克罗恩病中宿主与病原体之间的相互作用

IF 5.7 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Chemical Theory and Computation Pub Date : 2024-10-24 DOI:10.1038/s41575-024-00997-y
Roberta Caruso, Bernard C. Lo, Grace Y. Chen, Gabriel Núñez
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引用次数: 0

摘要

哺乳动物肠道内有数万亿微生物,统称为肠道微生物群。大多数共生菌与宿主共同进化,形成了互惠互利的关系。在某些条件下,例如在克罗恩病(炎症性肠病的一种亚型)中,一些共生菌在易感基因宿主体内开花结果,导致疾病。虽然克罗恩病中致病微生物或病原菌的身份和功能在很大程度上仍不为人所知,但来自动物模型的越来越多的证据表明,引发克罗恩病样结肠炎的病原菌栖息在特定的龛位中,并穿透肠道组织引发炎症。在本综述中,我们将讨论肠道共生体占据的独特壁龛,以及引发克罗恩病的病原体生活在粘液层或肠道上皮附近的证据。我们还讨论了宿主体内与克罗恩病相关的突变是如何通过促进肠组织中病原菌的渗透和积累来破坏肠道平衡的。最后,我们讨论了基于微生物组的干预措施在克罗恩病精准治疗策略中的潜在作用。
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Host–pathobiont interactions in Crohn’s disease

The mammalian intestine is colonized by trillions of microorganisms that are collectively referred to as the gut microbiota. The majority of symbionts have co-evolved with their host in a mutualistic relationship that benefits both. Under certain conditions, such as in Crohn’s disease, a subtype of inflammatory bowel disease, some symbionts bloom to cause disease in genetically susceptible hosts. Although the identity and function of disease-causing microorganisms or pathobionts in Crohn’s disease remain largely unknown, mounting evidence from animal models suggests that pathobionts triggering Crohn’s disease-like colitis inhabit certain niches and penetrate the intestinal tissue to trigger inflammation. In this Review, we discuss the distinct niches occupied by intestinal symbionts and the evidence that pathobionts triggering Crohn’s disease live in the mucus layer or near the intestinal epithelium. We also discuss how Crohn’s disease-associated mutations in the host disrupt intestinal homeostasis by promoting the penetration and accumulation of pathobionts in the intestinal tissue. Finally, we discuss the potential role of microbiome-based interventions in precision therapeutic strategies for the treatment of Crohn’s disease.

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来源期刊
Journal of Chemical Theory and Computation
Journal of Chemical Theory and Computation 化学-物理:原子、分子和化学物理
CiteScore
9.90
自引率
16.40%
发文量
568
审稿时长
1 months
期刊介绍: The Journal of Chemical Theory and Computation invites new and original contributions with the understanding that, if accepted, they will not be published elsewhere. Papers reporting new theories, methodology, and/or important applications in quantum electronic structure, molecular dynamics, and statistical mechanics are appropriate for submission to this Journal. Specific topics include advances in or applications of ab initio quantum mechanics, density functional theory, design and properties of new materials, surface science, Monte Carlo simulations, solvation models, QM/MM calculations, biomolecular structure prediction, and molecular dynamics in the broadest sense including gas-phase dynamics, ab initio dynamics, biomolecular dynamics, and protein folding. The Journal does not consider papers that are straightforward applications of known methods including DFT and molecular dynamics. The Journal favors submissions that include advances in theory or methodology with applications to compelling problems.
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