Microbiology 6, 124–127.CrossRefGoogle ScholarPubMed

Nowicki, B., Rhen, M., Väisänen-Rhen, V., Pere, A. & Korhonen, T. K. (1984). Immunofluoreseence study of fimbrial phase variation in Escherichia coli KS71. Journal of Bacteriology 160, 691–695.CrossRefGoogle ScholarPubMed

O'hanley, P., Lark, D., Falkow, S. & Schoolnik, G. (1985). Molecular basis of Escherichia coli colonization of the upper urinary tract in BALB/c mice: gal-gal pili immunization prevents E. coli pyelonephritis. Journal of Clinical Investigation 75, 347–360.CrossRefGoogle Scholar

Olling, S. (1977). Sensitivity of gram-negative bacilli to the serum bactericidal activity: A marker of host-parasite relationship in acute and persisting infections. Scandinavian Journal of Infectious Diseases, Suppl. 10, 1–40.CrossRefGoogle Scholar

Olling, S., Hanson, L. A., Holmgren, J., Jodal, U., Lincoln, K. & Lindkerg, U. (1973). The bactericidal effect of normal human serum on _E. coli_strains from normals and from patients with urinary tract infections. Infection 1, 24–28.CrossRefGoogle Scholar

Opal, S., Cross, A. & Gemski, P. (1982). K antigen and serum sensitivity of rough Escherichia coli. Infection and Immunity 37, 956–960.CrossRefGoogle ScholarPubMed

Ørskov, I., Birch-Andersen, A., Duguid, J., Stenderup, J. & Ørskov, F. (1985). An adhesive protein capsule of Escherichia coli. Infection and Immunity 47, 191–200.CrossRefGoogle ScholarPubMed

Ørskov, I., Kerencz, A. & Ørskov, F. (1980). Tamm-Horsfall protein or uromucoid is the normal urinary slime that traps type 1 fimbriated Escherichia coli. Lancet i, 887.CrossRefGoogle Scholar

Ørskov, F. & Ørskov, I. (1967). In: Round table conference on non-obstructive urinary tract infections in children. Proceedings of the 15th Northern Pediatric Congress, Bergen, 1967. Ada Paedialrica Scandinavica, suppl. 177, 44–45.Google Scholar

Ørskov, F. & Ørskov, I. (1975). Escherichia coli O: H serotypes isolated from human blood. Acta Pathologica et Microbiologica Scandinavica B 83, 585–600.Google Scholar

Ørskov, I. & Ørskov, F. (1983). Serology of Escherichia coli fimbriae. Progress in Allergy 33, 80–105.Google ScholarPubMed

Ørskov, I. & Ørskov, F. (1985). Some _Escherichia coli_adhesins. In Seminars in Infectious Diseases. Vol. V. Bacterial Vaccines. (In the Press.)Google Scholar

Ørskov, I., Ørskov, F. & Birch-Andersen, A. (1980). Comparison of coli fimbrial antigen F7 with type 1 fimbriae. Infection and Immunity 27, 657–666.CrossRefGoogle ScholarPubMed

Ørskov, I., Ørskov, F., Birch-Andersen, A., Kanamori, M. & Svanborg Edén, C. (1982 b). O, K, H and fimbrial antigens in _Escherichia coli_serotypes associated with pyelonephritis and cystitis. Scandinavian Journal of Infectious Diseases, suppl. 33, 18–25.Google Scholar

Ørskov, I., Ørskov, F., Birch-Andersen, A., Klemm, P. & Svanborg Edén, C. (1982 a). Protein attachment factors: fimbriae in adhering Escherichia coli. In Seminars in Infectious Diseases. Vol. IV. Bacterial Vaccines, pp. 97–103. New York: Thieme-Stratton.Google Scholar

Ørskov, F., Ørskov, I., Evans, D. J., Sack, R. B., Sack, P. A. & Wadström, T. (1976). Special Escherichia coli serotypes among enterotoxigenic strains from diarrhoea in adults and children. Medical Microbiology and Immunology 162, 73–80.CrossRefGoogle ScholarPubMed

