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Biomedical subjects

J Pêtre

Publications and source records attributed to J Pêtre.

8 recordsLinked to original sources

Immunization of mice by recombinant OspA preparations and protection against Borrelia burgdorferi infection induced by Ixodes ricinus tick bites.

The wide distribution of Borrelia burgdorferi, the spirochete causing Lyme borreliosis, represents a human health hazard in many areas of the world. Vaccination has been proposed as an effective prevention strategy. Vaccination experiments were conducted with preparations of recombinant outer surface protein A (OspA) derived from Borrelia burgdorferi strain ZS7. Mice received three doses (1 microgram each) of the antigens adsorbed to aluminum hydroxide. A strong immune response to the vaccine antigen was observed. Mice were challenged after immunization, using Ixodes ricinus nymphal ticks infected with Borrelia burgdorferi strain ZS7. Infection was investigated by ear biopsy culture, xenodiagnosis with uninfected larvae and serological response to Borrelia burgdorferi antigens. All unimmunized control animals were found to be infected, while all immunized animals were found to be protected against infection by Borrelia burgdorferi. In addition, most adult ticks derived from nymphs that fed on immunized mice were found to be free of spirochetes.

Animals↗

Correlation between in vivo humoral and in vitro cellular immune responses following immunization with hepatitis B surface antigen (HBsAg) vaccines.

To study the regulation of the human immune response to hepatitis B surface antigen (HBsAg) we have carefully monitored the in vivo humoral and in vitro cellular immune responses to HBsAg in 50 subjects receiving four doses of hepatitis B vaccine according to a 0, 1, 2, 12 month vaccination scheme. Twenty-three subjects were given a plasma-derived vaccine (Hevac B) and 27 received a recombinant HBsAg vaccine (yeast-derived; Engerix-B). The humoral and cellular immune responses were measured before vaccination (day 0); 6 days after the second dose (day 36); 6 days (day 66), 2 months (day 120) and 10 months (day 365) after the third dose and 1 month after the fourth dose (day 395). Based on the kinetics of the humoral immune responses, the vaccinees could be classified into fast, intermediate and slow/non-responders. Based on the magnitude of the immune response (anti-HBs titre) on day 395, the vaccinees could be divided into high (> or = 2000 U l-1) and low (< or = 2000 U l-1) responders. A close correlation between the kinetics and the magnitude of the humoral immune response was observed. The in vivo anti-HBs response was measured using commercially available immunoradiometric assays. The in vitro cellular immune response was measured using an HBsAg-specific lymphoproliferation assay. Because of interassay variability the results were considered as dichotomous variables (proliferation versus non-proliferation) for further data analysis. A statistically significant correlation was observed between the kinetics and magnitude of the humoral immune response on the one hand and the in vitro anti-HBs response on the other hand.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Development of an acellular pertussis vaccine and its administration as a booster in healthy adults.

An acellular pertussis vaccine which contains highly purified pertussis toxoid (PT) and filamentous haemagglutinin (FHA) has been developed. These proteins have been shown to be stable, with essentially no significant reversion of the pertussis toxoid after a new detoxification procedure. Two clinical trials using this vaccine as a booster in 45 healthy adults have been performed. Results show that the vaccine was well tolerated, causing essentially mild, transient symptoms after administration. It induced an increase in anti-PT and anti-FHA antibody titres in all vaccinees.

Adult↗

Two trials of an acellular DTP vaccine in comparison with a whole-cell DTP vaccine in infants: evaluation of two PT doses and two vaccination schedules.

The present trials being carried out in Switzerland and Turkey, the reactogenicity and immunogenicity of acellular DTP vaccines containing either 25 micrograms or 8 micrograms of PT and 25 micrograms of FHA were compared with those of a conventional whole-cell DTP vaccine during a primary vaccination course following either a 0-1-2 schedule starting at three months of age (Switzerland) or a 0-2-4 schedule starting at two months of age (Turkey). The whole-cell vaccine was associated with significantly more local reactions than the acellular vaccines; general reactions were also more frequent among whole-cell recipients. The 25 micrograms PT dose vaccine was no more reactogenic than the 8 micrograms PT dose vaccine. There was no evidence of increases in frequencies of local or general reactions from one acellular vaccine dose to the next. The 25 micrograms PT dose acellular DTP vaccine resulted in immune responses to all four antigens (PT, FHA, diphtheria and tetanus toxoids) at least equivalent to those observed with whole-cell vaccination. Significantly lower anti-PT antibody levels were seen with the 8 micrograms PT dose vaccine.

Antibodies, Bacterial↗

Immunological properties of recombinant HBsAg produced in yeast.

Although currently available plasma-derived vaccines (PDV) against hepatitis B based on the surface antigen of the virus (HBsAg) are well-tolerated and effective, their supply is limited and time-consuming controls are necessary to assess their safety. It is therefore desirable that an alternative source of HBsAg be found. Recombinant DNA technology has provided the possibility of obtaining HBsAg in large quantities. However, it is important that a recombinant DNA hepatitis B vaccine be not only antigenically similar but also elicits a similar immune response in humans. Using the Ausria kit, the recombinant DNA vaccine of SmithKline Biologicals produced in yeast appears to have a higher antigenic content than a reference plasma-derived HBsAg preparation of similar purity when compared at equivalent protein concentrations. In competition experiments, however, antibodies obtained by immunization with PDV similarly recognized yeast-derived and plasma-derived antigens. Monoclonal antibodies directed to the common a determinant of the whole virus were also used to identify distinct epitopes on the recombinant DNA vaccine. The yeast-derived HBsAg is therefore antigenically similar to plasma-derived HBsAg. The yeast-derived vaccine (YDV) was highly immunogenic in mice, rabbits, goats, monkeys, chimpanzees, and humans. High titres of anti-HBs were reached in humans after three doses administered at 0, 1, and 6 months. The antibodies raised in humans after three doses of YDV were predominantly directed to the common a determinant. Competition studies using monoclonal antibodies raised against the whole virus showed that the antibodies had the same specificity as the antibodies induced by PDV. The affinity for the plasma-derived antigen of antibodies stimulated by YDV and PDV and antibodies present in the sera of convalescent subjects were also similar. Finally, competition experiments showed that the antibodies induced in humans by YDV and antibodies from convalescent subjects were directed to the same binding sites of the plasma-derived antigen. These studies indicate that the yeast-derived vaccine is immunologically similar to the plasma-derived vaccines both in vitro and in vivo and can therefore be expected to have similar protective efficacy.

Animals↗

Development of a hepatitis B vaccine from transformed yeast cells.

The production in yeast cells of the recombinant DNA hepatitis B vaccine of SmithKline Biologicals involves an optimized fermentation process followed by cell disruption and extraction, together with other soluble yeast components of the surface antigen of the hepatitis B virus. The subsequent purification process includes precipitation steps, ion exchange and gel permeation chromatography, and caesium chloride ultracentrifugation. The yeast-derived antigen occurs as spherical particles containing the non-glycosylated HBsAg polypeptide, lipid, and Tween 20. The purity of the polypeptide is above 95% and confirmed by the absence of an immune response to yeast-derived contaminants in vaccinees. Yeast DNA levels were less than 10 pg/vaccine dose. Various biochemical analyses showed that the recombinant polypeptide was faithfully expressed and did not undergo unwanted processing or degradation during fermentation or purification. These results indicate that the recombinant HBsAg can be effectively produced in yeast and processed to a high degree of purity to yield HBsAg particles displaying most of the characteristic properties of plasma-derived HBsAg.

Amino Acid Sequence↗