The primary objective of this clinical investigation is to investigate the safety of implantation of the human islet containing device Beta-Air in type 1 diabetic subjects. The secondary objective of this clinical investigation is to investigate if the transplantation of macro-encapsulated human islets within the Beta-Air device can provide improved glycaemic control in type 1 diabetes patients with reduced incidences of hypoglycaemic episodes.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
4
Uppsala University Hospital
Uppsala, Sweden
Safety of device, as evaluated by incidence of adverse events or serious adverse events judged probable or highly probable related to the device
Time frame: 0-365 days
1. Incidence of local or systemic inflammation or infection, incl. C-reactive protein rise, judged related to the device during course of study.
Time frame: 0-365 days
2. Incidence and severity of fibrosis surrounding the device during course of study.
Time frame: 0-365 days
3. Signs of immunization in transplanted patients.
Time frame: 0-365 days
4. Oxygenation of tissue in the device, as evaluated at 4, 12 and 26 weeks post-transplantation
Time frame: 0-180 days
5. Survival of endocrine tissue in the device, as evaluated by [11C]-5-hydroxytryptophane positron emission tomography and histological analysis at 26 weeks post-transplantation.
Time frame: 0-180 days
6. Numbers of patients with peak c-peptide >0.20 nmol/l, in response to the mixed meal tolerance test at 12 and 26 weeks post-transplantation
Time frame: 12 and 26 weeks post-transplantation
7. C-peptide area under the curve in response to the mixed meal tolerance test at 12 and 26 weeks post-transplantation.
Time frame: 12 and 26 weeks post-transplantation
8. Number of patients with non-fasting c-peptide concentrations >0.003 nmol/l at 1, 2, 3, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24 and 26 weeks post-transplantation; i.e. Kaplan-Meier analysis of survival time for islet grafts.
Time frame: 0-26 weeks
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