Ørskov, F., Ørskov, I., Jann, B. & Jann, K. (1971). Immunoelectrophoretic patterns of extracts from all Escherichia coli O and K antigen test strains. Correlation with pathogenicity. Acta Pathologica et Microbiologica Scandinavica, B, 79, 142–152.Google Scholar

Ørskov, I., Ørskov, F., Jann, B. & Jann, K. (1977). Serology, chemistry, and genetics of O and K antigens of Escherichia coli. Bacteriological Reviews 41, 667–710.CrossRefGoogle Scholar

Ørskov, F., Ørskov, I., Sutton, A., Schneerson, R., Lin, W., Eoen, W., Hoff, G. E. & Rohmns, J. B. (1979). Form variation in Escherichia coli K1: Determined by O-acetylation of the capsular polysaccharide. Joxirnal of Experimental Medicine 149, 669–685.CrossRefGoogle ScholarPubMed

Parkkinen, J., Finne, J., Achtman, M., Vaisanen, V. & Korhonen, T. K. (1983). Escherichia coli strains binding neuraminyl α2–3 galactosides. Biochemical and Biophysical Research Communications 111, 456–461.CrossRefGoogle Scholar

Pluschke, G. & Achtman, M. (1984). Degree of antibody-independent activation of the classical complement pathway by K 1 Escherichia coli differs with O antigen type and correlates with virulence of meningitis in newborns. Infection and Immunity 43, 684–692.CrossRefGoogle Scholar

Pluschke, G., Mavden, J., Achtman, M. & Levine, R. P. (1983). Role of capsule and the O antigen in resistance of O 18: K 1 Escherichia coli to complement-mediated killing. Infection and Immunity 42, 907–913.CrossRefGoogle Scholar

Quackenbush, R. L. & Falkow, S. (1979). Relationship between Colicin V activity and virulence in Escherichia coli. Infection and Immunity 24, 562–564.CrossRefGoogle ScholarPubMed

Rhen, M., Mäkelä, P. H. & Korhonen, T. K. (1983). P-fimbriae of Escherichia coli are subject to phase variation. FEMS Microbiology Letters 19, 207–271.CrossRefGoogle Scholar

Robbins, J. B., Mc Cracken, G. H., Gotschlich, E. C, Øhskov, F., Øhskov, I. & Hanson, L. Å. (1974 a). Escherichia coli K 1 capsularpolysaccharide associated with neonatal meningitis. New England Journal of Medicine 290, 1216–1220.CrossRefGoogle Scholar

Robbins, J. B., Parke, J. C. Jr, Schneehson, R. & Whisnant, J. K. (1973). Quantitative measurement of ‘natural’ and immunization-induced _Haemophilus influenzae_type b eapsular polysaccharide antibodies. Pediatric Research 7, 103–110.CrossRefGoogle Scholar

Robbins, J. B., Schneerson, R., Liu, T. Y., Schiffer, M. S., Schiffman, G., Myerowitz, R. L., McCracken, G. H., Ørskov, I. & Ørskov, F. (1974 b). Cross-reacting bacterial antigens and immunity to disease caused by encapsulated bacteria. 4th International Convocation on Immunology, Buffalo, N.Y., 1974 (ed. Neter, E. and Milgrom, F.), pp. 218–241. Basel: S. Karger.Google Scholar

Robbins, J. B., Schneerson, R., Parke, J. C., Liu, T. Y., Handzel, Z. T., Ørskov, I. & Ørskov, I. (1976). Escherichia coli O 75: Kf 147: H 5 cross reactive with eapsular polysaccharide of Haemophilus influenzae type B: studies of the immunochemical relationship and properties of heteroimmunization in humans to prevent septicemic disease caused by H. influenzae type B. In The Role of Immunological Factors in Infections, Allergy and Autoimmune Processes(ed. Beers, R. F. Jr and Bassett, E. G.), pp. 103–120. New York: Raven Press.Google Scholar

