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MECHANISMS OF ACQUIRED RESISTANCE IN MOUSE TYPHOID
Abstract
Experiments in vitro comparing normal mouse peritoneal macrophages with cells from Salmonella typhimurium-infected mice have shown that the "immune" macrophages have conspicuously enhanced microbicidal properties. Whereas normal macrophages could inactivate only 50 to 60% of intracellular S. typhimurium pretreated with immune serum, cells from infected animals killed virtually all ingested organisms and did so at an accelerated rate. Macrophages from Listeria monocytogenes-infected mice were shown to possess similarly enhanced microbicidal activity against S. typhimurium. Furthermore, the growth of S. typhimurium in the liver and spleen was more effectively restricted in Listeria-infected mice than in animals vaccinated with heat-killed S. typhimurium, even though the Listeria-infected animals possessed no demonstrable cross-reacting antibody to S. typhimurium. The lack of resistance in the mice vaccinated with heat-killed organisms could not be attributed to any deficiency of humoral factors, since the serum from these animals was as effective at promoting phagocytosis and killing by macrophages as serum from actively infected (and demonstrably resistant) mice. Conversely, Salmonella-infected mice were totally resistant to intravenous challenge with L. monocytogenes. The level of resistance in individual animals was related to the numbers of residual Salmonellae remaining in the tissues; mice with heavier residual infections being the more resistant. Specific antiserum from mice vaccinated with heat-killed S. typhimurium was found to be significantly protective only when the intraperitoneal route of challenge was employed. The foregoing studies have been interpreted to mean that enhancement of the microbicidal ability of macrophages is the mechanism of major importance in acquired resistance to S. typhimurium infection in mice.
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- Mackaness GB, Blanden RV, Collins FM. Host-parasite relations in mouse typhoid. J Exp Med. 1966 Oct 1;124(4):573–583. [Europe PMC free article] [Abstract] [Google Scholar]
- HOBSON D. Resistance to reinfection in experimental mouse typhoid. J Hyg (Lond) 1957 Sep;55(3):334–343. [Europe PMC free article] [Abstract] [Google Scholar]
- HOLLAND JJ, PICKETT MJ. A cellular basis of immunity in experimental Brucella infection. J Exp Med. 1958 Sep 1;108(3):343–360. [Europe PMC free article] [Abstract] [Google Scholar]
- MACKANESS GB. THE IMMUNOLOGICAL BASIS OF ACQUIRED CELLULAR RESISTANCE. J Exp Med. 1964 Jul 1;120:105–120. [Europe PMC free article] [Abstract] [Google Scholar]
- ARMSTRONG AS, SWORD CP. CELLULAR RESISTANCE IN LISTERIOSIS. J Infect Dis. 1964 Jun;114:258–264. [Abstract] [Google Scholar]
- ELBERG SS, SCHNEIDER P, FONG J. Cross-immunity between Brucella melitensis and Mycobacterium tuberculosis; intracellular behavior of Brucella melitensis in monocytes from vaccinated animals. J Exp Med. 1957 Oct 1;106(4):545–554. [Europe PMC free article] [Abstract] [Google Scholar]
- JENKIN CR, ROWLEY D. BASIS FOR IMMUNITY TO TYPHOID IN MICE AND THE QUESTION OF "CELLULAR IMMUNITY". Bacteriol Rev. 1963 Dec;27:391–404. [Europe PMC free article] [Abstract] [Google Scholar]
- ROWLEY D, TURNER KJ, JENKIN CR. THE BASIS FOR IMMUNITY TO MOUSE TYPHOID. 3. CELL-BOUND ANTIBODY. Aust J Exp Biol Med Sci. 1964 Apr;42:237–248. [Abstract] [Google Scholar]
- JENKIN CR, ROWLEY D, AUZINS I. THE BASIS FOR IMMUNITY TO MOUSE TYPHOID. I. THE CARRIER STATE. Aust J Exp Biol Med Sci. 1964 Apr;42:215–228. [Abstract] [Google Scholar]
- COHN ZA. Determinants of infection in the peritoneal cavity. I. Response to and fate of Staphylococcus aureus and Staphylococcus albus in the mouse. Yale J Biol Med. 1962 Aug;35:12–28. [Europe PMC free article] [Abstract] [Google Scholar]
- JENKIN C, BENACERRAF B. In vitro studies on the interaction between mouse peritoneal macrophages and strains of Salmonella and Escherichia coli. J Exp Med. 1960 Aug 1;112:403–417. [Europe PMC free article] [Abstract] [Google Scholar]
- JENKIN CR, ROWLEY D. PARTIAL PURIFICATION OF THE "PROTECTIVE" ANTIGEN OF SALMONELLA TYPHIMURIUM AND ITS DISTRIBUTION AMONGST VARIOUS STRAINS OF BACTERIA. Aust J Exp Biol Med Sci. 1965 Feb;43:65–78. [Abstract] [Google Scholar]
- KOTELKO K, STAUB AM, TINELLI R. [Immunochemical study on Salmonella. VIII. Role of O acetyl groupings in the specificity of the O:5 factor]. Ann Inst Pasteur (Paris) 1961 May;100:618–637. [Abstract] [Google Scholar]
- AUZINS I, ROWLEY D. FACTORS INVOLVED IN THE ADHERENCE OF S. TYPHIMURIUM C5 AND MOUSE PERITONEAL MACROPHAGES. Aust J Exp Biol Med Sci. 1963 Oct;41:539–546. [Abstract] [Google Scholar]
- Collins FM, Mackaness GB, Blanden RV. Infection-immunity in experimental salmonellosis. J Exp Med. 1966 Oct 1;124(4):601–619. [Europe PMC free article] [Abstract] [Google Scholar]
- JENKIN CR, ROWLEY D. Opsonins as determinants of survival in intraperitoneal infections of mice. Nature. 1959 Aug 8;184(Suppl 7):474–475. [Abstract] [Google Scholar]
- MIKI K, MACKANESS GB. THE PASSIVE TRANSFER OF ACQUIRED RESISTANCE TO LISTERIA MONOCYTOGENES. J Exp Med. 1964 Jul 1;120:93–103. [Europe PMC free article] [Abstract] [Google Scholar]
- MITSUHASHI S, SATO I, TANAKA T. Experimental salmonellosis. Intracellular growth of Salmonella enteritidis ingested in mononuclear phagocytes of mice, and cellular basis of immunity. J Bacteriol. 1961 Jun;81:863–868. [Europe PMC free article] [Abstract] [Google Scholar]
- USHIBA D, SAITO K, AKIYAMA T, NAKANO M, SUGIYAMA T, SHIRONO S. Studies on experimental typhoid: bacterial multiplication and host cell response after infection with Salmonella enteritidis in mice immunized with live and killed vaccines. Jpn J Microbiol. 1959 Apr;3:231–242. [Abstract] [Google Scholar]
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