Active immunization of hamsters against Clostridium difficile infection using surface-layer protein

DB Ní Eidhin, JB O'Brien, MS McCabe… - FEMS Immunology & …, 2008 - academic.oup.com
DB Ní Eidhin, JB O'Brien, MS McCabe, V Athié-Morales, DP Kelleher
FEMS Immunology & Medical Microbiology, 2008academic.oup.com
Clostridium difficile is the leading cause of infectious antibiotic-associated diarrhoea,
particularly among the elderly. Its surface-layer protein (SLP) was tested as a vaccine
component in a series of immunization and challenge experiments with Golden Syrian
hamsters, combined with different systemic and mucosal adjuvants. Some regimens were
also tested in a nonchallenge BALB/c mouse model, enabling closer monitoring of the
immune response. None of the regimens conferred complete protection in the hamster …
Abstract
Clostridium difficile is the leading cause of infectious antibiotic-associated diarrhoea, particularly among the elderly. Its surface-layer protein (SLP) was tested as a vaccine component in a series of immunization and challenge experiments with Golden Syrian hamsters, combined with different systemic and mucosal adjuvants. Some regimens were also tested in a nonchallenge BALB/c mouse model, enabling closer monitoring of the immune response. None of the regimens conferred complete protection in the hamster model, and antibody stimulation was variable within regimens, and generally modest or poor. Mice displayed stronger antibody responses to SLP compared with hamsters. Two hamsters of five given SLP with Ribi (monophosphoryl lipid A and synthetic trehalose dicorynomycolate) survived the challenge, as did two of three given SLP with Ribi and cholera toxin. This modest trend to protection is interpreted with caution, because the survivors had low anti-SLP serum antibody titres. The hamsters were an outbred line, and subject to more genetic variability than inbred animals; however, BALB/c mice also showed strongly variable antibody responses. There is a clear need for better adjuvants for single-component vaccines, particularly for mucosal delivery. The hamster challenge model may need to be modified to be useful in active immunization experiments with SLP.
Oxford University Press
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