Rowley, D. (1968). Sensitivity of rough grain-negative bacteria to the bactericidal action of serum. Journal of Bacteriology 95, 1647–1650.CrossRefGoogle Scholar

Sack, R. & Miller, C. E. (1969). Progressive changes of Vibrio serotypes in germ-free mice infected with Vibrio cholerae. Journal of Bacteriology 99, 688–695.CrossRefGoogle ScholarPubMed

Salit, I. E. & Ggtschlich, E. C. (1977). Type 1 Escherichia coli pili. characterization of binding to monkey kidney cells. Journal of Experimental Medicine 146: 1182–1194.CrossRefGoogle ScholarPubMed

Sarff, L. D., McCracken, G. H., Schiffer, M. S., Glode, M. P., Robbins, J. B.. Ørskov, I. & Ørskov, I. (1975). Epidemiology of Escherichia coli K 1 in healthy and diseased newborns. Lancet i, 1099–1104.CrossRefGoogle Scholar

Schaeffer, A. J., Amundsen, S. K. & Schmidt, L. N. (1979). Adherence of Escherichia coli to human urinary tract epithelial cells. Infection and Immunity 24: 753–759.CrossRefGoogle ScholarPubMed

Schaeffer, A. J., Jones, J. M., Duncan, J. L., Chmiel, J. S., Plotkin, B. J. & Falkowski, W. S. (1982). Adhesion of uropathogenic Escherichia coli to epithelial cells from women with recurrent urinary tract infection. Infection 10, 186–191.CrossRefGoogle ScholarPubMed

Schneerson, R., Bradshaw, M., Whinant, J. K., Myerowitz, R. L., C., Parke. J. Jr, & Robbins, J. B. (1972). An Escherichia coli antigen cross-reactive with eapsular polysaccharide of Haemophilus influenzae type b. Journal of Immunology 108, 1551–1562.CrossRefGoogle ScholarPubMed

Sietzen, W. (1979). Typisierung von Escherichia-coli-O- und -K-Antigenen bei Patienten mit Harnwegsinfektionen. Infektion 7, Suppl. 2, S197–S206.Google Scholar

Silver, R. P., Finn, C. W., Vann, W. F., Aronson, W., Schneerson, R., Kretschmer, P. J. & Garon, C. F. (1981). Molecular cloning of the K 1 eapsular polysaccharide genes of E. coli. Nature (London) 289, 696–698.CrossRefGoogle Scholar

Silver, R. P., Vann, W. F. & Aronson, W. (1984). Genetic and molecular analysis of Escherichia coli K 1 antigen genes. Journal of Bacteriology 157, 568–575.CrossRefGoogle Scholar

Silverblatt, F. J., Dreyer, J. S. & Schauer, S. (1979). Effect of pili on susceptibility of Escherichia coli to phagocytosis. Infection and Immunity 24, 218–223.CrossRefGoogle ScholarPubMed

Sjöstkdt, S. (1946). Pathogenicity of certain serological types of A1, coli. Their mouse toxicity, hemolytic power, capacity for skin necrosis and resistance to phagocytosis and bactericidal faculties of human blood. Acta Pathologica et Microbiologies Scandinaviea, Suppl. 63, 1–148.Google Scholar

Smith, H. W. (1963). The haemolysins of Escherichia coli. Journal of Pathology and Bacteriology 83, 197–211.CrossRefGoogle Scholar

Smith, H. W. & Huggins, M. B. (1980). The association of 018, Ivl and H7 antigens and the Col V plasmid of a strain of Escherichia coli with its virulence and immunogenicity. Journal of General Microbiology 121, 387–400.Google Scholar

