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糖缀合物疫苗:更快疫苗设计的当前方法。

Glycoconjugate vaccines: current approaches towards faster vaccine design.

机构信息

Technology Platform, GSK Vaccines Institute for Global Health s.r.l , Siena , Italy.

Research Centre, GSK , Siena , Italy.

出版信息

Expert Rev Vaccines. 2019 Sep;18(9):881-895. doi: 10.1080/14760584.2019.1657012. Epub 2019 Aug 31.

Abstract

: Over the last decades, glycoconjugate vaccines have been proven to be a successful strategy to prevent infectious diseases. Many diseases remain to be controlled, especially in developing countries, and emerging antibiotic-resistant bacteria present an alarming public-health threat. The increasing complexity of future vaccines, and the need to accelerate development processes have triggered the development of faster approaches to glycoconjugate vaccines design. : This review provides an overview of recent progress in glycoconjugation technologies toward faster vaccine design. : Among the different emerging approaches, glycoengineering has the potential to combine glycan assembly and conjugation to carrier systems (such as proteins or outer membrane vesicles) in one step, resulting in a simplified manufacturing process and fewer analytical controls. Chemical and enzymatic strategies, and their automation can facilitate glycoepitope identification for vaccine design. Other approaches, such as the liposomal encapsulation of polysaccharides, potentially enable fast and easy combination of numerous antigens in the same formulation. Additional progress is envisaged in the near future, and some of these systems still need to be further validated in humans. In parallel, new strategies are needed to accelerate the vaccine development process, including the associated clinical trials, up to vaccine release onto the market.

摘要

在过去的几十年中,糖缀合物疫苗已被证明是预防传染病的一种成功策略。许多疾病仍有待控制,特别是在发展中国家,而新出现的抗生素耐药细菌则构成了令人震惊的公共卫生威胁。未来疫苗的复杂性不断增加,以及加速开发进程的需要,促使人们开发出更快的糖缀合物疫苗设计方法。

本文综述了糖缀合技术在更快疫苗设计方面的最新进展。

在新兴的各种方法中,糖工程有可能将聚糖组装和与载体系统(如蛋白质或外膜囊泡)的缀合结合在一步中,从而简化制造工艺并减少分析控制。化学和酶策略及其自动化可以促进疫苗设计中糖表位的鉴定。其他方法,如多糖的脂质体包封,可能能够在同一配方中快速且容易地组合许多抗原。预计在不久的将来会取得更多进展,其中一些系统仍需要在人体中进一步验证。同时,还需要新的策略来加速疫苗开发过程,包括相关的临床试验,直至疫苗投放市场。

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