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Towards a Smart Encapsulation System for Small-Sized Electronic Devices: A New Approach

机译:迈向小型电子设备的智能封装系统:一种新方法

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摘要

Miniaturized analytical chip devices like biosensors nowadays provide assistance in highly diverse fields of application such as point-of-care diagnostics and industrial bioprocess engineering. However, upon contact with fluids, the sensor requires a protective shell for its electrical components that simultaneously offers controlled access for the target analytes to the measuring units. We therefore developed a capsule that comprises a permeable and a sealed compartment consisting of variable polymers such as biocompatible and biodegradable polylactic acid (PLA) for medical applications or more economical polyvinyl chloride (PVC) and polystyrene (PS) polymers for bioengineering applications. Production of the sealed capsule compartments was performed by heat pressing of polymer pellets placed in individually designable molds. Controlled permeability of the opposite compartments was achieved by inclusion of NaCl inside the polymer matrix during heat pressing, followed by its subsequent release in aqueous solution. Correlating diffusion rates through the so made permeable capsule compartments were quantified for preselected model analytes: glucose, peroxidase, and polystyrene beads of three different diameters (1.4 μm, 4.2 μm, and 20.0 μm). In summary, the presented capsule system turned out to provide sufficient shelter for small-sized electronic devices and gives insight into its potential permeability for defined substances of analytical interest.
机译:如今,生物传感器等小型化分析芯片装置在高度多样化的应用领域提供了援助,例如护理点诊断和工业生物过程工程。然而,在接触流体后,传感器需要一种用于其电气部件的保护壳,其同时向测量单元提供对目标分析物的受控访问。因此,我们开发了一种胶囊,其包括具有可变聚合物的可渗透和密封室,例如用于生物化应用的医疗应用或更经济的聚氯乙烯(PVC)和聚苯乙烯(PS)聚合物的可变聚合物,用于生物工程应用。通过在可单独的可设计模具中加热聚合物颗粒进行密封胶囊隔室的生产。通过在热压期间包含聚合物基质内的NaCl来实现相对隔室的受控渗透率,然后在水溶液中释放其后续释放。通过如此制造的透水胶囊隔室与预选的模型分析物定量相关的扩散速率:葡萄糖,过氧化物酶和三种不同直径(1.4μm,4.2μm和20.0μm)的聚苯乙烯珠粒。总之,所提出的胶囊系统原始为小型电子设备提供足够的住所,并介绍其对分析兴趣的定义物质的潜在渗透性。

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