Leishmania major infection in C57BL/10 mice differing at the Lps locus: a new non-healing phenotype

被引:0
|
作者
I. Müller
Marina Freudenberg
Pascale Kropf
Albrecht F. Kiderlen
Chris Galanos
机构
[1] Department of Biological Sciences,
[2] University of Notre Dame,undefined
[3] Notre Dame,undefined
[4] IN 46556,undefined
[5] USA Tel.: 1-219-631 9040; Fax: 1-219-631 7413; e-mail: muller.4.@nd.edu,undefined
[6] World Health Organization Immunology Research and Training Centre,undefined
[7] Institute of Biochemistry,undefined
[8] University of Lausanne,undefined
[9] CH-1066 Epalinges,undefined
[10] Switzerland,undefined
[11] Max-Planck-Institut für Immunbiologie,undefined
[12] Stübeweg 51,undefined
[13] D-79108 Freiburg,undefined
[14] Germany,undefined
[15] Robert Koch-Institut,undefined
[16] Nordufer 20,undefined
[17] D-13353 Berlin,undefined
[18] Germany,undefined
来源
Medical Microbiology and Immunology | 1997年 / 186卷
关键词
Key words Cutaneous leishmaniasis; Lipopolysaccharide responder; Lipopolysaccharide nonresponder; Cytokine;
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摘要
The course of cutaneous leishmaniasis was examined in mice from two genetically closely related strains, C57BL/10ScCr (Cr) and C57BL/10ScSn (Sn). Sn mice are able to heal Leishmania major infections, while Cr mice are unable to heal. The cutaneous lesions of the Cr mice progressed continuously and the increase in lesion size was paralleled by an unrestricted growth of the parasites in vivo. Cr mice, in contrast to their Sn counterparts, are highly resistant to all effects of lipopolysaccharide (LPS). The nonhealing L. major infection in Cr mice is in sharp contrast to the course of infection in another endotoxin-nonresponder mouse strain, C3H/HeJ, which heal infections with L. major. Cr mice exhibit, in addition to the defective LPS responsiveness, an impaired interferon-γ (IFN-γ) response after infection with a variety of microorganisms. The insufficient activation of parasitized macrophages to kill intracellular L. major could be due to the inability of splenocytes from infected Cr mice to secrete IFN-γ upon restimulation with L. major. IFN-γ is essential for the efficient activation of parasitized macrophages to kill intracellular L. major by producing nitric oxide (NO). Although bone marrow-derived Cr macrophages do not produce NO in response to LPS, both Sn and Cr macrophages release NO upon stimulation with IFN-γ and tumor necrosis factor, indicating that they are responsive to activation by these cytokines.
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页码:75 / 81
页数:6
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