Moving Toward a Unified Platform for Insulin Delivery and Sensing of Inputs Relevant to an Artificial Pancreas

Author:

Graf Anneke12,McAuley Sybil A.12,Sims Catriona2,Ulloa Johanna3,Jenkins Alicia J.124,Voskanyan Gayane3,O’Neal David N.12

Affiliation:

1. Department of Endocrinology & Diabetes, St Vincent’s Hospital Melbourne, Melbourne, Australia

2. Department of Medicine, University of Melbourne, Melbourne, Australia

3. Medtronic Inc, Northridge, CA, USA

4. NHMRC Clinical Trials Centre, Sydney, Australia

Abstract

Advances in insulin pump and continuous glucose monitoring technology have primarily focused on optimizing glycemic control for people with type 1 diabetes. There remains a need to identify ways to minimize the physical burden of this technology. A unified platform with closely positioned or colocalized interstitial fluid glucose sensing and hormone delivery components is a potential solution. Present challenges to combining these components are interference of glucose sensing from proximate insulin delivery and the large discrepancy between the life span of current insulin infusion sets and glucose sensors. Addressing these concerns is of importance given that the future physical burden of this technology is likely to be even greater with the ongoing development of the artificial pancreas, potentially incorporating multiple hormone delivery, glucose sensing redundancy, and sensing of other clinically relevant nonglucose biochemical inputs.

Publisher

SAGE Publications

Subject

Biomedical Engineering,Bioengineering,Endocrinology, Diabetes and Metabolism,Internal Medicine

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