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Extracellular Vesicle-based Strategy to Stratify Islets and Improve Their FItness Before Transplantation
Sponsor: University Hospital, Strasbourg, France
Summary
Islet transplantation restores glucose tolerance in people living with diabetes characterised by high glycaemic variability: 90 per cent of patients were free from severe hypoglycaemia at 5 years, compared with 26 per cent prior to transplantation, and 50 per cent of patients were insulin-independent at 1 year. However, follow-up of participants is characterised by a gradual loss of islet function, with only 30 per cent of patients remaining insulin-independent at 5 years. The greatest limitation and challenge of islet transplantation lies in the substantial loss of islet mass infused via the portal vein at the start of the post-transplant period. Up to 50 per cent of the graft may be lost in the days following transplantation. This early loss is due to a combination of stress and non-specific inflammatory and immune mechanisms, as well as blood-mediated inflammatory reactions, which compromise the survival, engraftment, revascularisation and early function of the transplanted islets. Consequently, multiple islet infusions are often required to achieve satisfactory metabolic outcomes in recipients. However, due to the scarcity of available donors, the widespread application of islet transplantation remains limited as a result. During the culture period, cells in the islet preparation release extracellular vesicles (EVs) - either secreted by the plasma membrane (microvesicles, MVs) or of intracellular endosomal origin (exosomes) - which play a major role in intercellular communication. Microvesicles carry various markers and effectors that can render them either harmful (pro-coagulant, pro-apoptotic, pro-inflammatory and pro-senescent) or protective. We therefore hypothesise that (1) EVs released during the preparation of islets prior to transplantation (hereinafter referred to as Graft-EVs) reflect the quality of the pancreatic islets, (2) certain EVs have a protective or deleterious effect on the pancreatic islet, and (3) reconditioning the islets by enriching them with protective EVs improved graft quality under the pro-inflammatory conditions of IBMIR. We therefore propose to develop an EV-based islet preconditioning strategy to improve graft survival and function.
Key Details
Gender
All
Age Range
18 Years - Any
Study Type
OBSERVATIONAL
Enrollment
25
Start Date
2026-09
Completion Date
2032-01
Last Updated
2026-09-10
Healthy Volunteers
No
Conditions
Interventions
beta2score
The BETA-2 score enables the detection of insulin independence following islet transplantation (BETA-2 score \< 20) with a specificity and sensitivity of over 82 per cent.
Locations (1)
Hôpitaux universitaires de Strasbourg
Strasbourg, France