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Macrophages expressing macrophage receptor with collagen structure attenuate liver fibrosis through a tissue restoration phenotype
Sofia Jerez, Shawna A. Cooper, Usman Yaqoob, Maleeha F. Kalaiger, Abid A. Anwar, Mandy Wong, Bushra Arif, Luke C. Doskey, Maria Hernandez-Tejero, William A. Sherman, Ruben De Boeck, Ying Li, Moira B. Hilscher, Enis Kostallari, Nidhi Jalan-Sakrikar, Sheng Cao, Vijay H. Shah
Sofia Jerez, Shawna A. Cooper, Usman Yaqoob, Maleeha F. Kalaiger, Abid A. Anwar, Mandy Wong, Bushra Arif, Luke C. Doskey, Maria Hernandez-Tejero, William A. Sherman, Ruben De Boeck, Ying Li, Moira B. Hilscher, Enis Kostallari, Nidhi Jalan-Sakrikar, Sheng Cao, Vijay H. Shah
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Research Article Cell biology Hepatology

Macrophages expressing macrophage receptor with collagen structure attenuate liver fibrosis through a tissue restoration phenotype

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Abstract

Liver macrophages are central in maintaining hepatic homeostasis and mediating immune responses during liver injury, including fibrosis. Macrophages may have proinflammatory or antiinflammatory properties, but which properties influence fibrosis remains unclear. To explore the role of macrophages in liver fibrosis, we performed single-cell RNA-seq in a mouse model of liver injury and found that macrophage diversity was increased. Marco was among the most significantly upregulated genes, and a population of Marcohi macrophages increased with injury and spatially segregated to nonfibrotic areas. The macrophage receptor with collagenous structure (MARCO) protein is a scavenger receptor expressed by specific subsets of macrophages, and its role in liver fibrosis is unclear. In vitro induction of Marco in bone marrow–derived macrophages decreased proinflammatory gene expression, increased antiinflammatory and antifibrotic gene expression, and enhanced phagocytosis, indicating a restorative phenotype. Adoptive transfer of MARCO+ macrophages in a mouse model of liver fibrosis reduced the expression of extracellular matrix–associated (ECM-associated) genes in hepatic stellate cells (HSCs) and reduced collagen deposition, which did not occur with the transfer of MARCO– macrophages. Therefore, MARCO+ macrophages have a tissue restorative role in the liver and attenuate fibrogenesis through interaction with HSCs, thereby providing a potential therapeutic pathway for liver fibrosis.

Authors

Sofia Jerez, Shawna A. Cooper, Usman Yaqoob, Maleeha F. Kalaiger, Abid A. Anwar, Mandy Wong, Bushra Arif, Luke C. Doskey, Maria Hernandez-Tejero, William A. Sherman, Ruben De Boeck, Ying Li, Moira B. Hilscher, Enis Kostallari, Nidhi Jalan-Sakrikar, Sheng Cao, Vijay H. Shah

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Figure 4

MARCO+ macrophages are increased in chronic liver fibrosis but localize to nonfibrotic regions.

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MARCO+ macrophages are increased in chronic liver fibrosis but localize ...
(A) 10X Visium CCl4 mouse liver sample demonstrating the colocalization of lighter fibrotic regions visible with H&E staining versus the designated collagen high and low “spots” used for differential expression of Marco with violin plot relative to collagen type I in CCl4-induced fibrotic mouse liver. Collagen high represents fibrotic zones, collagen low represents nonfibrotic zones. Log2FC = 1.2; ****P < 0.0001 in A. (B) Representative images of CLEC4F macrophage marker and MARCO immunostaining as well as collagen type I and MARCO immunostaining in liver tissue sections of mice after chronic administration of olive oil or CCl4. The homogeneous distribution of macrophages in the olive oil group differs from the chronic fibrosis group by an increased macrophage population that segregates by MARCO+ cells that specifically do not colocalize with fibrotic collagen versus MARCO– populations that have a distribution similar to the collagen staining. (C) Representative images of CD68 macrophage marker and MARCO immunostaining by IHC as well as immunofluorescence to show that the same distribution of MARCO+ macrophages compared with regions of fibrosis is seen in liver tissue sections from patients with and without cirrhosis as in the olive oil versus CCl4 fibrotic mouse model. IHC scale bar: 50 μm; IF scale bar: 275 μm. Each image is representative of 3 patient-derived or animal-derived samples.

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