Bioresorbable pressure sensors protected with thermally grown silicon dioxide for the monitoring of chronic diseases and healing processes.
Jiho ShinYing YanWubin BaiYeguang XuePaul GambleLimei TianIrawati KandelaChad R HaneyWilliam SpeesYechan LeeMinseok ChoiJonathan KoHangyu RyuJan-Kai ChangMaryam PezhouhSeung-Kyun KangSang Min WonKi Jun YuJianing ZhaoYoon Kyeung LeeMatthew R MacEwanSheng-Kwei SongYonggang HuangWilson Z RayJohn A RogersPublished in: Nature biomedical engineering (2018)
Pressures in the intracranial, intraocular and intravascular spaces are clinically useful for the diagnosis and management of traumatic brain injury, glaucoma and hypertension, respectively. Conventional devices for measuring these pressures require surgical extraction after a relevant operational time frame. Bioresorbable sensors, by contrast, eliminate this requirement, thereby minimizing the risk of infection, decreasing the costs of care and reducing distress and pain for the patient. However, the operational lifetimes of bioresorbable pressure sensors available at present fall short of many clinical needs. Here, we present materials, device structures and fabrication procedures for bioresorbable pressure sensors with lifetimes exceeding those of previous reports by at least tenfold. We demonstrate measurement accuracies that compare favourably to those of the most sophisticated clinical standards for non-resorbable devices by monitoring intracranial pressures in rats for 25 days. Assessments of the biodistribution of the constituent materials, complete blood counts, blood chemistry and magnetic resonance imaging compatibility confirm the biodegradability and clinical utility of the device. Our findings establish routes for the design and fabrication of bioresorbable pressure monitors that meet requirements for clinical use.
Keyphrases
- low cost
- traumatic brain injury
- magnetic resonance imaging
- healthcare
- blood pressure
- computed tomography
- pain management
- magnetic resonance
- palliative care
- chronic pain
- coronary artery
- quality improvement
- spinal cord
- neuropathic pain
- drug discovery
- pet imaging
- peripheral blood
- positron emission tomography
- electronic health record