坏死性小肠结肠炎
失调
微生物群
疾病
肠道通透性
病理生理学
发病机制
肠道微生物群
免疫学
生物
医学
生物信息学
病理
内科学
作者
Lauren C. Frazer,Yukihiro Yamaguchi,Corey M. Jania,Wyatt E. Lanik,Qingqing Gong,Dhirendra Kumar Singh,Stephen Mackay,Natalia S. Akopyants,Misty Good
摘要
Necrotizing enterocolitis (NEC) is a severe and potentially fatal intestinal disease that has been difficult to study due to its complex pathogenesis, which remains incompletely understood. The pathophysiology of NEC includes disruption of intestinal tight junctions, increased gut barrier permeability, epithelial cell death, microbial dysbiosis, and dysregulated inflammation. Traditional tools to study NEC include animal models, cell lines, and human or mouse intestinal organoids. While studies using those model systems have improved the field's understanding of disease pathophysiology, their ability to recapitulate the complexity of human NEC is limited. An improved in vitro model of NEC using microfluidic technology, named NEC-on-a-chip, has now been developed. The NEC-on-a-chip model consists of a microfluidic device seeded with intestinal enteroids derived from a preterm neonate, co-cultured with human endothelial cells and the microbiome from an infant with severe NEC. This model is a valuable tool for mechanistic studies into the pathophysiology of NEC and a new resource for drug discovery testing for neonatal intestinal diseases. In this manuscript, a detailed description of the NEC-on-a-chip model will be provided.
科研通智能强力驱动
Strongly Powered by AbleSci AI