Which organism produces the most heat-resistant bacterial spores among the options? (Consider standard biological indicators used to challenge sterilization.)
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AClostridium histolyticum
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BClostridium perfringens
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CBacillus stearothermophilus
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DBacillus cereus
Answer
Correct Answer: Bacillus stearothermophilus
Explanation
Introduction: Thermal resistance of spores is central to validating sterilization. This question asks which species produces the most heat-resistant spores commonly used as biological indicators.
Given Data / Assumptions:
- “Bacillus stearothermophilus” (now Geobacillus stearothermophilus) is thermophilic.
- Biological indicators test moist heat sterilizers (autoclaves).
- Heat resistance exceeds that of many Clostridium and other Bacillus species.
Concept / Approach: Geobacillus stearothermophilus spores have high D values at 121 °C, making them ideal for challenging autoclave performance. Their survival indicates inadequate sterilization parameters.
Step-by-Step Solution: Identify species known for thermophily and spore robustness. Relate to standard practice: biological indicator strips/vials use this species. Compare to C. perfringens and B. cereus, which have lower moist-heat resistance. Select Bacillus (Geobacillus) stearothermophilus.
Verification / Alternative check: Sterilization guidelines specify G. stearothermophilus indicators for steam; B. atrophaeus is used for dry heat/EtO.
Why Other Options Are Wrong:
- C. histolyticum / C. perfringens / B. cereus: Do form spores, but with lower moist-heat resistance than G. stearothermophilus.
Common Pitfalls: Assuming pathogenicity correlates with spore resistance; it does not.
Final Answer: Bacillus stearothermophilus (Geobacillus stearothermophilus) has the most heat-resistant spores here.