接种疫苗
推进
抗原
免疫系统
纳米技术
免疫学
医学
材料科学
工程类
航空航天工程
作者
Xiaoli Wei,Mara Beltrán‐Gastélum,Emil Karshalev,Berta Esteban‐Fernández de Ávila,Jiarong Zhou,Danni Ran,Pavimol Angsantikul,Ronnie H. Fang,Joseph Wang,Liangfang Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-02-06
卷期号:19 (3): 1914-1921
被引量:166
标识
DOI:10.1021/acs.nanolett.8b05051
摘要
Vaccination represents one of the most effective means of preventing infectious disease. In order to maximize the utility of vaccines, highly potent formulations that are easy to administer and promote high patient compliance are desired. In the present work, a biomimetic self-propelling micromotor formulation is developed for use as an oral antivirulence vaccine. The propulsion is provided by a magnesium-based core, and a biomimetic cell membrane coating is used to detain and neutralize a toxic antigenic payload. The resulting motor toxoids leverage their propulsion properties in order to more effectively elicit mucosal immune responses. After demonstrating the successful fabrication of the motor toxoids, their uptake properties are shown in vitro. When delivered to mice via an oral route, it is then confirmed that the propulsion greatly improves retention and uptake of the antigenic material in the small intestine in vivo. Ultimately, this translates into markedly elevated generation of antibody titers against a model toxin. This work provides a proof-of-concept highlighting the benefits of active oral delivery for vaccine development, opening the door for a new set of applications, in which biomimetic motor technology can provide significant benefits.
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