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用于基于RNA的“智能疫苗”的合成生物学装置和电路:一项命题性综述。

Synthetic biology devices and circuits for RNA-based 'smart vaccines': a propositional review.

作者信息

Andries Oliwia, Kitada Tasuku, Bodner Katie, Sanders Niek N, Weiss Ron

机构信息

Laboratory of Gene Therapy, Department of Nutrition, Genetics and Ethology, Faculty of Veterinary Medicine, Ghent University, Heidestraat 19, B-9820 Merelbeke, Belgium.

出版信息

Expert Rev Vaccines. 2015 Feb;14(2):313-31. doi: 10.1586/14760584.2015.997714. Epub 2015 Jan 7.

Abstract

Nucleic acid vaccines have been gaining attention as an alternative to the standard attenuated pathogen or protein based vaccine. However, an unrealized advantage of using such DNA or RNA based vaccination modalities is the ability to program within these nucleic acids regulatory devices that would provide an immunologist with the power to control the production of antigens and adjuvants in a desirable manner by administering small molecule drugs as chemical triggers. Advances in synthetic biology have resulted in the creation of highly predictable and modular genetic parts and devices that can be composed into synthetic gene circuits with complex behaviors. With the recent advent of modified RNA gene delivery methods and developments in the RNA replicon platform, we foresee a future in which mammalian synthetic biologists will create genetic circuits encoded exclusively on RNA. Here, we review the current repertoire of devices used in RNA synthetic biology and propose how programmable 'smart vaccines' will revolutionize the field of RNA vaccination.

摘要

核酸疫苗作为标准减毒病原体疫苗或蛋白质疫苗的替代方案,正日益受到关注。然而,使用此类基于DNA或RNA的疫苗接种方式尚未实现的一个优势是,能够在这些核酸内编入调控元件,使免疫学家能够通过施用小分子药物作为化学触发剂,以理想的方式控制抗原和佐剂的产生。合成生物学的进展已带来了高度可预测且模块化的遗传元件和装置,这些元件和装置可组合成具有复杂行为的合成基因回路。随着修饰RNA基因递送方法的近期出现以及RNA复制子平台的发展,我们预见未来哺乳动物合成生物学家将创建仅编码于RNA上的遗传回路。在此,我们综述了RNA合成生物学中目前使用的元件种类,并提出可编程的“智能疫苗”将如何彻底改变RNA疫苗接种领域。

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