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An Advanced Human Intestinal Coculture Model Reveals Compartmentalized Host and Pathogen Strategies during Salmonella Infection

机译:先进的人类肠共培养模型在<斜体>沙门氏菌期间揭示了分区化宿主和病原体策略感染

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摘要

A major obstacle in infection biology is the limited ability to recapitulate human disease trajectories in traditional cell culture and animal models, which impedes the translation of basic research into clinics. Here, we introduce a three-dimensional (3D) intestinal tissue model to study human enteric infections at a level of detail that is not achieved by conventional two-dimensional monocultures. Our model comprises epithelial and endothelial layers, a primary intestinal collagen scaffold, and immune cells. Upon Salmonella infection, the model mimics human gastroenteritis, in that it restricts the pathogen to the epithelial compartment, an advantage over existing mouse models. Application of dual transcriptome sequencing to the Salmonella -infected model revealed the communication of epithelial, endothelial, monocytic, and natural killer cells among each other and with the pathogen. Our results suggest that Salmonella uses its type III secretion systems to manipulate STAT3-dependent inflammatory responses locally in the epithelium without accompanying alterations in the endothelial compartment. Our approach promises to reveal further human-specific infection strategies employed by Salmonella and other pathogens.
机译:感染生物学中的一个主要障碍是在传统细胞培养和动物模型中重新携带人类疾病轨迹的能力有限,这阻碍了基础研究的临床研究。在这里,我们介绍了一种三维(3D)肠组织模型,以研究人类肠道感染,以通过传统的二维单栽培植物未实现的细节水平。我们的模型包括上皮和内皮层,初级肠道胶原屑和免疫细胞。在沙门氏菌感染后,模型模仿人胃肠炎,因为它限制了上皮隔间的病原体,是现有小鼠模型的优势。双转录体测序在沙门氏菌中的应用揭示了彼此中上皮,内皮,单核细胞和自然杀伤细胞的通信和病原体。我们的研究结果表明,Salmonella使用它的III型分泌系统来操纵在上皮内局部局部抑制的炎症反应,而不会随附内皮隔室中的改变。我们的方法承诺揭示沙门氏菌和其他病原体雇用的其他人体特异性感染策略。

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