Diabetes Mellitus, Type 1 Clinical Trial
— BiAP@homeOfficial title:
The Bio-Inspired Artificial Pancreas for the Home
| Verified date | May 2023 |
| Source | Imperial College London |
| Contact | n/a |
| Is FDA regulated | No |
| Health authority | |
| Study type | Interventional |
The purpose of the study is to evaluate the safety and effectiveness of a closed-loop insulin delivery system (also known as an artificial pancreas) which is made up of three components that communicate with each other: 1. A glucose sensor that measures glucose every 5 minutes 2. A control algorithm that calculates the required insulin dose 3. An insulin pump that delivers the insulin calculated
| Status | Terminated |
| Enrollment | 8 |
| Est. completion date | January 31, 2022 |
| Est. primary completion date | January 31, 2022 |
| Accepts healthy volunteers | No |
| Gender | All |
| Age group | 18 Years and older |
| Eligibility | Inclusion Criteria: - Adults over 18 years of age - Type 1 diabetes confirmed on the basis of clinical features and a random c-peptide <200 pmol/L - Type 1 diabetes for greater than 1 year - Continuous subcutaneous insulin infusion for greater than 6 months - Structured education done (either 1:1 or group education) - HbA1c <10% (86mmol/mol) - A negative pregnancy test in female participants of childbearing age Exclusion Criteria: - More than one episode of severe hypoglycaemia (defined as hypoglycaemia requiring 3rd party assistance) in the preceding year - Impaired awareness of hypoglycaemia (Gold score >4) - Pregnant or planning pregnancy - Breastfeeding - Enrolled in other clinical trials - Have active malignancy or under investigation for malignancy - Severe visual impairment - Reduced manual dexterity - Ischaemic heart disease - Anti-anginal medications - Regular use of paracetamol - Unable to participate due to other factors, as assessed by the Chief Investigator |
| Country | Name | City | State |
|---|---|---|---|
| United Kingdom | Imperial College Clinical Research Facility | London |
| Lead Sponsor | Collaborator |
|---|---|
| Imperial College London |
United Kingdom,
Georgiou P, Toumazou C. A silicon pancreatic Beta cell for diabetes. IEEE Trans Biomed Circuits Syst. 2007 Mar;1(1):39-49. doi: 10.1109/TBCAS.2007.893178. — View Citation
Herrero P, Georgiou P, Oliver N, Johnston DG, Toumazou C. A bio-inspired glucose controller based on pancreatic beta-cell physiology. J Diabetes Sci Technol. 2012 May 1;6(3):606-16. doi: 10.1177/193229681200600316. — View Citation
Herrero P, Pesl P, Reddy M, Oliver N, Georgiou P, Toumazou C. Advanced Insulin Bolus Advisor Based on Run-To-Run Control and Case-Based Reasoning. IEEE J Biomed Health Inform. 2015 May;19(3):1087-96. doi: 10.1109/JBHI.2014.2331896. — View Citation
Kovatchev BP, Breton M, Man CD, Cobelli C. In silico preclinical trials: a proof of concept in closed-loop control of type 1 diabetes. J Diabetes Sci Technol. 2009 Jan;3(1):44-55. doi: 10.1177/193229680900300106. — View Citation
Oliver N, Georgiou P, Johnston D, Toumazou C. A benchtop closed-loop system controlled by a bio-inspired silicon implementation of the pancreatic beta cell. J Diabetes Sci Technol. 2009 Nov 1;3(6):1419-24. doi: 10.1177/193229680900300623. — View Citation
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | % Time in Target Range Defined as 3.9-10mmol/l | Interstitial blood glucose will be measured every 5 minutes via CGM for a period of six months (original plan)
The study was terminated early. Only two participants entered the allocated study arm and remained in the study for two weeks. |
6 months |
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