Smith, H. W. & Huggins, M. B. (1985). The toxic role of alphahaemolysin in the pathogenesis of experimental Escherichia coli infection in mice. Journal of General Microbiology 131, 395–403.Google ScholarPubMed

Smith, H. W. & Linggood, M. A. (1971). Observations on the pathogenic properties of the K 88. Hly and Ent plasmids of Escherichia coli with particular reference to porcine diarrhoea. Journal of Medical Microbiology 4, 467–485.CrossRefGoogle Scholar

Smith, T. (1927). Studies on pathogenic _B. coli_from bovine sources. III. Normal and serological induced resistance to B. coli and its mutant. Journal of Experimental Medicine 46, 141–153.CrossRefGoogle Scholar

Stamm, W. E., Counts, G. W., Running, K. R., Film, S., Turck, M. & Holmes, K. K. (1982). Diagnosis of coliform infection in acutely dysuric women. Neio England Journal of Medicine 307, 463–468.CrossRefGoogle ScholarPubMed

Stevens, P., Chu, C. L. & Young, L. S. (1980). Kl antigen content and the presence of an additional sialic acid containing antigen among bacteriemic Kl Escherichia coli : correlation with susceptibility to opsonophagocytosis. Infection and Immunity 29, 1055–1061.CrossRefGoogle Scholar

Stevens, P., Huang, N.-Y., Wells, W. D. & Young, L. S. (1978). Restricted complement activation by Escherichia coli with Kl capsular serotype: a possible role in pathogenicity. Journal of Immunology 121, 2174–2180.CrossRefGoogle Scholar

Svanborg Edén, C., Bjursten, L. M., Hull, R., Hull, S., Magnusson, K.-E., Moldovano, Z. & Leffler, H. (1984). Influence of adhesins on the interaction of Escherichia coli with human phagocytes. Infection and Immunity 44, 672–680.CrossRefGoogle ScholarPubMed

Svanborg Edén, C, Eriksson, B., Hanson, L. Å., Jodal, U., kaijser, B., Lidin Janson, G., Lindberg, U. & Olling, S. (1978). Adhesion to normal human uroepithelial cells of Escherichia coli from children with various forms of urinary tract infection. Journal of Pediatrics 93, 398–403.CrossRefGoogle Scholar

Svanborg Eden, C., Gotschlich, E. C., Korhonen, T. K., Leffler, H. & Schoolnik, G. (1983 a). Aspects on structure and function of pili on uropathogenic Escherichia coli. Progress in Allergy 33, 189–202.Google ScholarPubMed

Svanborg Edén, C., Hagberg, L., Hanson, L. Å., Lomberg, H., Ørskov, I. & Ørskov, F. (1982). Bacterial adherence and urinary tract infection. Lancet i, 961–962.Google Scholar

Svanborg Edén, C., Hagberg, L., Hanson, L. Å., Hull, S., Hull, R., Jodal, U., Leffler, H., Lomberg, H. & Straube, E. (1983 b). Bacterial adherence, a pathogenic mechanism in urinary tract infection caused by Escherichia coli. Progress in Allergy 33, 175–188.Google Scholar

Svanborg Edén, C. & Hansson, H. Å. (1978). Escherichia coli pili as possible mediators of attachment to human urinary tract epithelial cells. Infection and Immunity 21, 229–237.CrossRefGoogle Scholar

Svanborg Edén, C, Hanson, L. Å., Jodal, U., Lindberg, U. & Akerlund, A. S. (1976). Variable adherence to normal human urinary-tract epithelial cells of Escherichia coli strains associated with various forms of urinary-tract infection. Lancet ii, 490–492.CrossRefGoogle Scholar

Svanborg Edén, C., Jodal, U., kaijser, B., Leffler, H., Lomberg, H., Ørskov, F. & Ørskov, I. (1985). Adhesive properties and O, K, H and F antigens of E. coli associated with recurrent pyelonephritis. In Seminars in Infections Diseases. Vol. V. Bacterial Vaccines. (In the Press.)Google Scholar

