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High-throughput Quantitative Real-time RT-PCR Assay for Determining Expression Profiles of Types I and III Interferon Subtypes
Published on: March 24, 2015
Expression of interferon-gamma receptor in normal and pathological human liver tissue
R Volpes1, J J van den Oord, R De Vos
1Department of Pathology, Catholic University of Leuven, Belgium.
Insights
Hepatocytes normally lack the human interferon-gamma receptor (HuIFN-gamma R). During liver inflammation, hepatocytes de novo express HuIFN-gamma R, potentially becoming targets for interferon-gamma
Area of Science:
- Immunology
- Hepatology
- Cell Biology
Background:
- The human interferon-gamma receptor (HuIFN-gamma R) plays a crucial role in immune responses.
- Its expression and function in hepatocytes during liver inflammation are not fully understood.
Purpose of the Study:
- To investigate the expression and topographical distribution of HuIFN-gamma R in normal and inflamed human liver tissues.
- To determine if hepatocytes can act as target cells for IFN-gamma during liver inflammation.
Main Methods:
- In situ immunohistochemistry using a specific monoclonal antibody (mcab R1G10).
- Analysis of normal liver biopsies and biopsies from patients with various inflammatory liver diseases.
- Immunoelectronmicroscopy for detailed subcellular localization.
Main Results:
- HuIFN-gamma R was absent in hepatocytes of normal liver tissue, showing only weak reactivity in endothelial cells.
- De novo expression of HuIFN-gamma R was observed in hepatocytes during acute hepatitis, chronic persistent hepatitis, chronic active hepatitis, and active cirrhosis.
- Expression patterns varied topographically and with disease severity, with cytoplasmic and membranous localization observed.
- Immunoelectronmicroscopy revealed R1G10 reactivity on the hepatocyte cell membrane and in the cytoplasm.
Conclusions:
- Hepatocytes do not express HuIFN-gamma R in normal liver tissue.
- HuIFN-gamma R is de novo expressed by hepatocytes during inflammatory liver diseases.
- Hepatocytes, by expressing HuIFN-gamma R, may serve as target cells for IFN-gamma's immunoregulatory actions in the context of liver inflammation.
Abstract:
Using in situ immunohistochemistry and a specific monoclonal antibody (mcab R1G10), we analyzed the expression of the human interferon-gamma receptor (HuIFN-gamma R) and its topographical distribution in normal liver biopsies and in biopsies with various inflammatory liver diseases. In normal liver tissue, mcab R1G10 reacted weakly with sinusoidal and vascular endothelial cells, while hepatocytes were distinctly negative. In pathological conditions, mcab R1G10 produced membranous, cytoplasmic and/or perinuclear staining of hepatocytes, in a topographical distribution which varied according to the type of liver disease. In acute hepatitis, R1G10-positive hepatocytes were diffusely distributed throughout the liver parenchyma, and showed strong cytoplasmic, as well as membranous and perinuclear reactivity. In chronic persistent hepatitis, weak membranous staining was found on a number of scattered hepatocytes in acinar zone 1, with more pronounced expression on single hepatocytes in acinar zone 3. In chronic active hepatitis and in active cirrhosis, a diffuse weak membranous reactivity throughout the liver parenchyma was accompanied by enhanced R1G10 expression in areas of inflammation in acinar zone 1. With immunoelectronmicroscopy, R1G10 reactivity was found on the peripheral cell membrane and on the microvillous canalicular cell membrane of hepatocytes in a strikingly discontinuous manner. In the cytoplasm, the reaction product was detected on the cisternae of the rough endoplasmic reticulum and on small vesicles which were especially abundant in the perinuclear area. Our results demonstrate the absence of HuIFN-gamma R on hepatocytes in the normal liver, and its de novo expression during inflammatory liver disease. These findings indicate that hepatocytes, by displaying the HuIFN-gamma R, may act as target cells for the immunoregulatory action of IFN-gamma during liver inflammation.
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