用于健康监测的薄膜和功能化微结构

S. Coppola, C. Di Natale, Fabiana Graziano, V. Vespini, Zhe Wang, V. Ferraro, Ciro Tortora, S. Grilli, Francesca Ferranti, Silvia Mari, P. Maffettone
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引用次数: 0

摘要

用于连续健康监测和生物医学诊断的可穿戴电子传感器和芯片实验室技术的制造仍然需要创新、简单和低成本的制造技术。人们对检测体液中生物标志物的创新系统的兴趣正在增长,这既可以用于地球上的个性化医疗行业,也可以作为太空探索期间宇航员自我治疗的设备。事实上,参与低地球轨道任务(国际空间站-商业空间站)、月球探测以及未来的火星任务的宇航员可以发现,使用点护理测试设备具有很大的优势,无创且易于使用。在这项工作中,我们讨论了制造薄膜和微结构的创新技术,如微针,可用于从间质体液中取样感兴趣的生物标志物。提出的技术允许闭环过程的制造和表征的实时感兴趣的结构。我们描述了用于生物医学诊断的微结构的功能化及其在药物输送系统方面可能的功能化。提出的结果可用于研究太空对衰老过程的影响(代谢改变,促炎状态),测试控制应激状态的替代解决方案,更广泛地深入了解太空飞行对蛋白质表达的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thin Film and Functionalized Micro-Structures for Health Monitoring
The fabrication of wearable electronic sensors and Lab on Chip technology for continuous health monitoring and biomedical diagnosis is still demanding for innovative, easy and low-cost fabrication technology. The interest in testing innovative system for the early detection of biomarkers in body fluids is growing both for the industry of personalized medicine on earth both for the employment as device of self-therapy for astronauts during space exploration. In fact, astronauts involved in low earth orbit missions (international space station- commercial stations), moon exploration and, in future, Mars missions could find great advantages in the use of point of care testing devices, noninvasive and easy to use. In this work we discuss about innovative technologies for the fabrication of thin-film and microstructures, such as micro-needles, that could be used for sampling the biomarker of interest from the interstitial body fluid. The technology proposed allows a closed loop process for the fabrication and characterization in real time of the structures of interest. We describe the functionalization of the microstructures for the biomedical diagnosis and their possible functionalization in terms of drug-delivery systems. The results proposed could be used to study the effects of space on the aging process (metabolic alterations, proinflammatory state), to test alternative solutions in controlling stress state and more in general to go into details of the effect of spaceflights on protein expression.
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