Taylor, P. W. (1974). Sensitivity of some smooth strains of E. coli to the bactericidal action of normal human serum. Journal of Clinical Pathology 27, 626–629.CrossRefGoogle Scholar

Taylor, P. W. (1975). Genetical studies of serum resistance in Escherichia coli. Journal of General Microbiology 89, 57–66.CrossRefGoogle ScholarPubMed

Taylor, P. W. (1976). Immunochemical investigations of lipopolysaccharides and acidic polysaccharides from serum-sensitive and serum-resistant strains of Escherichia coli from urinary tract infections. Journal of Medical Microbiology 9, 405–412.CrossRefGoogle ScholarPubMed

Taylor, P. W. (1983). Bactericidal and bacteriolytic activity of serum against gram-negative bacteria. Microbiological Reviews 47, 46–83.CrossRefGoogle ScholarPubMed

Taylor, P. W. & Parton, R. (1970). A protein associated with serum resistance in Escherichia coli. Journal of Medical Microbiology 10, 225–232.CrossRefGoogle Scholar

Taylor, P. W. & Robinson, M. K. (1980). Determinants that increase the serum resistance of Escherichia coli. Infection and Immunity 29, 278–280.CrossRefGoogle ScholarPubMed

Timmis, K. N., Manning, P. A., Echarti, C., Timmis, J. K. & Moll, A. (1981). Serum resistance in E. coli. In Molecular Biology, Pathogenicity and Ecology of Bacterial Plasmids (ed. Levy, S. B., Clowes, R. C. and Koenig, E. L.), pp. 133–144. New York: Plenum.CrossRefGoogle Scholar

Tullus, K., Horlin, K., Svenson, S. B. & Källenius, G. (1984). Epidemic outbreaks of acute pyelonephritis caused by nosocomal spread of P fimbriated Escherichia coli in children. Journal of Infectious Diseases 150, 728–736.CrossRefGoogle Scholar

Turck, M., Petersdorf, R. G. & Fournier, M. R. (1962). The epidemiology of non-enteric Escherichia coli infections: prevalence of serologic groups. Journal of Clinical Investigation 41, 1760–1765.CrossRefGoogle Scholar

Uhlenhuth, P. (1897). Beiträge zur Pathogenität des Bacterium coli. Zeitschrifl für Hygiene und Infektionskrankheiten 26, 476–484.Google Scholar

Vahlne, G. (1945). Serological typing of the colon bacteria. Ada Pathologica et Microbiologica Scandinavka 62 (Suppl.), 1–127.Google Scholar

Valvano, M. A. & Crosa, J. H. (1984). Aerobactin iron transport genes commonly encoded by certain Col V plasmids occur in the chromosome of a human invasive strain of Escherichia coli K1. Infection and Immunity 46, 159–167.CrossRefGoogle Scholar

Van Den Bosch, J. F., De Graaf, J. & MacLaren, D. M. (1979). Virulence of Escherichia coli in experimental hematogenous pyelonephritis in mice. Infection and Immunity 25, 68–74.CrossRefGoogle ScholarPubMed

Van Den Bosch, J. F., Emödy, L. & Ketyi, I. (1982). Virulence of haemolytic strains of Escherichia coli in various animal models. FEMS Microbiology Letters 13, 427–430.Google Scholar

Van Den Bosch, J. F., Postma, P., De Graaf, J. & MacLahen, D. M. (1981). Haemolysis by urinary Escherichia coli and virulence in mice. Journal of Medical Microbiology 14, 321–331.CrossRefGoogle ScholarPubMed

Van Dijk, W. C, Verbrugh, H. A., Peters, R., Van Der Tol, M. E., Peterson, P. K. & Verhoef, J. (1979). Escherichia coli K antigen in relation to serum induced lysis and phagocytosis. Journal of Medical Microbiology 12, 123–130.CrossRefGoogle ScholarPubMed

