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Updated: Jun 10, 2026

The Bovine Lung in Biomedical Research: Visually Guided Bronchoscopy, Intrabronchial Inoculation and In Vivo Sampling Techniques
Published on: July 3, 2014
Mannheimia haemolytica: bacterial-host interactions in bovine pneumonia
K Singh1, J W Ritchey, A W Confer
1Department of Pathobiology, College of Veterinary Medicine, University of Illinois, Urbana, IL 61802, USA. ksingh08@uiuc.edu
Abstract:
Mannheimia haemolytica serotype S1 is considered the predominant cause of bovine pneumonic pasteurellosis, or shipping fever. Various virulence factors allow M haemolytica to colonize the lungs and establish infection. These virulence factors include leukotoxin (LKT), lipopolysaccharide, adhesins, capsule, outer membrane proteins, and various proteases. The effects of LKT are species specific for ruminants, which stem from its unique interaction with the bovine β2 integrin receptor present on leukocytes. At low concentration, LKT can activate bovine leukocytes to undergo respiratory burst and degranulation and stimulate cytokine release from macrophages and histamine release from mast cells. At higher concentration, LKT induces formation of transmembrane pores and subsequent oncotic cell necrosis. The interaction of LKT with leukocytes is followed by activation of these leukocytes to undergo oxidative burst and release proinflammatory cytokines such as interleukins 1, 6, and 8 and tumor necrosis factor α. Tumor necrosis factor α and other proinflammatory cytokines contribute to the accumulation of leukocytes in the lung. Formation of transmembrane pores and subsequent cytolysis of activated leukocytes possibly cause leakage of products of respiratory burst and other inflammatory mediators into the surrounding pulmonary parenchyma and so give rise to fibrinous and necrotizing lobar pneumonia. The effects of LKT are enhanced by lipopolysaccharide, which is associated with the release of proinflammatory cytokines from the leukocytes, activation of complement and coagulation cascade, and cell cytolysis. Similarly, adhesins, capsule, outer membrane proteins, and proteases assist in pulmonary colonization, evasion of immune response, and establishment of the infection. This review focuses on the roles of these virulence factors in the pathogenesis of shipping fever.
Insights
Mannheimia haemolytica serotype S1 causes shipping fever in cattle. Its virulence factors, like leukotoxin (LKT), lead to lung damage and inflammation through various mechanisms.
Area of Science:
- Veterinary Microbiology
- Bovine Respiratory Disease Pathogenesis
Background:
- Mannheimia haemolytica serotype S1 is the primary cause of bovine pneumonic pasteurellosis (shipping fever).
- Virulence factors including leukotoxin (LKT), lipopolysaccharide, adhesins, capsule, outer membrane proteins, and proteases contribute to M. haemolytica pathogenesis.
Purpose of the Study:
- To review the roles of M. haemolytica virulence factors in the pathogenesis of shipping fever.
- To elucidate the mechanisms by which LKT and other factors contribute to bovine lung disease.
Main Methods:
- Literature review focusing on M. haemolytica virulence factors and their interactions with bovine host cells.
- Analysis of the molecular mechanisms of leukotoxin (LKT) action on leukocytes.
- Examination of the synergistic effects of LKT with other bacterial components like lipopolysaccharide.
Main Results:
- Leukotoxin (LKT) exhibits species-specific effects on ruminant leukocytes, binding to the bovine β2 integrin receptor.
- At varying concentrations, LKT induces leukocyte activation, cytokine release, and ultimately cytolysis, contributing to lung inflammation.
- Lipopolysaccharide enhances LKT effects, promoting cytokine release, complement activation, and cell lysis.
Conclusions:
- M. haemolytica virulence factors are critical for colonizing the bovine lung and establishing shipping fever.
- Leukotoxin's interaction with leukocytes and subsequent inflammatory cascade are central to the development of fibrinous and necrotizing pneumonia.
- Understanding these virulence factors is key to developing effective strategies against bovine pneumonic pasteurellosis.
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