糖缀合物疫苗的最新机制见解和未来展望。

Recent mechanistic insights on glycoconjugate vaccines and future perspectives.

机构信息

Novartis Vaccines and Diagnostics, Research Center, Via Fiorentina 1, 53100 Siena, Italy.

出版信息

ACS Chem Biol. 2013 Aug 16;8(8):1653-63. doi: 10.1021/cb400423g. Epub 2013 Jul 23.

Abstract

Vaccination is a key strategy for the control of various infectious diseases. Many pathogens, such as Streptococcus pneumoniae , Haemophilus influenzae type b (Hib), and Neisseria meningitidis produce on their surfaces dense and complex glycan structures, which represent an optimal target for eliciting carbohydrate specific antibodies able to confer protection against those bacteria. Glycoconjugates represent nowadays an important class of efficacious and safe commercial vaccines. It has been known for a long time that covalent linkage of poorly immunogenic carbohydrates to protein is fundamental to provide T cell epitopes for eliciting a memory response of the immune system against the saccharide. However, while the traditional mechanism of action of glycoconjugates has considered peptides generated from the carrier protein to be responsible of T cell help recruitment, only recently evidence of the active involvement of the carbohydrate part in determining the T cell help has been shown. In addition, zwitterionic polysaccharides have been proven to activate the adaptive immune system without further conjugation to protein. Progress in this interface area between chemistry and biology, in combination with novel synthetic and biosynthetic methods for the preparation of glycoconjugates, is opening new perspectives to clarify their mechanism of action and give new insights for the design of improved carbohydrate-based vaccines.

摘要

疫苗接种是控制各种传染病的关键策略。许多病原体,如肺炎链球菌、乙型流感嗜血杆菌(Hib)和脑膜炎奈瑟菌,在其表面产生密集而复杂的聚糖结构,这些结构是产生能够针对这些细菌产生保护性的碳水化合物特异性抗体的最佳靶标。糖缀合物目前是一类有效和安全的商业疫苗。长期以来,人们已经知道,将免疫原性差的碳水化合物与蛋白质共价连接对于提供 T 细胞表位以引发免疫系统对糖的记忆反应至关重要。然而,虽然糖缀合物的传统作用机制认为载体蛋白产生的肽负责 T 细胞辅助募集,但最近才证明碳水化合物部分在决定 T 细胞辅助中的积极参与。此外,两性离子多糖已被证明无需与蛋白质进一步缀合即可激活适应性免疫系统。化学和生物学之间这一界面领域的进展,结合用于制备糖缀合物的新型合成和生物合成方法,为阐明其作用机制和为设计改进的基于碳水化合物的疫苗提供新的见解开辟了新的前景。

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