ArticleCell transplantation2018
Bioengineering with Endothelial Progenitor Cells Improves the Vascular Engraftment of Transplanted Human Islets.
Article in Cell transplantation, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 17 citations in OpenAlex.
- Encapsulated stem cell-derived β cells exert glucose control in patients with type 1 diabetes.Nature biotechnology · 2024Trial
- Article
- Challenges and opportunities in the islet transplantation microenvironment: a comprehensive summary of inflammatory cytokine, immune cells, and vascular endothelial cells.Frontiers in immunology · 2023Review
- Benefits and Hurdles of Pancreatic β-Cell Replacement.Stem cells translational medicine · 2022Review
- Recapitulating pancreatic cell-cell interactions through bioengineering approaches: the momentous role of non-epithelial cells for diabetes cell therapy.Cellular and molecular life sciences : CMLS · 2021Review
- Restoring normal islet mass and function in type 1 diabetes through regenerative medicine and tissue engineering.The lancet. Diabetes & endocrinology · 2021Review
- Multifunctional Islet Transplantation Hydrogel Encapsulating A20 High-Expressing Islets.Drug design, development and therapy · 2020Review
- Bioengineering hemophilia A-specific microvascular grafts for delivery of full-length factor VIII into the bloodstream.Blood advances · 2019Article
- Unsurpassed Intrahepatic Islet Engraftment - the Quest for New Sites for Beta Cell Replacement.Cell medicine · 2019Article
Corrections and comments
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Authors and funding
3 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Pancreatic islets isolated for transplantation are disconnected from their vascular supply and need to establish a new functional network posttransplantation. Due to poor revascularization, prevailing hypoxia with correlating increased apoptosis rates in experimental studies can be observed for months posttransplantation. Endothelial progenitor cells (EPCs) are bone marrow-derived cells that promote neovascularization. The present study tested the hypothesis that EPCs, isolated from human umbilical cord blood, could be coated to human islet surfaces and be used to promote islet vascular engraftment. Control or EPC bioengineered human islets were transplanted into the renal subcapsular space of nonobese diabetic/severe combined immunodeficiency mice. Four weeks posttransplantation, graft blood perfusion and oxygen tension were measured using laser Doppler flowmetry and Clark microelectrodes, respectively. Vessel functionality was also assessed by in vivo confocal imaging. The vascular density and the respective contribution of human and recipient endothelium were assessed immunohistochemically by staining for human and mouse CD31. Islet grafts with EPCs had substantially higher blood perfusion and oxygen tension than control transplants. Furthermore, analysis of the vascular network of the grafts revealed that grafts containing EPC bioengineered islets had a superior vascular density compared with control grafts, with functional chimeric blood vessels. We conclude that a simple procedure of surface coating with EPCs provides a possibility to improve the vascular engraftment of transplanted human islets. Established protocols are also easily applicable for intraportal islet transplantation in order to obtain a novel directed cellular therapy at the site of implantation in the liver.
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