Gzyl Anna, Augustynowicz Ewa, Zawadka Monika, Rabczenko Daniel, Slusarczyk Janusz
Zakład Badania Surowic i Szczepionek PZH w Warszawie.
Med Dosw Mikrobiol. 2007;59(2):123-35.
The study is based on assumption that B. pertussis strains harbouring different allele variants of genes encoding subunit S1 of pertussis toxin and pertactin might be eliminated with different efficiency from lung tissue of mice which were immunized with whole-cell and acellular pertussis vaccines. It has been assumed that strains containing combinations of genes alleles which were not prevalent since 1990-ties are consisting of mutated strains in respect to pertussis toxin subunit S1 and pertactin, and are capable to decrease efficiency of pertussis vaccines. Experiments performed in vivo dealt with activity of tested vaccines against B. pertussis strains of different combinations of ptxS1/prn. The study indicated for lowered efficiency of whole-cell and acellular pertussis vaccines in elimination of mutated strains of B. pertussis from animal lung tissue in comparison with strains currently used for vaccine production.
携带百日咳毒素S1亚基和丝状血凝素编码基因不同等位基因变体的百日咳杆菌菌株,在用全细胞和无细胞百日咳疫苗免疫的小鼠肺组织中,可能以不同效率被清除。据推测,自20世纪90年代以来不常见的基因等位基因组合的菌株,在百日咳毒素S1亚基和丝状血凝素方面是由突变菌株组成的,并且能够降低百日咳疫苗的效力。体内实验涉及测试疫苗针对不同ptxS1/prn组合的百日咳杆菌菌株的活性。该研究表明,与目前用于疫苗生产的菌株相比,全细胞和无细胞百日咳疫苗从动物肺组织中清除百日咳杆菌突变菌株的效率较低。