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Evaluating the Immune Response of a Nanoemulsion Adjuvant Vaccine Against Methicillin-Resistant Staphylococcus aureus (MRSA) Infection
Published on: September 1, 2023
CD4 T cell antigens from Staphylococcus aureus Newman strain identified following immunization with heat-killed
Paulraj K Lawrence1, Bachra Rokbi, Nadège Arnaud-Barbe
1Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington, USA.
Abstract:
Staphylococcus aureus is a commensal bacterium associated with the skin and mucosal surfaces of humans and animals that can also cause chronic infection. The emergence of antibiotic-resistant strains such as methicillin-resistant S. aureus (MRSA) and strains causing chronic intramammary infections (IMI) in cows results in severe human and livestock infections. Conventional approaches to vaccine development have yielded only a few noneffective vaccines against MRSA or IMI strains, so there is a need for improved vaccine development. CD4 T lymphocytes are required for promoting gamma interferon (IFN-γ) mediated immunoglobulin isotype switching in B lymphocytes to produce high-affinity IgG antibodies and IFN-γ-mediated phagocyte activation for an effective resolution of bacterial infection. However, the lack of known CD4 T cell antigens from S. aureus has made it difficult to design effective vaccines. The goal of this study was to identify S. aureus proteins recognized by immune CD4 T cells. Using a reverse genetics approach, 43 antigens were selected from the S. aureus Newman strain. These included lipoproteins, proteases, transcription regulators, an alkaline shock protein, conserved-domain proteins, hemolysins, fibrinogen-binding protein, staphylokinase, exotoxin, enterotoxin, sortase, and protein A. Screening of expressed proteins for recall T cell responses in outbred, immune calves identified 13 proteins that share over 80% sequence identity among MRSA or IMI strains. These may be useful for inclusion in a broadly protective multiantigen vaccine against MRSA or IMI.
Insights
Researchers identified 13 Staphylococcus aureus proteins recognized by immune CD4 T cells. These antigens are potential candidates for a broadly protective vaccine against antibiotic-resistant MRSA and bovine IMI strains.
Area of Science:
- Immunology
- Microbiology
- Vaccine Development
Background:
- Staphylococcus aureus is a common bacterium causing infections in humans and livestock.
- Antibiotic-resistant strains like MRSA and bovine intramammary infection (IMI) strains pose significant health challenges.
- Existing vaccines against S. aureus are largely ineffective, highlighting the need for novel approaches.
Purpose of the Study:
- To identify Staphylococcus aureus proteins recognized by CD4 T lymphocytes.
- To find potential antigens for developing effective vaccines against MRSA and IMI.
Main Methods:
- A reverse genetics approach was used to select 43 S. aureus Newman strain antigens.
- Expressed proteins were screened for recall T cell responses in immune calves.
- Proteins with high sequence identity across MRSA and IMI strains were prioritized.
Main Results:
- Thirteen S. aureus proteins were identified as being recognized by immune CD4 T cells.
- These 13 proteins showed over 80% sequence identity among MRSA or IMI strains.
- This suggests potential for broad protection against diverse S. aureus strains.
Conclusions:
- The identified proteins are promising candidates for a multiantigen vaccine against S. aureus.
- This research addresses the critical need for effective vaccines against challenging S. aureus infections.
- Targeting these CD4 T cell antigens could lead to improved control of MRSA and bovine IMI.
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