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Virulence factors of Haemophilus ducreyi
Abstract:
We investigated the susceptibility of virulent and avirulent strains of Haemophilus ducreyi to the bactericidal activity of normal human serum and to phagocytosis and killing by human polymorphonuclear leukocytes (PMNL). Strains were defined as virulent if intradermal inoculation into a rabbit produced a typical necrotic lesion. Nonvirulent strains produced no cutaneous lesions in rabbits. Virulent strains were resistant to the complement-mediated lethal action of normal human and rabbit sera, whereas avirulent strains were susceptible (greater than 95% kill, 60 min). Virulent strains were relatively resistant to phagocytosis and killing by human PMNL, in contrast to the avirulent strains. In past studies polymyxin resistance has been correlated with virulence in H. ducreyi. In our studies, polymyxin resistance could not be correlated with virulence, since polymyxin-sensitive mutants obtained from polymyxin-resistant parent strains remained virulent for rabbits and resistant to bactericidal action of normal serum and phagocytosis and killing by human PMNL. Similarly, polymyxin-resistant mutants obtained from polymyxin-sensitive parent strains remained avirulent for rabbits and susceptible to bactericidal action of normal serum and PMNL. The acquisition of polymyxin resistance was accompanied by the loss of a 47,000-molecular-weight protein. The association of serum resistance and resistance to phagocytosis and killing by human PMNL with virulent strains, as defined by the rabbit intradermal test, suggests that these factors may mediate the pathogenicity of H. ducreyi.
Insights
Virulent Haemophilus ducreyi strains resist human serum and polymorphonuclear leukocytes (PMNL) killing, unlike avirulent strains. This serum resistance, not polymyxin resistance, is linked to H. ducreyi virulence.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Haemophilus ducreyi causes chancroid, a sexually transmitted infection.
- Virulence factors of H. ducreyi are not fully understood.
- Previous studies suggested a link between polymyxin resistance and virulence.
Purpose of the Study:
- To investigate the role of serum resistance and phagocytosis by human polymorphonuclear leukocytes (PMNL) in H. ducreyi virulence.
- To re-evaluate the correlation between polymyxin resistance and virulence.
Main Methods:
- Assessed susceptibility of virulent and avirulent H. ducreyi strains to normal human serum and PMNL.
- Used rabbit intradermal inoculation to define virulent and avirulent strains.
- Generated polymyxin-resistant and sensitive mutants to test virulence and serum resistance.
Main Results:
- Virulent H. ducreyi strains demonstrated resistance to normal human serum and PMNL killing.
- Avirulent H. ducreyi strains were susceptible to serum and PMNL.
- Polymyxin resistance was not correlated with virulence; serum resistance was.
- Loss of a 47,000-molecular-weight protein accompanied polymyxin resistance.
Conclusions:
- Serum resistance and resistance to PMNL phagocytosis and killing are associated with virulent H. ducreyi strains.
- These factors likely mediate the pathogenicity of H. ducreyi.
- Polymyxin resistance is not a reliable marker for H. ducreyi virulence.