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J Taranger

Publications and source records attributed to J Taranger.

At least 37 records · Page 2Linked to original sources

Unchanged efficacy of a pertussis toxoid vaccine throughout the two years after the third vaccination of infants.

BACKGROUND: In a previously reported double blind efficacy trial of a pertussis toxoid vaccine, 3450 infants were randomized to receive diphtheria-tetanus toxoids with or without pertussis toxoid at 3, 5 and 12 months of age. Efficacy against pertussis as defined by the World Health Organization was 71% from 30 days after the third vaccination with an average follow-up of 17.5 months. We now report efficacy for an additional 6 months of open follow-up. METHODS: Parents were contacted monthly by a nurse. If a participant or a family member coughed for > or = 7 days, a nasopharyngeal sample and paired sera were obtained. RESULTS: Efficacy during this open follow-up period was 77% (95% confidence intervals, 66 to 85%) based on 29 and 110 cases fulfilling the WHO definition of pertussis in vaccinated and control children, respectively. Efficacy against household exposure was 76% (95% confidence intervals, 51 to 91%). Pertussis in vaccinated children had a significantly shorter duration than pertussis in control children. Determination of pertussis toxin antibodies in paired sera with enzyme-linked immunosorbent assay had a lower diagnostic sensitivity in vaccinated (45%) than in control (92%) children, while determination of antibodies against filamentous hemagglutinin (not included in the vaccine) was highly sensitive for diagnosing pertussis in both groups (100 and 90%, respectively). CONCLUSIONS: A monocomponent pertussis toxoid vaccine induces significant protection against pertussis for at least 2 years after the third injection. To obtain an unbiased estimate of vaccine efficacy it is important to determine antibodies against an antigen that is not included in the vaccine.

Antibodies, Bacterial↗

Towards better pertussis vaccines.

Several recently completed trials have shown that acellular pertussis vaccines induce substantial protection against pertussis. They are considerably less reactogenic than whole-cell vaccines and, as they consist of only one or a few purified proteins, they can be expected to cause less severe adverse events. The optimal composition of acellular vaccines has not yet been determined. The number of vaccine antigens varies from one to five. All vaccines contain detoxified pertussis toxin. Other antigens included in several vaccines are filamentous haemagglutinin, pertactin and fimbriae, but it remains to be proven that these antigens contribute significantly to protection. Postlicensure studies will be of importance in order to study possible rare adverse events after acellular vaccines and to study the induction of herd immunity.

Humans↗

Adverse reactions of a pertussis toxoid vaccine in a double-blind placebo-controlled trial.

In the Gothenburg study, 3,450 infants were randomly assigned to receive three subcutaneous injections of acellular pertussis vaccine consisting of peroxide-inactivated pertussis toxin with diphtheria and tetanus toxoids (DTP-toxoids) or DT-toxoids alone under blind conditions at three, five and 12 months of age. Safety of the vaccinations was assessed by direct contact with the families in the week following each injection. No serious vaccine-associated adverse reactions were observed, in either group. The frequency of fever and local reactions increased by dose. Redness and swelling were slightly but significantly more frequent in recipients of DTP-toxoids compared to the DT group.

Diphtheria Toxoid↗

A placebo-controlled trial of a pertussis-toxoid vaccine.

BACKGROUND: Although many whole-cell vaccines have been effective in preventing pertussis, these vaccines are difficult to standardize and can produce side effects. In Sweden, pertussis became endemic during the 1970s despite vaccination. Because of its limited efficacy, the Swedish-made whole-cell vaccine was withdrawn in 1979. METHODS: To evaluate the efficacy of an acellular vaccine consisting of pertussis toxin inactivated by hydrogen peroxide (pertussis toxoid), we conducted a randomized, double-blind, placebo-controlled trial in Sweden. Infants were vaccinated with either diphtheria and tetanus toxoids alone (DT toxoids, 1726 infants) or diphtheria, tetanus, and pertussis toxoids (DTP toxoids, 1724 infants) at 3, 5, and 12 months of age. RESULTS: There were no serious reactions. With the pertussis vaccine there were slightly more local reactions than with the DT toxoids alone, but the rates of postvaccination fever were the same. The main period of surveillance, which began 30 days after the third vaccination, continued for a median of 17.5 months. There were 312 cases of pertussis (72 in the DTP-toxoids group and 240 in the DT-toxoids group) that met the clinical criterion (paroxysmal cough lasting > or = 21 days) and laboratory criteria for pertussis as defined by the World Health Organization. The efficacy of this acellular vaccine was 71 percent (95 percent confidence interval, 63 to 78 percent). The recipients of DTP toxoids who had pertussis had cough of shorter duration than the recipients of DT toxoids, and fewer had whooping and vomiting. The vaccine efficacy after two doses was 55 percent (95 percent confidence interval, 12 to 78 percent), on the basis of 14 cases in the DTP-toxoids group and 31 in the DT-toxoids group that met the definition of the World Health Organization. CONCLUSIONS: A pharmacologically inert, acellular pertussis-toxoid vaccine that is easily standardized is safe and confers substantial protection against pertussis.

Diphtheria Toxoid↗

Acquisition of IgG serum antibodies against two Bordetella antigens (filamentous hemagglutinin and pertactin) in children with no symptoms of pertussis.

