PubMed Health⌕ Search

Biomedical subjects

G Carletti

Publications and source records attributed to G Carletti.

7 recordsLinked to original sources

Effects of adsorption of acellular pertussis antigens onto different aluminium salts on the protective activity in an intranasal murine model of Bordetella pertussis infection.

Adsorption of the pertussis antigens, pertussis toxoid (PT), filamentous hemagglutinin (FHA) and pertactin (PRN) onto aluminium phosphate rather than aluminium hydroxide leads to a lower humoral response and poorer protection against intranasal pertussis challenge in mice. These effects could be reversed by inclusion of fimbriae (FIM) 2 and 3 in the formulation. These data emphasis the importance of correct formulation for such vaccines.

Administration, Intranasal↗

Intranasal murine model of Bordetella pertussis infection: II. Sequence variation and protection induced by a tricomponent acellular vaccine.

When pertussis toxin S1 subunit and pertactin structural genes in Bordetella pertussis clinical isolates from France and Germany were sequenced, 3 previously described S1 subunit types (S1 A, B and E), and 4 pertactin types (PRN A, B, C, A*) were found. PRN A*, present in the WHO reference strain 18323, was not described previously. In a respiratory mouse model, a tricomponent acellular pertussis vaccine (Infanrix) was highly effective in promoting lung clearance of all isolates expressing different S1 subunit and pertactin suggesting that use of acellular vaccine will not increase the risks of pertussis infection by these B. pertussis variants.

Adhesins, Bacterial↗

Intranasal murine model of Bordetella pertussis infection. I. Prediction of protection in human infants by acellular vaccines.

Bicomponent, tricomponent and pertactin DTPa vaccines were tested in sublethal aerosol, and lethal and sublethal intranasal murine Bordetella pertussis respiratory challenge models. Pertactin and bicomponent vaccines induced protective immunity against lethality but with little or no bacterial clearance. Intranasal challenge discriminated in a reproducible, statistically significant manner between the efficacies of bicomponent and tricomponent DTPa, in agreement with clinical trial data. This discrimination was not observed in the aerosol challenge. Pertactin had a synergistic effect with bicomponent DTPa. Intranasal challenge may be useful as part of the preclinical evaluation of new acellular pertussis formulations or DTPa-based combinations.

Administration, Inhalation↗

[Not Available].

Explore the source record for details and available documents.

History, Modern 1601-↗