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PMID: 11589778 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Nitric oxide and reactive nitrogen intermediates during lethal and nonlethal strains of murine malaria.

Parasite immunology ·Vol. 23 ·No. 9 ·2001-09-00 ·Pages 491-501

Nahrevanian H, Dascombe MJ

Abstract

The virulence of Plasmodia depends partly on the strain of parasite and partly on the host. In this study, Plasmodium berghei N/13/1A/4/203 caused the death of mice, whereas Plasmodium chabaudi chabaudi AS was not lethal. Current opinion is that nitric oxide (NO) and other reactive nitrogen intermediates (RNI) are produced in several host organs during malaria to resist infection or produce tissue damage. NO and RNI production in blood or plasma, brain, liver and spleen in MF1 mice was investigated during P. berghei and P. c. chabaudi infection, in order to help determine whether changes in NO production are beneficial or detrimental to the host in vivo. NO production was measured both directly and indirectly as nitrites and nitrates, to represent RNI. No changes in blood NO were detected in P. berghei infected mice, but increases were observed in brain, liver and spleen. In P. c. chabaudi infected mice, rises in NO concentration were observed in blood and spleen, whereas a decline in liver NO was seen, but there were no changes in brain. Liver contained the highest concentration of RNI, but increasing concentrations were seen in both plasma and spleen in both P. berghei and P. c. chabaudi infected mice. These results show that NO and RNI production alters during murine malaria. The changes depend upon the tissue, the day of infection, the degree of parasitaemia, the strain of Plasmodia and the method of measuring NO biosynthesis. Lethal P. berghei induced NO production in the mid and late stages of infection in mice when parasitaemia was high, whereas in nonlethal P. c. chabaudi infection, NO production was increased in the early and late stages when parasitaemia was low. These data are consistent with a role for NO in the protection of the MF1 mouse against Plasmodia. Failure to clear the parasite is associated with evidence of increased NO production in brain and liver, which may contribute to the pathology of malaria, but this hypothesis requires confirmation from other experimental approaches.

MeSH Terms
Animals Brain/parasitology,pathology Liver/parasitology,pathology Malaria/metabolism,parasitology,pathology Mice Mice, Inbred C57BL Nitrates/metabolism Nitric Oxide/metabolism Nitrites/metabolism Parasitemia Plasmodium berghei/growth & development,metabolism Plasmodium chabaudi/growth & development,metabolism Spleen/parasitology,pathology
Chemicals
Nitrates Nitrites Nitric Oxide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Nahrevanian H
School of Biological Sciences, The University of Manchester, Manchester, UK.
Dascombe M J
Article Info
Journal
Parasite immunology
Abbr.
Parasite Immunol
ISSN
0141-9838
Published
2001-09-00
Pages
491-501
Language
English
Region
England
NLM ID
7910948
Subset
IM
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