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Characterization of an experimental model to determine streptococcal M protein-induced autoimmune cardiac and
Rukshan Am Rafeek1, Adam S Hamlin1, Nicholas M Andronicos1
1School of Science & Technology, University of New England, Armidale, NSW, Australia.
Abstract:
Group A streptococcal (GAS) infection is associated with a spectrum of autoimmune diseases including acute rheumatic fever/rheumatic heart disease (ARF/RHD) and neurobehavioral abnormalities. Antibodies against GAS M proteins cross-react with host tissue proteins in the heart and brain leading to the symptomatology observed in ARF/RHD. As throat carriage of Streptococcus dysgalactiae subspecies equisimilis (SDSE) has been reported to be relatively high in some ARF/RHD endemic regions compared with GAS, and both SDSE and GAS express coiled-coil surface protein called M protein, we hypothesized that streptococci other than GAS can also associated with ARF/RHD and neurobehavioral abnormalities. Neurobehavioral assessments and electrocardiography were performed on Lewis rats before and after exposure to recombinant GAS and SDSE M proteins. Histological assessments were performed to confirm inflammatory changes in cardiac and neuronal tissues. ELISA and Western blot analysis were performed to determine the cross-reactivity of antibodies with host connective, cardiac and neuronal tissue proteins. Lewis rats injected with M proteins either from GAS or SDSE developed significant cardiac functional and neurobehavioral abnormalities in comparison to control rats injected with phosphate-buffered saline. Antibodies against GAS and SDSE M proteins cross-reacted with cardiac, connective and neuronal proteins. Serum from rats injected with streptococcal antigens showed higher immunoglobulin G binding to the striatum and cortex of the brain. Cardiac and neurobehavioral abnormalities observed in our experimental model were comparable to the cardinal symptoms observed in patients with ARF/RHD. Here for the first time, we demonstrate in an experimental model that M proteins from different streptococcal species could initiate and drive the autoimmune-mediated cardiac tissue damage and neurobehavioral abnormalities.
Insights
Group A Streptococcus (GAS) and other streptococci M proteins can trigger autoimmune heart and brain damage. This study shows M proteins from different species initiate autoimmune cardiac and neurobehavioral issues.
Area of Science:
- Immunology
- Microbiology
- Neurology
Background:
- Group A streptococcal (GAS) infections are linked to autoimmune diseases like acute rheumatic fever/rheumatic heart disease (ARF/RHD) and neurobehavioral issues.
- Antibodies against GAS M proteins cross-react with host heart and brain tissues, causing ARF/RHD symptoms.
- High throat carriage of Streptococcus dysgalactiae subspecies equisimilis (SDSE) in some regions, and shared M protein expression with GAS, suggest other streptococci may also be involved.
Purpose of the Study:
- To investigate if streptococci other than GAS, specifically SDSE, can also be associated with ARF/RHD and neurobehavioral abnormalities.
- To demonstrate the autoimmune potential of M proteins from different streptococcal species in an experimental model.
Main Methods:
- Lewis rats were exposed to recombinant M proteins from GAS and SDSE.
- Neurobehavioral assessments, electrocardiography, and histological analyses were performed.
- ELISA and Western blot assays determined antibody cross-reactivity with host tissues.
Main Results:
- Rats injected with GAS or SDSE M proteins developed significant cardiac and neurobehavioral abnormalities compared to controls.
- Antibodies against both GAS and SDSE M proteins cross-reacted with cardiac, connective, and neuronal proteins.
- Increased immunoglobulin G binding to the brain's striatum and cortex was observed.
Conclusions:
- M proteins from different streptococcal species can initiate and drive autoimmune-mediated cardiac tissue damage and neurobehavioral abnormalities.
- This experimental model replicates symptoms seen in human ARF/RHD patients.
- Provides the first experimental evidence for M proteins from various streptococci species causing autoimmune cardiac and neurological effects.
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