Epsilon Toxin of Clostridium perfringens B and D.

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Presentation transcript:

Epsilon Toxin of Clostridium perfringens B and D

Center for Food Security and Public Health Iowa State University Overview Organism History Epidemiology Transmission Disease in Humans Disease in Animals Prevention and Control

Agent

Center for Food Security and Public Health Iowa State University The Agent Clostridium perfringens − Gram-positive bacteria  Anaerobic rod − Found in soil, decaying matter and intestinal tract of mammals 5 types (A-E) − Types B and D produce the epsilon toxin

Center for Food Security and Public Health Iowa State University Epsilon Toxin Produced as an inactive protoxin Activated by trypsin − Removes a 13-residue N-terminal peptide Increases intestinal permeability Increases vascular permeability − Vascular damage and edema in brain, heart, lung and kidneys

History

Center for Food Security and Public Health Iowa State University History Iraq produced 90 gallons of C. perfringens 1945: Japan − Used shrapnel bomb containing C. perfringens on ten Chinese victims − Slow death from gas gangrene due to infection from bacteria

Transmission

Center for Food Security and Public Health Iowa State University Transmission: Humans Ingestion of C. perfringens A − Foodborne illness − Improperly prepared and handled foods Aerosolization of C. perfringens A − Expected to cause high morbidity and mortality Consequences of aerosolizing epsilon toxin not known at this time

Center for Food Security and Public Health Iowa State University Transmission: Animals Normal intestinal inhabitant Fecal-oral transmission Ingestion of large quantity − Contaminated soil, water, feed Proliferation often caused by disruption of normal intestinal bacteria

Disease in Humans

Center for Food Security and Public Health Iowa State University Clostridium perfringens A Incubation 8-22 hours − Intense abdominal pain − Diarrhea − Dehydration common side effect Most symptoms end by 24 hours Very young and very old most severely affected

Center for Food Security and Public Health Iowa State University Diagnosis and Treatment Diagnosis − Specific immunoassays available − Diagnosis of human disease unproven No treatment for epsilon toxin − Penicillin used to treat C. perfringens Clindamycin and rifampin − May suppress epsilon toxin production Supportive − Fluid replacement − Monitor electrolytes

Animals and Epsilon Toxin

Center for Food Security and Public Health Iowa State University Animals and Epsilon Toxin Rapidly fatal enterotoxemia Produces edema − Edema in brain  Can induce death and necrosis of brain tissue

Center for Food Security and Public Health Iowa State University C. perfringens D Cattle and sheep − Neural manifestations Goats − Diarrhea common Mortality − Highest in lambs − Calves and goats non fatal subacute and chronic disease

Center for Food Security and Public Health Iowa State University C. perfringens D Lamb enterotoxemia − Overeating disease Epsilon toxin − Systemic toxemia − CNS lesions, opisthotonus, convulsions, sudden death − Kidney lesions  Pulp kidney disease

Center for Food Security and Public Health Iowa State University C. perfringens B Lamb dysentery − Newborn lambs (less than 3 weeks)  95% mortality Enterotoxemia − Neonatal calves − Neonatal foals − Mortality is high but not as severe as in lambs

Center for Food Security and Public Health Iowa State University Diagnosis and Treatment Diagnosis − ELISA  Can detect epsilon toxin with biological fluids Intestinal, peritoneal, pericardial − Toxin-antitoxin neutralization test − PCR Treatment − Penicillin  Effective if given early − Vaccination − Toxoids

Prevention and Control

Center for Food Security and Public Health Iowa State University Prevention and Control Disinfect with soap and water Health care workers − Should follow standard safety precautions Vaccine available for animals Follow FDA/USDA guidelines for proper handling of food

Center for Food Security and Public Health Iowa State University Epsilon Toxin as a Biological Weapon Toxin can be manufactured by fermentation of C. perfringens Chemical synthesis is impractical Aerosolization capabilities − Insufficient information available at this time − Acute pulmonary illness

Center for Food Security and Public Health Iowa State University Acknowledgments Development of this presentation was funded by a grant from the Centers for Disease Control and Prevention to the Center for Food Security and Public Health at Iowa State University.

Center for Food Security and Public Health Iowa State University Acknowledgments Author: Co-author: Reviewer: Jamie Snow, DVM, MPH Radford Davis, DVM, MPH Jean Gladon, BS