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A new microelectromechanical systems (MEMS) oxygen transporter device to improve the efficacy of islet transplantation to treat type 1 diabetes is described here. The device is fabricated for biocompatibility and designed to maintain islet oxygenation levels throughout the normally hypoxic subcutaneous transplant site. Transplantation of the islets and the device to the subcutaneous location is minimally...
This paper presents a new MEMS approach of maintaining islet oxygenation for subcutaneous islet transplantation therapy of type 1 diabetes by engineering a MEMS oxygen transport device. A device is designed and fabricated. Bench-top testing and computational modeling of the device have demonstrated that it would provide sufficient oxygen to prevent hypoxia-induced islet death and maintain the functional...
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