PubMed HealthSearch

Biomedical subjects

H C Schapiro

Publications and source records attributed to H C Schapiro.

4 recordsLinked to original sources

Serological grouping of virulent and avirulent strains of the lobster pathogen Aerococcus viridans.

Virulent strains of Aerococcus viridans (formerly Gaffkya homari) are the aetiologic agents of gaffkemia, a septicaemic disease of the American lobster (Homarus americanus). The virulent and avirulent forms of this bacterium, previously thought to be taxonomically indistinguishable, have been differentiated by serological studies. Antisera were produced in rabbits using autoclaved bacteria as antigens. Reactions were measured by agglutination tests using microtitre techniques and an antigenic scheme was determined. Specific antisera were prepared by absorption and used to determine antigens of strains of A. viridans and other Gram-positive cocci. In general, only virulent strains of A. viridans have antigen b. Both virulent and avirulent strains possess other antigens also detected in strains of the genus Staphylococcus.

Agglutination Tests

Study of penicillin antibodies by fluorescence polarization and immunodiffusion.

1. Antibodies prepared in the rabbit to penicilloyl-rabbit serum albumin or to penicilloyl-bovine serum albumin were demonstrated by immunodiffusion and absorption methods to be apparently directed exclusively against the penicilloyl moiety. The antibodies could precipitate heavily substituted penicilloyl polylysine, as well as each other, with "reactions of identity". All could mutually deplete detectable antibodies by cross-absorption. 2. Small haptens containing both fluorescein and the penicilloyl group were synthesized. They were also capable of completely absorbing the antipenicilloyl antibodies from rabbit antiserum, as evidenced by immunodiffusion tests. The haptens were used in fluorescence polarization tests with gamma globulin from normal and immunized rabbits, and from normal and allergic humans. The rabbit antipenicilloyl gamma globulins in concentrations as low as 5 to 10 microg of protein/ml could significantly increase the polarization of the haptens. Normal gamma globulin had no effect at the highest concentrations tested, 1200 microg/ml. In all tests, rabbit and human antibody reacted similarly. 3. Fluorescence polarization titration curves for both human and rabbit antipenicilloyl gamma globulins were analyzed by computer and the antibody concentrations, avidities, and heterogeneity constants were determined. For the human antibody, the latter two values were 3.0 x 10(7)M(-1) and 0.78, while for the rabbit, they were 8.7 x 10(6)M(-1) and 0.71. The data were employed to estimate the limit of sensitivity of fluorescence polarization for detecting antipenicilloyl antibodies. Under the conditions employed, this value was roughly 0.4 microg antibody/ml. 4. When the whole rabbit sera were tested for penicilloyl antibodies by fluorescence polarization, both normal (preimmune) and immune sera revealed striking and equivalent increases in polarization with the penicilloyl haptens. This non-specific binding was shown to be due at least in part to serum albumin. Indications were obtained that it might be significantly reduced by increasing the pH or the salt concentration of the medium, or by addition of certain anions.

Animals