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通过用四价B族链球菌多糖-破伤风类毒素结合疫苗进行母体免疫,对新生小鼠进行多种B族链球菌(GBS)血清型感染的保护。

Neonatal mouse protection against infection with multiple group B streptococcal (GBS) serotypes by maternal immunization with a tetravalent GBS polysaccharide-tetanus toxoid conjugate vaccine.

作者信息

Paoletti L C, Wessels M R, Rodewald A K, Shroff A A, Jennings H J, Kasper D L

机构信息

Channing Laboratory, Brigham and Women's Hospital, Boston, Massachusetts.

出版信息

Infect Immun. 1994 Aug;62(8):3236-43. doi: 10.1128/iai.62.8.3236-3243.1994.

Abstract

Most cases of neonatal sepsis and meningitis caused by group B streptococci (GBS) are attributable to one of four major capsular serotypes: Ia, Ib, II, or III. Because resistance to infection with GBS has been correlated with the presence of serum antibodies to the type-specific capsular polysaccharides in both experimental animals and human neonates, efforts have been made to elicit protective immunity with GBS capsular polysaccharide vaccines. However, the GBS capsular polysaccharides alone are not highly immunogenic in either animals or human volunteers. Therefore, we and other investigators have attempted to enhance immunogenicity by coupling individual capsular polysaccharides to a carrier protein. Here we report the synthesis and immunogenicity in rabbits of a GBS type Ib polysaccharide-tetanus toxoid vaccine prepared by the direct, covalent attachment of tetanus toxoid to a selected number of sialic acid residues on the type-specific polysaccharide. In addition, the Ib polysaccharide-tetanus toxoid conjugate vaccine was combined with similar tetanus toxoid conjugates of GBS type Ia, II, and III polysaccharides to form a tetravalent GBS conjugate vaccine. Protective efficacy of the GBS tetravalent conjugate vaccine was demonstrated in a mouse maternal immunization-neonatal challenge model of GBS infection. The results support testing in human subjects of a multivalent GBS conjugate vaccine of this design, with the eventual goal of protecting newborns against GBS infection.

摘要

大多数由B族链球菌(GBS)引起的新生儿败血症和脑膜炎病例可归因于四种主要荚膜血清型之一:Ia、Ib、II或III。因为在实验动物和人类新生儿中,对GBS感染的抵抗力与针对特定血清型荚膜多糖的血清抗体的存在相关,所以人们一直在努力用GBS荚膜多糖疫苗引发保护性免疫。然而,单独的GBS荚膜多糖在动物或人类志愿者中免疫原性都不高。因此,我们和其他研究人员试图通过将单个荚膜多糖与载体蛋白偶联来增强免疫原性。在此,我们报告了一种通过将破伤风类毒素直接共价连接到特定血清型多糖上选定数量的唾液酸残基而制备的GBS Ib型多糖 - 破伤风类毒素疫苗在兔体内的合成及免疫原性。此外,将Ib型多糖 - 破伤风类毒素结合疫苗与GBS Ia、II和III型多糖的类似破伤风类毒素结合物组合,形成一种四价GBS结合疫苗。在GBS感染的小鼠母体免疫 - 新生儿攻击模型中证明了GBS四价结合疫苗的保护效力。这些结果支持对这种设计的多价GBS结合疫苗进行人体试验,最终目标是保护新生儿免受GBS感染。

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Neonatal sepsis caused by a new group B streptococcal serotype.
J Pediatr. 1993 Apr;122(4):638-40. doi: 10.1016/s0022-3476(05)83554-1.
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