The Weil–Felix reaction relies on antigenic cross-reactivity between rickettsiae and which bacterial antigens?
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ASheep red blood cells and Epstein–Barr virus antigens
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BMycoplasma antigens and human group O erythrocytes
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CRickettsial antigens and Proteus strains (OX2, OX19, OXK)
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DNone of these
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EBrucella antigens and Salmonella Vi antigen
Answer
Correct Answer: Rickettsial antigens and Proteus strains (OX2, OX19, OXK)
Explanation
Introduction / Context:The Weil–Felix test is a historical agglutination assay used to provide presumptive evidence of rickettsial infections by exploiting cross-reactive antigens shared with certain Proteus strains. Although largely replaced by more specific tests, it remains a classic concept in infectious-disease serology.
Given Data / Assumptions:
- Test principle: heterophile cross-reactions.
- Key Proteus strains: OX2, OX19, OXK.
- Outcome: serum antibodies agglutinate Proteus antigens if anti-rickettsial antibodies are present.
Concept / Approach:Surface antigens of some rickettsiae share epitopes with Proteus strains. Patient serum containing anti-rickettsial antibodies can agglutinate Proteus cells in vitro. Titer patterns may suggest certain rickettsial groups (e.g., OXK with scrub typhus).
Step-by-Step Solution:
1) Identify the known cross-reactive partner: Proteus OX2, OX19, OXK.2) Recognize agglutination with these strains indicates heterophile antibodies.3) Select the option pairing rickettsiae with Proteus.Verification / Alternative check:Classic microbiology texts summarize the historical utility of Weil–Felix and its limitations (low sensitivity/specificity).
Why Other Options Are Wrong:
- Sheep RBCs/EBV and mycoplasma/human RBCs: Unrelated to Weil–Felix.
- Brucella/Salmonella Vi: Different organisms and antigens with no role in this assay.
- None of these: Incorrect because Proteus cross-reactivity is the key principle.
Common Pitfalls:
- Overinterpreting titers; confirmatory specific serology is preferred now.
Final Answer:Rickettsial antigens and Proteus strains (OX2, OX19, OXK)