Pancreatic Islet Transplantation to the Anterior Chamber of the Eye
Trial Snapshot
- Phase
- Not Applicable
- Status
- Withdrawn
- Sponsor
- Imperial College London
- Enrollment
- 6
- Locations
- 1
- Primary Endpoint
- Safety of the procedure with regards to opthalmic complications
Study Overview
Brief Summary
This is a phase II prospective, interventional, open-labeled, proof-of-concept study.
2 years per participant, 2 years 6 months in total Total n=6
The primary objective is to assess the safety of human pancreatic islet transplantation into the ACE of participants with T1D.
Safety analyses will involve examination of the incidence, severity, and type of treatment emergent AEs reported, and changes in vital signs, ophthalmic status and laboratory test results from baseline (Day 0 pre-transplantation) to specified time points throughout the study.
Detailed Description
Type 1 diabetes (T1D) is caused by the destruction of pancreatic islet cells through an autoimmune attack against insulin-producing beta cells in the endocrine pancreas. This in turn impairs glucose control causing multi-organ failure, morbidity and mortality which are also associated with high economic costs. While strict glucose control with insulin replacement therapy is the standard-of-care, achieving controlled glucose homeostasis remains a major challenge. Replacement of the insulin-producing beta cells through pancreatic islet transplantation has emerged as a promising therapy for T1D. Thus far, hundreds of islet transplantations have been performed in ongoing clinical trials worldwide. Islet transplantation is on the verge of obtaining FDA approval as a standard therapy in T1D. While ongoing clinical trials have focused on islet transplantation into the hepatic portal system, the search for alternative islet transplantation sites remains a priority for funding agencies and an active area of research. Studies have explored islet transplantation into different locations. One location of interest is the anterior chamber of the eye (ACE).
Importantly, these studies have shown several advantages offered by islet transplantation into the anterior chamber of the eye compared to other sites, which include:
- Local/topical immunosuppression and intervention potentially feasible.
- No IBMIR (Instant Blood Mediated Inflammatory Reaction) as when islets are injected to the portal vein with a major loss of islets.
- Good survival of transplanted islets due to limited anoxia time (fewer islets required to improve glycaemic control compared to other islet transplantation sites (i.e., liver)).
- Non-invasive monitoring/assessment of grafted islets with potential cellular resolution.
- Intraocular islets may function as "reporters" of native islets or islets transplanted elsewhere.
- Simpler surgical procedure as compared to other islet transplantation sites (i.e., liver).
Access to the ACE is a safe procedure routinely used by ophthalmic surgeons for the anterior segment surgery (e.g. cataract operations) and extraction of intraocular fluid for diagnostic purposes. Importantly, the ACE has unique immunological properties which regulate the immune system in such a way that allogeneic tissue placed in this compartment may be protected from immune rejection and this correlates with the generation of systemic immune tolerance through anterior chamber-associated immune deviation (ACAID) (Niederkorn and Streilein, 1982; Streilein and Niederkorn, 1985). Hence, the potential of inducing systemic immune tolerance and eliminating severe side-effects associated with systemic immunosuppression through local/topical drug application further highlight the significance and clinical relevance of this approach. Moreover, this introduces the possibility of transplanting additional islets elsewhere in the body without risk of rejection. Importantly, it was recently shown that islet grafts in the ACE also serve as "reporters" for the status of the pancreatic islets (Ilegems et al., 2013). This essentially demonstrates that islets in the ACE are reliable, easily accessible reporters for the overall health and islet function during interventions regimens aimed at regulating different aspects of the pancreatic islets.
INTERVENTION AND INDICATION
Study Design
- Study Type
- Interventional
- Allocation
- Na
- Intervention Model
- Single Group
- Primary Purpose
- Treatment
- Masking
- None
Eligibility Criteria
- Ages
- 18 Years to — (Adult, Older Adult)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •T1D participants that fulfill criteria for islet transplantation
- •Systemic immunosuppression
- •At least one eye with VA from HM to 0.1, and fellow eye with equal or better VA
- •Age ≥ 18 years
- •Normal cornea with good visualization of the anterior segment
- •Participant not eligible or with no wish for standard pancreatic islet into the hepatic portal system or pancreas transplantation
- •Participants who have recently been involved in research or who are actively involved in research may be recruited at the discretion of the chief investigator if the active research has no impact on glucose self-management.
Exclusion Criteria
- •VA below HM or above 0.1
- •Neovascular glaucoma
- •Iris neovascularization
- •Ongoing treatment with intraocular anti-VEGF or steroids (and no injection within 4 weeks) in the study eye and no anticipated need for therapy during study period.
- •Ongoing retinal laser photocoagulation
- •Signs of current infection or inflammation
- •Intraocular surgery within 3 months
- •Previous or planned anterior segment surgery for glaucoma
- •Poor visualization of the anterior chamber
Arms & Interventions
Islet implantation
Intervention: Islet implantation (Procedure)
Outcomes
Primary Outcomes
Safety of the procedure with regards to opthalmic complications
Time Frame: 365 days
Absence of ophthalmic complications (increased IOP, infection, severe inflammation in the treated or fellow eye, evidence of progression of diabetic retinopathy or anterior segment neovascularization) in the transplanted eye.
Secondary Outcomes
No secondary outcomes reported
