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Effects of Tumor Necrosis Factor Alpha on Host Immune Response in Chronic Persistent Tuberculosis: Possible Role for Limiting Pathology

Infection and Immunity · 2001 · Vol. 69(3) · pp. 1847–1855
Vellore P. MohanCharles A. ScangaKeming YuHolly M. ScottKathryn E. TanakaEnders TsangMing Chih TsaiJoAnne L. FlynnJohn Chan

Abstract

Reactivation of latent tuberculosis contributes significantly to the incidence of disease caused by Mycobacterium tuberculosis. The mechanisms involved in the containment of latent tuberculosis are poorly understood. Using the low-dose model of persistent murine tuberculosis in conjunction with MP6-XT22, a monoclonal antibody that functionally neutralizes tumor necrosis factor alpha (TNF-alpha), we examined the effects of TNF-alpha on the immunological response of the host in both persistent and reactivated tuberculous infections. The results confirm an essential role for TNF-alpha in the containment of persistent tuberculosis. TNF-alpha neutralization resulted in fatal reactivation of persistent tuberculosis characterized by a moderately increased tissue bacillary burden and severe pulmonic histopathological deterioration that was associated with changes indicative of squamous metaplasia and fluid accumulation in the alveolar space. Analysis of pulmonic gene and protein expression of mice in the low-dose model revealed that nitric oxide synthase was attenuated during MP6-XT22-induced reactivation, but was not totally suppressed. Interleukin-12p40 and gamma interferon gene expression in TNF-alpha-neutralized mice was similar to that in control mice. In contrast, interleukin-10 expression was augmented in the TNF-alpha-neutralized mice. In summary, results of this study suggest that TNF-alpha plays an essential role in preventing reactivation of persistent tuberculosis, modulates the pulmonic expression of specific immunologic factors, and limits the pathological response of the host.

Tuberculosis Research and EpidemiologyInfectious Diseases and TuberculosisPneumonia and Respiratory InfectionsTumor necrosis factor alphaBiologyTuberculosisImmunologyMycobacterium tuberculosisImmune systemLatent tuberculosisAlpha (finance)PathologyMedicine

MeSH terms

AnimalsAntibodies, MonoclonalChronic DiseaseFemaleInterferon-gammaMice, Inbred C57BLNeutralization TestsTuberculosis, PulmonaryTumor Necrosis Factor-alphaInterleukin-10ApoptosisInterleukin-12Nitric Oxide SynthaseMiceNitric Oxide Synthase Type II

Funding

  • University of Pittsburgh
  • National Institutes of Health
Citations
531
FWCI
16.87
field-weighted impact
References
63
Percentile
100%
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