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Updated: May 19, 2026

Isolation and Enrichment of Liver Progenitor Subsets Identified by a Novel Surface Marker Combination
Published on: February 18, 2017
Perivascular mesenchymal progenitors in human fetal and adult liver
Jörg C Gerlach1, Patrick Over, Morris E Turner
1Department of Surgery, McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, PA, USA.
Abstract:
The presence of mesenchymal stem cells (MSCs) has been described in various organs. Pericytes possess a multilineage differentiation potential and have been suggested to be one of the developmental sources for MSCs. In human liver, pericytes have not been defined. Here, we describe the identification, purification, and characterization of pericytes in human adult and fetal liver. Flow cytometry sorting revealed that human adult and fetal liver contains 0.56%±0.81% and 0.45%±0.39% of CD146(+)CD45(-)CD56(-)CD34(-) pericytes, respectively. Of these, 41% (adult) and 30% (fetal) were alkaline phosphatase-positive (ALP(+)). In situ, pericytes were localized around periportal blood vessels and were positive for NG2 and vimentin. Purified pericytes could be cultured extensively and had low population doubling times. Immunofluorescence of cultures demonstrated that cells were positive for pericyte and mesenchymal cell markers CD146, NG2, CD90, CD140b, and vimentin, and negative for endothelial, hematopoietic, stellate, muscle, or liver epithelial cell markers von Willebrand factor, CD31, CD34, CD45, CD144, CD326, CK19, albumin, α-fetoprotein, CYP3A7, glial fibrillary acid protein, MYF5, and Pax7 by gene expression; myogenin and alpha-smooth muscle actin expression were variable. Fluorescence-activated cell sorting analysis of cultures confirmed surface expression of CD146, CD73, CD90, CD10, CD13, CD44, CD105, and ALP and absence of human leukocyte antigen-DR. In vitro differentiation assays demonstrated that cells possessed robust osteogenic and myogenic, but low adipogenic and low chondrogenic differentiation potentials. In functional in vitro assays, cells had typical mesenchymal strong migratory and invasive activity. In conclusion, human adult and fetal livers harbor pericytes that are similar to those found in other organs and are distinct from hepatic stellate cells.
Insights
Researchers identified and purified pericytes in human liver, finding they possess mesenchymal stem cell (MSC) characteristics and distinct properties from hepatic stellate cells. These liver pericytes show potential for osteogenic and myogenic differentiation.
Area of Science:
- Cell Biology
- Stem Cell Research
- Hepatology
Background:
- Mesenchymal stem cells (MSCs) are found in various organs and pericytes are a potential source.
- Pericytes in the human liver have not been previously defined.
- Understanding liver pericytes is crucial for regenerative medicine and understanding liver biology.
Purpose of the Study:
- To identify, purify, and characterize pericytes in human adult and fetal liver.
- To compare human liver pericytes to MSCs and hepatic stellate cells.
- To assess the differentiation potential and functional characteristics of liver pericytes.
Main Methods:
- Flow cytometry and fluorescence-activated cell sorting (FACS) for cell identification and purification.
- In situ localization and immunofluorescence staining for cell marker analysis.
- In vitro culture, differentiation assays (osteogenic, myogenic, adipogenic, chondrogenic), and functional assays (migration, invasion).
Main Results:
- Human adult and fetal liver contain distinct populations of CD146(+)CD45(-)CD56(-)CD34(-) pericytes.
- Purified pericytes exhibit MSC markers (CD146, NG2, CD90, CD140b, vimentin, CD73, CD105, ALP) and robust osteogenic/myogenic potential.
- Liver pericytes are functionally active with strong migratory and invasive capabilities and are distinct from hepatic stellate cells.
Conclusions:
- Human adult and fetal livers harbor identifiable pericytes with characteristics similar to MSCs found in other organs.
- These liver pericytes are distinct from hepatic stellate cells, offering a new perspective on liver cell populations.
- The findings support liver pericytes as a potential source of MSCs and highlight their functional significance in the liver microenvironment.
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