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Biodegradable Piezoelectric Force Sensor

机译:可生物降解的压电力传感器

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摘要

Measuring vital physiological pressures is important for monitoring health status, preventing the buildup of dangerous internal forces in impaired organs, and enabling novel approaches of using mechanical stimulation for tissue regeneration. Pressure sensors are often required to be implanted and directly integrated with native soft biological systems. Therefore, the devices should be flexible and at the same time biodegradable to avoid invasive removal surgery that can damage directly interfaced tissues. Despite recent achievements in degradable electronic devices, there is still a tremendous need to develop a force sensor which only relies on safe medical materials and requires no complex fabrication process to provide accurate information on important biophysiological forces. Here, we present a strategy for material processing, electromechanical analysis, device fabrication, and assessment of a piezoelectric Poly-l-lactide (PLLA) polymer to create a biodegradable, biocompatible piezoelectric force sensor, which only employs medical materials used commonly in Food and Drug Administration-approved implants, for the monitoring of biological forces. We show the sensor can precisely measure pressures in a wide range of 0–18 kPa and sustain a reliable performance for a period of 4 d in an aqueous environment. We also demonstrate this PLLA piezoelectric sensor can be implanted inside the abdominal cavity of a mouse to monitor the pressure of diaphragmatic contraction. This piezoelectric sensor offers an appealing alternative to present biodegradable electronic devices for the monitoring of intraorgan pressures. The sensor can be integrated with tissues and organs, forming self-sensing bionic systems to enable many exciting applications in regenerative medicine, drug delivery, and medical devices.
机译:测量重要的生理压力对于监测健康状况,防止受损器官内危险内力的积累以及实现使用机械刺激进行组织再生的新方法非常重要。通常需要将压力传感器植入并直接与天然软生物系统集成。因此,该设备应该是柔性的,并且在同一时间可生物降解,以避免可能破坏直接接触的组织的有创去除手术。尽管最近在可降解电子设备方面取得了成就,但是仍然迫切需要开发一种力传感器,该力传感器仅依靠安全的医疗材料并且不需要复杂的制造过程即可提供有关重要生物生理力的准确信息。在这里,我们提出一种材料加工,机电分析,器件制造以及压电聚乳酸(PLLA)聚合物评估的策略,以创建可生物降解的,生物相容性的压电力传感器,该传感器仅采用食品和食品中常用的医疗材料。经药物管理局批准的植入物,用于监测生物力。我们展示了该传感器可以在0-18 kPa的宽范围内精确测量压力,并且在水性环境中可持续可靠的性能4 d。我们还演示了可以将PLLA压电传感器植入鼠标的腹腔内以监测diaphragm肌收缩的压力。该压电传感器提供了一种有吸引力的替代方案,可以代替目前的可生物降解电子设备来监测器官内压力。该传感器可以与组织和器官整合在一起,形成自感应仿生系统,从而在再生医学,药物输送和医疗设备中实现许多激动人心的应用。

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