Animal models to study the pathogenesis of human and animal Clostridium perfringens infections

Francisco A Uzal1, Bruce A McClane2, Jackie K Cheung3

  • 1California Animal Health and Food Safety Laboratory System, San Bernardino Branch, School of Veterinary Medicine, University of California, Davis, San Bernardino, CA 92408, USA.

Insights

Animal models are crucial for understanding Clostridium perfringens infections. Mouse and chicken models have significantly advanced knowledge of gas gangrene, necrotic enteritis, and food poisoning, aiding in toxin identification and pathogenesis studies.

Area of Science:

  • Veterinary Microbiology
  • Infectious Diseases
  • Animal Models

Background:

  • Clostridium perfringens causes significant diseases in humans and animals.
  • Understanding pathogenesis requires appropriate animal models.
  • Key toxins include alpha-toxin, NetB, and epsilon toxin (ETX).

Purpose of the Study:

  • To review common animal models for studying Clostridium perfringens infections.
  • To highlight the contributions of these models to understanding disease mechanisms and toxin functions.
  • To summarize the fulfillment of molecular Koch's postulates in various models.

Main Methods:

  • Review of literature on animal models for C. perfringens.
  • Analysis of studies utilizing specific animal models for different C. perfringens types and diseases.
  • Examination of research where molecular Koch's postulates were applied.

Main Results:

  • Mouse models are vital for studying gas gangrene and enterotoxin effects.
  • Chicken models are essential for understanding necrotic enteritis in poultry.
  • Various species (rabbits, rats, primates, sheep, goats, cattle) are used for enterotoxin and ETX studies.
  • Molecular Koch's postulates have been confirmed for several C. perfringens types in relevant animal models.

Conclusions:

  • Animal models are indispensable for elucidating C. perfringens pathogenesis and toxin roles.
  • Specific models facilitate the study of distinct diseases like gas gangrene, necrotic enteritis, and food poisoning.
  • The use of these models has led to critical discoveries, including toxin identification and disease mechanisms.

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