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A High-content In Vitro Pancreatic Islet β-cell Replication Discovery Platform
Published on: July 16, 2016
Expression of alpha-1 proteinase inhibitor in human islet microvascular endothelial cells
J Lou1, F Triponez, J Oberholzer
1Department of Surgery, University Hospital, University of Geneva, Switzerland. lzheng@cmu.unige.ch
Abstract:
There is a microcirculation system within the islets of Langerhans. However, little is known about the phenotypic and functional characterization of islet microvascular endothelial cells (MVEC). In this study, we purified MVEC from human pancreatic islets by using Ulex europaeus (Sigma, St. Louis, MO) agglutinin-1 (UEA-1)-coated dynabeads (Dynal A.S., Oslo, Norway). These purified human islet MVEC (HI-MVEC) express von Willebrand factor, take up high levels of acetylated LDL, and upregulate endothelial cell leukocyte adhesion molecule 1 in response to tumor necrosis factor-alpha. Ultrastructure examination shows the presence of microvilli and fenestrations on the cell surface, Weibel-Palade bodies in the cytoplasm, and tight junctions between cells. Furthermore, we show that vascular endothelial cell growth factor contributes to the formation of surface fenestrations on cultured HI-MVEC. After purification, HI-MVEC exhibit a very low proliferation capacity and are strongly resistant to trypsin, compared with other original MVEC. We also demonstrate that alpha-1 proteinase inhibitor (Api) is expressed on HI-MVEC and specifically located at the area of cell-cell junctions. By reverse transcription-polymerase chain reaction, a significant messenger RNA band of Api was found only in HI-MVEC, but not in other organ-derived MVEC, indicating that expression of Api is islet MVEC specific. Antibodies to Api significantly reversed the resistance to trypsin and promoted proliferation of HI-MVEC, suggesting that these specific functional characteristics of HI-MVEC are related to the expression of Api. These results indicate that HI-MVEC exhibit some specific morphological and functional characteristics that differ from MVEC derived from other organs.
Insights
Researchers characterized human islet microvascular endothelial cells (HI-MVEC), discovering they possess unique properties like alpha-1 proteinase inhibitor (Api) expression, which influences their function and proliferation.
Area of Science:
- Endocrinology and Metabolism
- Vascular Biology
- Cell Biology
Background:
- The microcirculation within pancreatic islets of Langerhans is crucial for glucose homeostasis.
- Phenotypic and functional characteristics of islet microvascular endothelial cells (MVEC) remain largely uncharacterized.
Purpose of the Study:
- To purify and characterize human islet MVEC (HI-MVEC).
- To investigate the specific morphological and functional properties of HI-MVEC.
- To explore the role of alpha-1 proteinase inhibitor (Api) in HI-MVEC function.
Main Methods:
- Purification of HI-MVEC using Ulex europaeus agglutinin-1 (UEA-1)-coated dynabeads.
- Immunophenotypic analysis including von Willebrand factor expression and acetylated LDL uptake.
- Ultrastructural examination and assessment of response to tumor necrosis factor-alpha.
- Analysis of proliferation capacity, trypsin resistance, and Api expression via RT-PCR.
- Functional assays using anti-Api antibodies.
Main Results:
- Purified HI-MVEC exhibited characteristic endothelial markers, microvilli, fenestrations, Weibel-Palade bodies, and tight junctions.
- HI-MVEC showed low proliferation capacity and high trypsin resistance compared to other MVEC.
- Alpha-1 proteinase inhibitor (Api) was specifically expressed on HI-MVEC, particularly at cell-cell junctions.
- Api expression was found to be specific to islet MVEC.
- Blocking Api function reversed trypsin resistance and enhanced HI-MVEC proliferation.
Conclusions:
- HI-MVEC possess distinct morphological and functional characteristics compared to MVEC from other organs.
- Api expression is a unique feature of HI-MVEC and plays a significant role in their specific functional properties, including proliferation and trypsin resistance.
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