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Nitric Oxide Production During Murine Lyme Disease: Lack of Involvement in Host Resistance or Pathology

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Journal Infect Immun
Date 1995 Oct 1
PMID 7558296
Citations 21
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Abstract

The murine model of Lyme disease was used to determine the role of inflammatory induced nitric oxide (NO) during infection by the spirochete Borrelia burgdorferi. The outer surface lipoproteins of B. burgdorferi are potent stimulators of inflammatory cytokines and NO production by cultured macrophages in vitro. The addition of NO to cultures of B. burgdorferi prevents growth, suggesting a protective role of NO for the infected host. NO is also a crucial effector in some models of arthritis. Therefore, the involvement of NO in controlling B. burgdorferi infection and its participation in pathological development of arthritis were investigated. Both mildly arthritic (BALB/c) and severely arthritic (C3H/HeJ) strains of mice systemically produced high levels of NO 1 week after infection with B. burgdorferi, as determined by urinary nitrate. NO production remained high throughout the infection in BALB/c mice, while in C3H/HeJ mice NO production returned rapidly to uninfected levels. The in vivo inhibitor of the NO synthase enzyme NG-L-monomethyl arginine (LMMA) was given to mice to investigate whether decreasing NO production would alter the course of disease. LMMA effectively blocked NO production in infected mice; however, there was no significant difference in arthritis development, spirochete infection of tissues, or production of specific antibody in LMMA-treated mice. These results indicate that B. burgdorferi is able to persist in the host even in the presence of high levels of NO. Furthermore, NO is not involved in the control of spirochete infection of tissues, nor is it involved in the development of arthritis. The potent activity of NO against intracellular pathogens and the in vivo resistance of B. burgdorferi to NO suggest that this organism is not located in an intracellular compartment during an essential portion of its infection of the mammalian host.

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References
1.
Hibbs Jr J, Vavrin Z, Taintor R . L-arginine is required for expression of the activated macrophage effector mechanism causing selective metabolic inhibition in target cells. J Immunol. 1987; 138(2):550-65. View

2.
Ma Y, Weis J . Borrelia burgdorferi outer surface lipoproteins OspA and OspB possess B-cell mitogenic and cytokine-stimulatory properties. Infect Immun. 1993; 61(9):3843-53. PMC: 281085. DOI: 10.1128/iai.61.9.3843-3853.1993. View

3.
Sigal L, Steere A, Dwyer J . In vivo and in vitro evidence of B cell hyperactivity during Lyme disease. J Rheumatol. 1988; 15(4):648-54. View

4.
Ding A, Nathan C, Stuehr D . Release of reactive nitrogen intermediates and reactive oxygen intermediates from mouse peritoneal macrophages. Comparison of activating cytokines and evidence for independent production. J Immunol. 1988; 141(7):2407-12. View

5.
Johnson R, Kodner C, Russell M, Duray P . Experimental infection of the hamster with Borrelia burgdorferi. Ann N Y Acad Sci. 1988; 539:258-63. DOI: 10.1111/j.1749-6632.1988.tb31859.x. View