Institute of Radiopharmaceutical Cancer Research, Helmholtz-Zentrum Dresden-Rossendorf e. V., 01328, Dresden, Germany.
Multi-Scale Robotics Lab (MSRL), Institute of Robotics & Intelligent Systems (IRIS), ETH Zürich, Zürich, 8092, Switzerland.
Adv Sci (Weinh). 2024 May;11(20):e2307232. doi: 10.1002/advs.202307232. Epub 2024 Mar 14.
With the ever-growing requirements in the healthcare sector aimed at personalized diagnostics and treatment, continuous and real-time monitoring of relevant parameters is gaining significant traction. In many applications, health status monitoring may be carried out by dedicated wearable or implantable sensing devices only within a defined period and followed by sensor removal without additional risks for the patient. At the same time, disposal of the increasing number of conventional portable electronic devices with short life cycles raises serious environmental concerns due to the dangerous accumulation of electronic and chemical waste. An attractive solution to address these complex and contradictory demands is offered by biodegradable sensing devices. Such devices may be able to perform required tests within a programmed period and then disappear by safe resorption in the body or harmless degradation in the environment. This work critically assesses the design and development concepts related to biodegradable and bioresorbable sensors for healthcare applications. Different aspects are comprehensively addressed, from fundamental material properties and sensing principles to application-tailored designs, fabrication techniques, and device implementations. The emerging approaches spanning the last 5 years are emphasized and a broad insight into the most important challenges and future perspectives of biodegradable sensors in healthcare are provided.
随着医疗保健领域对个性化诊断和治疗的要求不断增长,对相关参数的连续实时监测越来越受到关注。在许多应用中,健康状况监测可以通过专用的可穿戴或可植入式感测设备在规定的时间内进行,并且在不增加患者风险的情况下移除传感器。同时,由于电子和化学废物的危险积累,大量传统便携式电子设备的使用寿命短,其处置也引起了严重的环境问题。可生物降解的感测设备为解决这些复杂而矛盾的需求提供了一个有吸引力的解决方案。这些设备可以在预定的时间内进行所需的测试,然后通过在体内安全吸收或在环境中无害降解而消失。这项工作对医疗保健应用中可生物降解和可生物吸收传感器的设计和开发概念进行了批判性评估。从基本材料特性和传感原理到针对应用的设计、制造技术和器件实现,全面涵盖了不同方面。强调了跨越过去 5 年的新兴方法,并对医疗保健中可生物降解传感器的最重要挑战和未来前景提供了广泛的见解。