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1.
Biomaterials ; 139: 91-101, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28595132

ABSTRACT

Chronic liver disease is the result of long term exposure to viruses or toxins such as alcohol, fat and drugs, and forms the basis for the development of liver fibrosis and primary liver cancer. In vitro and in vivo models are key to study the pathways involved in chronic liver disease and for the development of therapeutics. 3D co-culture systems are becoming the in vitro standard, which requires freshly isolated primary hepatic cells. We developed a novel isolation method to simultaneously isolate liver sinusoidal endothelial cells (LSECs), Kupffer cells (KCs) and hepatic stellate cells (HSCs). The method exploits the scavenging activity of LSECs, the phagocytic capacity of KCs and the retinoid content of HSCs in vivo to enable direct processing by fluorescence-activated cell sorting without additional antibody binding and washing steps. UFACS3, for UV-FACS-based isolation of 3 non-parenchymal liver cell types, yields functional and pure LSECs (98 ± 1%), KCs (98 ± 1%) and HSCs (97 ± 3%), with less hands-on time from healthy and diseased rodent livers. This novel approach allows a fast and effective combined isolation of sinusoidal cells for further analysis.


Subject(s)
Cell Separation/methods , Hepatocytes/cytology , Kupffer Cells/cytology , Liver/cytology , Analysis of Variance , Animals , Coculture Techniques , Flow Cytometry , Hepatic Stellate Cells , Immunohistochemistry , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Rats , Rats, Sprague-Dawley , Statistics, Nonparametric
2.
Histochem Cell Biol ; 141(1): 85-99, 2014 Jan.
Article in English | MEDLINE | ID: mdl-24043511

ABSTRACT

Hepatic stellate cells (HSCs) play an important role in several (patho)physiologic conditions in the liver. In response to chronic injury, HSCs are activated and change from quiescent to myofibroblast-like cells with contractile properties. This shift in phenotype is accompanied by a change in expression of intermediate filament (IF) proteins. HSCs express a broad, but variable spectrum of IF proteins. In muscle, syncoilin was identified as an alpha-dystrobrevin binding protein with sequence homology to IF proteins. We investigated the expression of syncoilin in mouse and human HSCs. Syncoilin expression in isolated and cultured HSCs was studied by qPCR, Western blotting, and fluorescence immunocytochemistry. Syncoilin expression was also evaluated in other primary liver cell types and in in vivo-activated HSCs as well as total liver samples from fibrotic mice and cirrhotic patients. Syncoilin mRNA was present in human and mouse HSCs and was highly expressed in in vitro- and in vivo-activated HSCs. Syncoilin protein was strongly upregulated during in vitro activation of HSCs and undetectable in hepatocytes and liver sinusoidal endothelial cells. Syncoilin mRNA levels were elevated in both CCl4- and common bile duct ligation-treated mice. Syncoilin immunocytochemistry revealed filamentous staining in activated mouse HSCs that partially colocalized with α-smooth muscle actin, ß-actin, desmin, and α-tubulin. We show that in the liver, syncoilin is predominantly expressed by activated HSCs and displays very low-expression levels in other liver cell types, making it a good marker of activated HSCs. During in vitro activation of mouse HSCs, syncoilin is able to form filamentous structures or at least to closely interact with existing cellular filaments.


Subject(s)
Hepatic Stellate Cells/metabolism , Intermediate Filament Proteins/metabolism , Liver/pathology , Muscle Proteins/metabolism , Actins/pharmacokinetics , Animals , Carbon Tetrachloride/pharmacology , Cell Differentiation , Cell Line , Desmin/pharmacology , Fibrosis/pathology , HEK293 Cells , Hepatic Stellate Cells/cytology , Hepatocytes/pathology , Humans , Intermediate Filament Proteins/genetics , Intermediate Filament Proteins/pharmacokinetics , Liver/cytology , Male , Mice , Mice, Inbred BALB C , Muscle Proteins/genetics , Muscle Proteins/pharmacokinetics , RNA Interference , RNA, Messenger/biosynthesis , RNA, Small Interfering , Tubulin/pharmacokinetics
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