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Immunization against a saccharide epitope accelerates clearance of experimental gonococcal infection
Sunita Gulati1, Bo Zheng, George W Reed
1Department of Medicine, Division of Infectious Diseases and Immunology, University of Massachusetts Medical School, Worcester, Massachusetts, United States of America.
Abstract:
The emergence of ceftriaxone-resistant strains of Neisseria gonorrhoeae may herald an era of untreatable gonorrhea. Vaccines against this infection are urgently needed. The 2C7 epitope is a conserved oligosaccharide (OS) structure, a part of lipooligosaccharide (LOS) on N gonorrhoeae. The epitope is expressed by 94% of gonococci that reside in the human genital tract (in vivo) and by 95% of first passaged isolates. Absence of the 2C7 epitope shortens the time of gonococcal carriage in a mouse model of genital infection. To circumvent the limitations of saccharide immunogens in producing long lived immune responses, previously we developed a peptide mimic (called PEP1) as an immunologic surrogate of the 2C7-OS epitope and reconfigured it into a multi-antigenic peptide, (MAP1). To test vaccine efficacy of MAP1, female BALB/c mice were passively immunized with a complement-dependent bactericidal monoclonal antibody specific for the 2C7 epitope or were actively immunized with MAP1. Mice immunized with MAP1 developed a TH1-biased anti-LOS IgG antibody response that was also bactericidal. Length of carriage was shortened in immune mice; clearance occurred in 4 days in mice passively administered 2C7 antibody vs. 6 days in mice administered control IgG3λ mAb in one experiment (p = 0.03) and 6 vs. 9 days in a replicate experiment (p = 0.008). Mice vaccinated with MAP1 cleared infection in 5 days vs. 9 days in mice immunized with control peptide (p = 0.0001 and p = 0.0002, respectively in two replicate experiments). Bacterial burden was lower over the course of infection in passively immunized vs. control mice in both experiments (p = 0.008 and p = 0.0005); burdens were also lower in MAP1 immunized mice vs. controls (p<0.0001) and were inversely related to vaccine antibodies induced in the vagina (p = 0.043). The OS epitope defined by mAb 2C7 may represent an effective vaccine target against gonorrhea, which is rapidly becoming incurable with currently available antibiotics.
Insights
A new peptide vaccine (MAP1) targeting the 2C7 epitope of Neisseria gonorrhoeae significantly reduced infection duration and bacterial burden in mice. This offers a promising strategy against antibiotic-resistant gonorrhea.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Ceftriaxone-resistant Neisseria gonorrhoeae strains are emerging, leading to untreatable gonorrhea.
- Vaccines are crucial to combat this growing public health threat.
- The 2C7 oligosaccharide (OS) epitope on gonococcal lipooligosaccharide (LOS) is present in most N. gonorrhoeae strains.
Purpose of the Study:
- To evaluate the vaccine efficacy of a multi-antigenic peptide (MAP1), a mimic of the 2C7-OS epitope, against Neisseria gonorrhoeae.
- To assess the immune response generated by MAP1 immunization in a mouse model.
Main Methods:
- Developed MAP1 as a peptide mimic of the 2C7-OS epitope.
- Tested MAP1 efficacy by actively immunizing mice and passively administering a 2C7-specific monoclonal antibody.
- Measured infection clearance time and bacterial burden in immunized versus control mice.
Main Results:
- MAP1 immunization induced a TH1-biased, bactericidal anti-LOS IgG antibody response.
- Mice vaccinated with MAP1 showed significantly shortened infection clearance times (5 days vs. 9 days).
- Passive immunization with a 2C7 antibody also reduced carriage time (4-6 days vs. 6-9 days) and bacterial burden.
Conclusions:
- The 2C7 epitope is a viable vaccine target for Neisseria gonorrhoeae.
- MAP1 demonstrates potential as a vaccine candidate to combat gonorrhea, especially in the face of rising antibiotic resistance.
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