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Chronic Salmonella Infection Induced Intestinal Fibrosis
Published on: September 22, 2019
Genetic and immune determinants of E. coli liver abscess formation
Karthik Hullahalli1,2, Katherine G Dailey1,2, Yuko Hasegawa1,2
1Department of Microbiology, Harvard Medical School, Boston, MA 02115.
Abstract:
Systemic infections can yield distinct outcomes in different tissues. In mice, intravenous inoculation of Escherichia coli leads to bacterial replication within liver abscesses, while other organs such as the spleen clear the pathogen. Abscesses are macroscopic necrotic regions that comprise the vast majority of the bacterial burden in the animal, yet little is known about the processes underlying their formation. Here, we characterize E. coli liver abscesses and identify host determinants of abscess susceptibility. Spatial transcriptomics revealed that liver abscesses are associated with heterogenous immune cell clusters comprised of macrophages, neutrophils, dendritic cells, innate lymphoid cells, and T-cells that surround necrotic regions of the liver. Abscess susceptibility is heightened in the C57BL lineage, particularly in C57BL/6N females. Backcross analyses demonstrated that abscess susceptibility is a polygenic trait inherited in a sex-dependent manner without direct linkage to sex chromosomes. As early as 1 d post infection, the magnitude of E. coli replication in the liver distinguishes abscess-susceptible and abscess-resistant strains of mice, suggesting that the immune pathways that regulate abscess formation are induced within hours. We characterized the early hepatic response with single-cell RNA sequencing and found that mice with reduced activation of early inflammatory responses, such as those lacking the LPS receptor TLR4 (Toll-like receptor 4), are resistant to abscess formation. Experiments with barcoded E. coli revealed that TLR4 mediates a tradeoff between abscess formation and bacterial clearance. Together, our findings define hallmarks of E. coli liver abscess formation and suggest that hyperactivation of the hepatic innate immune response drives liver abscess susceptibility.
Insights
Hyperactivation of the liver
Area of Science:
- Immunology and Microbiology
- Host-Pathogen Interactions
Background:
- Systemic infections cause varied tissue-specific outcomes.
- Escherichia coli intravenous inoculation in mice results in liver abscesses, while spleens clear the pathogen.
- Liver abscess formation mechanisms remain poorly understood.
Purpose of the Study:
- To characterize E. coli liver abscesses in mice.
- To identify host determinants of abscess susceptibility.
Main Methods:
- Spatial transcriptomics to analyze immune cell clusters surrounding necrotic liver regions.
- Backcross analyses to determine genetic inheritance of abscess susceptibility.
- Single-cell RNA sequencing to characterize early hepatic immune responses.
- Experiments using barcoded E. coli to study bacterial replication and clearance.
Main Results:
- Liver abscesses are associated with diverse immune cell clusters.
- Abscess susceptibility is heightened in C57BL/6N female mice and is a polygenic, sex-dependent trait.
- Reduced activation of early inflammatory responses, particularly Toll-like receptor 4 (TLR4) signaling, confers resistance to abscess formation.
- TLR4 activation mediates a trade-off between abscess formation and bacterial clearance.
Conclusions:
- E. coli liver abscess formation is characterized by specific immune cell infiltrates and genetic susceptibility factors.
- Early hepatic innate immune response hyperactivation drives liver abscess susceptibility.
- TLR4 signaling plays a critical role in balancing bacterial containment and abscess development.