To study the specificity of serum antibodies against filamentous hemagglutinin (FHA) and pertactin for infection with Bordetella pertussis, we followed the acquisition of IgG serum antibodies against these 2 surface proteins of the organism in children who had been vaccinated with a monocomponent pertussis toxoid vaccine and who had experienced no symptoms of pertussis. Antibodies were estimated with enzyme-linked immunosorbent assay. In Part 1 of our study 5 consecutive samples obtained between 3 and 36 months of age from 71 children were available. Most had maternally derived antibodies to FHA (70 of 71) and pertactin (51 of 71) in the 3-month sera which declined in the subsequent sera. From about 1 year of age there were small but significant increases in antibodies against both antigens. At 3 years of age 71 of 71 had antibodies to FHA and 58 of 71 had antibodies to pertactin. In Part 2 of our study sera from 109 three-year old children were available. The 12 children with a history of family exposure to pertussis had significantly higher geometric mean titers of FHA antibodies than the 97 children with no history of family exposure. The geometric mean titers of pertactin antibodies did not differ. We suggest 3 explanations for the acquisition of FHA and pertactin antibodies in children with no history of pertussis: (1) asymptomatic B. pertussis infection in vaccinated children; (2) infection with Bordetella parapertussis; (3) infection with cross-reacting antigens from other organisms, e.g., nonencapsulated Haemophilus influenzae.

Adhesins, Bacterial↗

Influence of high titers of maternal antibody on the serologic response of infants to diphtheria vaccination at three, five and twelve months of age.

Diphtheria antitoxin was determined in serum from 44 pregnant women, of whom 26 had received one injection of diphtheria toxoid during pregnancy. Their infants were vaccinated with a combined diphtheria-tetanus vaccine at 3, 5 and 12 months of age. This vaccination schedule has been used in Sweden since 1986, replacing the old schedule of vaccination at 3, 4.5 and 6 months of age originally designed for diphtheria-tetanus-pertussis vaccine, which had not been used after cessation of general vaccination against pertussis in 1979. Serum samples from the infants were obtained at 3, 7 and 18 months of age. After 2 injections infants of mothers with high antitoxin titers, > or = 0.1 IU/ml, tended to have lower antitoxin titers than infants of mothers with low antitoxin concentrations (P = 0.067). All children had, however, antitoxin above the minimum protective level of 0.01 IU/ml. Median antitoxin titers were 1.6 IU/ml in both groups after the third booster injection. Four infants of mothers who had been vaccinated during pregnancy and who had titers of > or = 0.4 IU/ml did not reach the 0.1 IU/ml level after 2 injections: all 4 responded with high antitoxin titers after the third dose. Thus all infants were primed by 2 doses of vaccine, irrespective of maternal antibody concentration. The repressive effect of maternal antibody on titers noted after 2 doses was no longer observed after the third, booster dose.

Antibodies, Viral↗

Response and decline of serum IgG antibodies to pertussis toxin, filamentous hemagglutinin and pertactin in children with pertussis.

The serum IgG antibody response and decrease to 3 Bordetella pertussis antigens was compared in children with pertussis. Sera were obtained at the first clinical visit and 1, 3 and 12 months later from 89 children with > or = 3 weeks of paroxysmal cough. IgG antibodies to pertussis toxin (PT), to filamentous hemagglutinin (FHA) and to pertactin were determined with ELISA. Of 54 children with culture-confirmed pertussis or culture-confirmed familial exposure, 45 (83%) had a significant (> or = 3 fold) increase in PT IgG and 40 (74%) in FHA IgG antibodies, while only 29 (54%) had a significant increase in pertactin IgG antibodies. Significant decreases in PT, FHA and pertactin IgG antibodies were found in 34 (63%), 9 (17%) and 28 (52%) children, respectively. In the remaining 35 who did not have culture-confirmed disease, significant PT and/or FHA IgG antibody increases (criteria for pertussis according to the WHO definition) were found in 17 (49%). Only 6 of these 17 children had a significant pertactin IgG antibody increase. Of the remaining 18 children (who did not fulfil WHO criteria for pertussis), significant decreases in PT and/or FHA IgG antibodies were found in 13. We conclude that a serum IgG reaction to PT and FHA occurs in almost all children with pertussis. An increase in pertactin IgG antibodies occurs less frequently than against PT and FHA. Significant decreases in PT or FHA IgG antibodies in children with clinical pertussis might be of use as a diagnostic criterion in children brought late for examination.

Adhesins, Bacterial↗

Safety, immunogenicity and an open, retrospective study of efficacy of a monocomponent pertussis toxoid vaccine in infants.

One hundred forty-five infants were vaccinated with 25 micrograms of pertussis toxoid (NICHD-Ptxd) at 3, 5 and 7 or at 3, 5 and 12 months of age. One month after the third vaccination all had high serum IgG and neutralizing antibodies (antitoxin) against pertussis toxin. Vaccination at 3, 5 and 12 months resulted in higher antibody titers than vaccination at 3, 5 and 7 months. Sera obtained from 109 children at 3 years of age showed a decline of antibodies, but all had detectable antibodies. Adverse reactions were confined to local redness and swelling, which exceeded 2 cm after 17% of all injections. When the children were 3 years old, a comparison was made of the incidence of clinical pertussis in 142 of the 145 vaccinated children and in 284 age-matched controls living in the same areas. Information on symptoms of pertussis was obtained from the parents during telephone interviews. None of the vaccinated children had clinical pertussis, defined as a 6-week course of paroxysmal cough with whooping attacks or vomiting, whereas 57 controls (20%) had experienced these symptoms. Sixteen vaccinated children were exposed to pertussis in the household. Two of them had laboratory-verified Bordetella pertussis infections with cough of 2 and 4 weeks, respectively, without whooping attacks or vomiting, whereas 14 did not develop a cough. The study shows that NICHD-Ptxd is immunogenic in infants and that it most likely confers a high degree of protection against pertussis.

Antibodies, Bacterial↗