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人肠类器官表达组织血型抗原,结合诺如病毒 VLPs,并支持有限的诺如病毒复制。

Human intestinal organoids express histo-blood group antigens, bind norovirus VLPs, and support limited norovirus replication.

机构信息

Division of Infectious Diseases, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.

Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH, USA.

出版信息

Sci Rep. 2017 Oct 3;7(1):12621. doi: 10.1038/s41598-017-12736-2.

Abstract

Through pluripotent stem cell (PSC) technology, human intestinal organoids (HIOs) with remarkably similarity to the fetal intestine in cellular composition, architecture, and absorptive/secretory functions have been successfully developed, providing a useful in vitro model system to study the structure and function of human congenital gut and intestinally related diseases. We report here the usefulness of HIOs as a model system to study intestinal carbohydrate expression, virus-host interaction, and replication of human noroviruses (huNoVs). We found that fully developed HIOs express effectively various types 1 and 2 HBGAs, including Lewis, secretor, and nonsecretor antigens, distributing on the glycocalyx. Selected huNoV-like particles (VLPs) bound the glycocalyx of HIOs with matched HBGA phenotypes. Using GII.4 huNoV positive stool filtrates, we demonstrated limited huNoV replication in HIOs with corresponding HBGAs through detection of viral RNAs by RT-PCR and capsid antigens by immunostaining methods. Our data suggested that, after further improvements, HIOs can be a useful model to study intestinal glycan expression, huNoV-intestine interaction, and huNoV infection in the intestine.

摘要

通过多能干细胞 (PSC) 技术,成功开发出与人胎肠在细胞组成、结构和吸收/分泌功能上具有显著相似性的人类肠类器官 (HIO),为研究人类先天性肠道结构和功能以及与肠道相关的疾病提供了有用的体外模型系统。我们在此报告 HIO 作为研究肠道碳水化合物表达、病毒-宿主相互作用和人类诺如病毒 (huNoV) 复制的模型系统的有效性。我们发现,完全发育的 HIO 有效地表达各种类型 1 和 2 HBGAs,包括 Lewis、分泌型和非分泌型抗原,分布在糖萼上。选择与 HBGA 表型匹配的 huNoV 样颗粒 (VLPs) 与 HIO 的糖萼结合。使用 GII.4 huNoV 阳性粪便滤液,我们通过 RT-PCR 检测病毒 RNA 和免疫染色方法检测衣壳抗原,证明了具有相应 HBGAs 的 HIO 中有限的 huNoV 复制。我们的数据表明,经过进一步改进,HIO 可以成为研究肠道糖基表达、huNoV-肠道相互作用和 huNoV 感染肠道的有用模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c633/5626734/18e20e3df394/41598_2017_12736_Fig1_HTML.jpg

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