» Articles » PMID: 33239787

Commensal-driven Immune Zonation of the Liver Promotes Host Defence

Overview
Journal Nature
Specialty Science
Date 2020 Nov 26
PMID 33239787
Citations 97
Authors
Affiliations
Soon will be listed here.
Abstract

The liver connects the intestinal portal vasculature with the general circulation, using a diverse array of immune cells to protect from pathogens that translocate from the gut. In liver lobules, blood flows from portal triads that are situated in periportal lobular regions to the central vein via a polarized sinusoidal network. Despite this asymmetry, resident immune cells in the liver are considered to be broadly dispersed across the lobule. This differs from lymphoid organs, in which immune cells adopt spatially biased positions to promote effective host defence. Here we used quantitative multiplex imaging, genetic perturbations, transcriptomics, infection-based assays and mathematical modelling to reassess the relationship between the localization of immune cells in the liver and host protection. We found that myeloid and lymphoid resident immune cells concentrate around periportal regions. This asymmetric localization was not developmentally controlled, but resulted from sustained MYD88-dependent signalling induced by commensal bacteria in liver sinusoidal endothelial cells, which in turn regulated the composition of the pericellular matrix involved in the formation of chemokine gradients. In vivo experiments and modelling showed that this immune spatial polarization was more efficient than a uniform distribution in protecting against systemic bacterial dissemination. Together, these data reveal that liver sinusoidal endothelial cells sense the microbiome, actively orchestrating the localization of immune cells, to optimize host defence.

Citing Articles

Diverse Functions of Macrophages in Obesity and Metabolic Dysfunction-Associated Steatotic Liver Disease: Bridging Inflammation and Metabolism.

Jang J, Sung J, Huh J Immune Netw. 2025; 25(1):e12.

PMID: 40078789 PMC: 11896663. DOI: 10.4110/in.2025.25.e12.


Splenic red pulp macrophages eliminate the liver-resistant from the blood circulation of mice.

An H, Huang Y, Zhao Z, Li K, Meng J, Huang X Sci Adv. 2025; 11(11):eadq6399.

PMID: 40073120 PMC: 11900858. DOI: 10.1126/sciadv.adq6399.


Research Progress on the Immune Function of Liver Sinusoidal Endothelial Cells in Sepsis.

Wang X, Guo Z, Xia Y, Wang X, Wang Z Cells. 2025; 14(5).

PMID: 40072101 PMC: 11899273. DOI: 10.3390/cells14050373.


Cross-tissue multi-omics analyses reveal the gut microbiota's absence impacts organ morphology, immune homeostasis, bile acid and lipid metabolism.

Shen J, Liang W, Zhao R, Chen Y, Liu Y, Cheng W Imeta. 2025; 4(1):e272.

PMID: 40027481 PMC: 11865341. DOI: 10.1002/imt2.272.


Spatial dimension of macrophage heterogeneity in liver diseases.

Guillot A, Tacke F eGastroenterology. 2025; 1(1):e000003.

PMID: 39944246 PMC: 11770455. DOI: 10.1136/egastro-2023-000003.


References
1.
Kubes P, Jenne C . Immune Responses in the Liver. Annu Rev Immunol. 2018; 36:247-277. DOI: 10.1146/annurev-immunol-051116-052415. View

2.
Kastenmuller W, Torabi-Parizi P, Subramanian N, Lammermann T, Germain R . A spatially-organized multicellular innate immune response in lymph nodes limits systemic pathogen spread. Cell. 2012; 150(6):1235-48. PMC: 3514884. DOI: 10.1016/j.cell.2012.07.021. View

3.
Baptista A, Gola A, Huang Y, Milanez-Almeida P, Torabi-Parizi P, Urban Jr J . The Chemoattractant Receptor Ebi2 Drives Intranodal Naive CD4 T Cell Peripheralization to Promote Effective Adaptive Immunity. Immunity. 2019; 50(5):1188-1201.e6. DOI: 10.1016/j.immuni.2019.04.001. View

4.
Doi Y, Tamura S, Nammo T, Fukui K, Kiso S, Nagafuchi A . Development of complementary expression patterns of E- and N-cadherin in the mouse liver. Hepatol Res. 2007; 37(3):230-7. DOI: 10.1111/j.1872-034X.2007.00028.x. View

5.
Braeuning A, Ittrich C, Kohle C, Hailfinger S, Bonin M, Buchmann A . Differential gene expression in periportal and perivenous mouse hepatocytes. FEBS J. 2006; 273(22):5051-61. DOI: 10.1111/j.1742-4658.2006.05503.x. View