Varian, S. A. & Cooke, E. M. (1980). Adhesive properties of Escherichia coli from urinary-tract infections. Journal of Medical Microbiology 13, 111–119.CrossRefGoogle ScholarPubMed

Verweij-Van Vught, A. M. J. J., Van Den Bosch, J. F., Namavar, F., Sparrius, M. & MacLaren, D. M. (1983). K antigens of Escherichia coli and virulence in urinary-tract infection. Studies in a mouse model. Medical Microbiology 16, 147–155.CrossRefGoogle ScholarPubMed

Vosti, K. G., Goldberg, L. M., Monto, A. S. & Rantz, L. A. (1964). Host parasite interaction in patients with infections due to E. coli. I. The serogrouping of E. coli from intestinal and extraintestinal sources. Journal of Clinical Investigation 43, 2377–2385.CrossRefGoogle Scholar

Väisänen-Rhen, V. (1984). Fimbria-like hemagglutinin of Escherichia coli O 75 strains, hifection and Immunity46, 401–407.Google Scholar

Väisänen-Rhen, V., Elo, J., Vaisanen, E., Shtonen, A., Ørskov, I., Ørskov, F., Svenson, S. B., Mäkelä, P. H. & Korhonen, T. K. (1984). P-fimbriated clones among uropathogenic Eschericia coli strains, infection and Immunity 43, 149–155.CrossRefGoogle Scholar

Väisänen, V., Korhonen, T. K., Jokinen, M., Gahmberg, C. G. & Ehnholm, C. (1982). Blood group M specific haemagglutinin in pyelonephritogenic Escherichia coli. Lancet i, 1192.CrossRefGoogle Scholar

Waalwijk, C. & De Graaf, J. (1983). Inactivation of haemolysin production in Escherichia coli by transposon insertion results in loss of virulence. Antonie van Leeuwenhoek; Journal of Microbiology and Serology 49, 23–30.CrossRefGoogle ScholarPubMed

Waalwijk, C., MacLaren, D. M. & De Graaf, J. (1983). In vivo function of hemolysin in the nephropathogenicity of Escherichia coli. hifection and Immunity 42, 245–249.CrossRefGoogle ScholarPubMed

Waalwijk, C., Van Den Bosch, J. F., MacLaren, D. M. & De Graaf, J. (1982). Hemolysin plasmid coding for the virulence of a nephropathogenic Escherichia coli strain. Infection and Immunity 35, 32–37.CrossRefGoogle ScholarPubMed

Warner, P. J., Williams, P. H., Bindeueif, A. & Neiland, J. H. (1981). Col V plasmid-specified aerobactin synthesis by invasive strains of Escherichia coli. Infection and Immunity. 33, 540–545.CrossRefGoogle Scholar

Webb, L., Goodwin, C. S. & Green, J. (1982). O antigen loss by semirough _E. coli_causing recurrent urinary infections, analysed by gel column filtration and gas-liquid chromatography. Pathology 14, 17–24.CrossRefGoogle Scholar

Weinstein, R. J. & Young, L. S. (1976). Neutrophil function in gram-negative rod bacteremia: the interaction between phagocytic cells, infecting organisms and humoral factors. Journal of Clinical Investigation 58, 190–199.CrossRefGoogle ScholarPubMed

Weinstein, R. & Young, L. S. (1978). Phagocytic resistance of _E. coli_Kl isolates and relationship to virulence. Journal of Clinical Microbiology 8, 748–755.CrossRefGoogle ScholarPubMed

Welch, R. A., Dellinoer, E. P., Minshew, B. & Falkow, S. (1981). Haemolysin contributes to virulence of extra-intestinal E. coli infections. Nature (Isondon) 293, 665–667.CrossRefGoogle Scholar

Williams, P. H. (1979). Novel iron uptake system specified by Col V plasmids: an important component in the virulence of invasive strains of Escherichia coli. Infection and Immunity 26. 925–932.CrossRefGoogle Scholar