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Protocol for Isolation of Primary Human Hepatocytes and Corresponding Major Populations of Non-parenchymal Liver Cells
Published on: March 30, 2016
Resident human hepatic lymphocytes are phenotypically different from circulating lymphocytes
S Norris1, C Collins, D G Doherty
1Education & Research Centre and Liver Unit, St. Vincent's Hospital, and University College Dublin, Ireland.
Insights
This study reveals unique T lymphocyte subpopulations in normal human liver tissue, differing significantly from those in peripheral blood. These findings suggest specialized immune functions and local differentiation within the liver, impacting hepatic immunoregulation and disease pathogenesis.
Area of Science:
- Immunology
- Hepatology
- Cell Biology
Background:
- Tissue-specific lymphocyte subpopulations exist and may mature locally.
- Limited knowledge on normal human liver lymphocyte phenotypes.
- Previous studies focused on murine models or diseased human livers.
Purpose of the Study:
- To analyze and compare surface phenotypes of lymphocytes from normal human liver and peripheral blood.
- To identify and quantify distinct lymphocyte subpopulations in the human liver.
- To understand the potential local differentiation and specialized functions of hepatic lymphocytes.
Main Methods:
- Isolation of hepatic lymphocytes via mechanical dissociation and enzymatic digestion.
- Flow cytometry analysis using a panel of monoclonal antibodies (CD3, CD4, CD8, CD19, CD56, gammadeltaTCR, etc.).
- In situ characterization using hematoxylin and eosin staining and immunohistochemistry for CD3 and common leukocyte antigen.
Main Results:
- Reversed CD4/CD8 T cell ratio in liver (1:3.5) compared to blood (2:1).
- Increased percentages of double positive (CD3+CD4+CD8+) and double negative (CD3+CD4-8-) T cells in the liver.
- Higher expression of gammadeltaTCR, CD8alpha-chain without beta-chain, and CD3+CD56+ cells in hepatic lymphocytes compared to peripheral blood.
Conclusions:
- First description and quantification of unconventional T lymphocyte subpopulations in the normal adult human liver.
- These subpopulations may possess specialized functions in regional immune responses and undergo local differentiation.
- Findings are crucial for understanding hepatic immunoregulation, liver diseases, and allograft rejection.
Background/Aims:
Murine and human studies have documented the existence of subpopulations of lymphocytes in particular tissues that differ phenotypically and functionally from those in peripheral blood and may mature locally. Since little is known about lymphocyte subpopulations in the normal human liver, we have analysed the surface phenotypes of lymphocytes isolated from liver specimens taken from 15 donors at the time of liver transplantation, and compared these with those of peripheral blood lymphocytes.
Methods:
Hepatic lymphocytes were prepared by mechanical dissociation and enzymatic digestion of liver tissue. The cells were stained with a panel of monoclonal antibodies (CD3, CD4, CD8, CD19, CD56, gammadeltaTCR, alphabetaTCR, CD8alpha-chain, CD8alphabeta dimer), and analysed by flow cytometry. In situ characterisation of hepatic lymphocytes was by haematoxylin and eosin staining of fixed liver sections and by immunohistochemical staining for common leukocyte antigen and CD3.
Results:
Significant numbers of hepatic T lymphocytes were localised to the portal tracts and parenchyma of normal liver specimens. Flow cytometry revealed that the CD4/CD8 ratio (1:3.5) was consistently reversed compared with that in peripheral blood (2:1). Other lymphocyte populations identified include double positive CD3+CD4+CD8+ cells which accounted for a mean of 5.5% (range 3-11.6%) of hepatic CD3+ cells compared with 1.3% in blood (range 0.7-3.6%; p < 0.007), and double negative CD3+ CD4-8- cells (14.5%; range 2.7-29% compared with 5.0%; range 2.1-10.8%, p < 0.02). Over 15% (range 6.8-34%) of all hepatic CD3+ cells expressed a gammadeltaTCR compared to 2.7% (range 0.9-4.7%) of CD3+ peripheral blood lymphocytes (p < 0.004) and almost 50% of these coexpressed CD8. The CD8 alpha-chain was expressed without the beta-chain (CD8alpha+beta-) by 15.4% (range 4-29.1%) of hepatic T cells, but this phenotype was undetectable among peripheral blood lymphocytes (p < 0.009). Cells expressing both the T cell marker CD3 and the natural killer cell marker CD56 constituted 31.6% (range 14-54%) of all hepatic CD3+ lymphocytes but were rarely present amongst peripheral blood lymphocytes (0-6%; p < 0.0001).
Conclusions:
These data are the first to describe and quantify unconventional T lymphocyte subpopulations in the normal adult human liver which may have specialised functions in regional immune responses and which may differentiate locally. These findings have important implications for our understanding of hepatic immunoregulation and the pathogenic mechanisms involved in viral and immune-mediated liver disease and allograft rejection.
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