Liu Yaoyao, Liu Jing-Min, Zhang Dongdong, Ge Kun, Wang Peihua, Liu Huilin, Fang Guozhen, Wang Shuo
Key Laboratory of Food Nutrition and Safety, Ministry of Education, Tianjin University of Science and Technology , Tianjin, 300457, China.
Research Center of Food Science and Human Health, School of Medicine, Nankai University , Tianjin 300071, China.
J Agric Food Chem. 2017 Sep 20;65(37):8229-8240. doi: 10.1021/acs.jafc.7b02870. Epub 2017 Sep 10.
Probiotics has attracted great attention in food nutrition and safety research field, but thus far there are limited analytical techniques for visualized and real-time monitoring of the probiotics when they are ingested in vivo. Herein, the optical bioimaging technique has been introduced for investigation of foodborne probiotics biodistribution in vivo, employing the near-infrared (NIR) emitting persistent luminescence nanophosphors (PLNPs) of Cr-doped zinc gallogermanate (ZGGO) as the contrast nanoprobes. The ultrabrightness, super long afterglow, polydispersed size, low toxicity, and excellent photostability and biocompatibility of PLNPs were demonstrated to be qualified as a tracer for labeling probiotics via antibody (anti-Gram positive bacteria LTA antibody) recognition as well as contrast agent for long-term bioimaging the probiotics. In vivo optical bioimaging assay showed that the LTA antibody functionalized ZGGO nanoprobes that could be efficiently tagged to the probiobics were successfully applied for real-time monitoring and nondamaged probing of the biodistribution of probiotics inside the living body after oral administration. This work presents a proof-of-concept that exploited the bioimaging methodology for real-time and nondamaged researching the foodborne probiotics behaviors in vivo, which would open up a novel way of food safety detection and nutrition investigation.
益生菌在食品营养与安全研究领域备受关注,但迄今为止,在体内摄入益生菌时,用于可视化和实时监测的分析技术有限。在此,引入了光学生物成像技术来研究食源益生菌在体内的生物分布,采用掺铬锌镓锗酸盐(ZGGO)的近红外(NIR)发射持续发光纳米磷光体(PLNPs)作为对比纳米探针。PLNPs的超高亮度、超长余辉、多分散尺寸、低毒性以及优异的光稳定性和生物相容性被证明有资格作为通过抗体(抗革兰氏阳性菌LTA抗体)识别标记益生菌的示踪剂,以及用于对益生菌进行长期生物成像的造影剂。体内光学生物成像分析表明,经LTA抗体功能化的ZGGO纳米探针能够有效地标记到益生菌上,口服给药后成功用于实时监测和无损探测活体内益生菌的生物分布。这项工作提供了一个概念验证,即利用生物成像方法对食源益生菌在体内的行为进行实时和无损研究,这将开辟食品安全检测和营养调查的新途径。