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doi:10.22028/D291-46568 | Title: | Boosting the engraftment of subcutaneously transplanted pancreatic islets by nanofat |
| Author(s): | Wrublewsky, Selina Bickelmann, Caroline Meßmer, Lea Stefanie Wilden, Cedric Berhorst, Charlotte Prates-Roma, Leticia Morgan, Bruce Rother, Sandra Laschke, Matthias W. Weinzierl, Andrea Ampofo, Emmanuel |
| Language: | English |
| Title: | Diabetes, Obesity and Metabolism |
| Volume: | 27 |
| Issue: | 12 |
| Pages: | 7258-7274 |
| Publisher/Platform: | Wiley |
| Year of Publication: | 2025 |
| Free key words: | diabetes insulin islet transplantation nanofat vascularization |
| DDC notations: | 610 Medicine and health |
| Publikation type: | Journal Article |
| Abstract: | Aims In the therapy of type 1 diabetes mellitus, the subcutaneous space has been suggested to be a clinically preferable transplantation site for pancreatic islets due to its easy accessibility. However, its poor vascularisation capacity and, thus, challenging environment typically result in islet engraftment failure. In the present proof-of-principle study, we demonstrate that this problem can be overcome by nanofat, an emulsified fat derivative already used in clinical practice. Materials and Methods The cellular composition of nanofat was assessed by immunohistochemistry. The angiogenic activity of the soluble and cellular nanofat fraction was analyzed by an angiogenic protein array, tube formation and spheroid sprouting assays. The viability and endocrine function of islets exposed to the nanofat fractions was investigated by flow cytometry, qRT-PCR and ELISA. In vivo, islets and nanofat were co-transplanted under the kidney capsule as well as into the subcutaneous space of diabetic animals. Results In a panel of in vitro assays, we showed that the soluble and cellular nanofat fraction improve the viability, hormone release, and angiogenic activity of islets. The beneficial effects of these two fractions were validated in vivo in the murine diabetic kidney capsule model, as indicated by an accelerated restoration of normoglycaemia. The co-transplantation of islets with nanofat resulted in successful islet engraftment within the subcutaneous space of diabetic mice. Conclusions These findings demonstrate that nanofat markedly boosts the vascularisation and endocrine function of islet grafts. Hence, its co-transplantation with pancreatic islets represents a simple, clinically feasible approach to make the subcutaneous space available for future islet transplantation. |
| DOI of the first publication: | 10.1111/dom.70127 |
| URL of the first publication: | https://doi.org/10.1111/dom.70127 |
| Link to this record: | urn:nbn:de:bsz:291--ds-465686 hdl:20.500.11880/40818 http://dx.doi.org/10.22028/D291-46568 |
| ISSN: | 1463-1326 1462-8902 |
| Date of registration: | 24-Nov-2025 |
| Description of the related object: | Supporting Information |
| Related object: | https://dom-pubs.pericles-prod.literatumonline.com/action/downloadSupplement?doi=10.1111%2Fdom.70127&file=dom70127-sup-0001-supinfo.zip |
| Faculty: | M - Medizinische Fakultät NT - Naturwissenschaftlich- Technische Fakultät |
| Department: | M - Biophysik M - Chirurgie NT - Biowissenschaften |
| Professorship: | M - Prof. Dr. Matthias Laschke M - Prof. Dr. Michael D. Menger M - Dr. Leticia Prates Roma M - Jun.-Prof. Dr. Sandra Rother NT - Prof. Dr. Bruce Morgan |
| Collections: | SciDok - Der Wissenschaftsserver der Universität des Saarlandes |
Files for this record:
| File | Description | Size | Format | |
|---|---|---|---|---|
| Diabetes Obesity Metabolism - 2025 - Wrublewsky - Boosting the engraftment of subcutaneously transplanted pancreatic islets.pdf | 7,77 MB | Adobe PDF | View/Open |
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