Banis George E, Beardslee Luke A, Stine Justin M, Sathyam Rajendra Mayavan, Ghodssi Reza
Institute for Systems Research, University of Maryland, USA.
Lab Chip. 2020 Jun 2;20(11):2020-2032. doi: 10.1039/d0lc00133c.
Ingestible capsule systems continue to evolve to overcome drawbacks associated with traditional gastrointestinal (GI) diagnostic and therapeutic processes, such as limitations on which sections of the GI tract can be accessed or the inability to measure local biomarker concentrations. We report an integrated capsule sensing system, utilizing a hybrid packaging scheme coupled with triglyceride film-coated capacitive sensors, for measuring biochemical species present in the duodenum, such as pancreatic lipase and bile acids. The system uses microfabricated capacitive sensors interfaced with a Bluetooth low-energy (BLE)-microcontroller, allowing wireless connectivity to a mobile app. The triglyceride films insulate the sensor surface and react either with 0.01-1 mM lipase via hydrolysis or 0.07-7% w/v bile acids via emulsification in simulated fluids, leading to measurable changes in capacitance. Cross reactivity of the triglyceride films is evaluated in both phosphate buffered saline (PBS) as well as pancreatic trypsin solutions. The film morphology is observed after exposure to each stimulus to better understand how these changes alter the sensor capacitance. The capsule utilizes a 3D-printed package coated with polymers that remain intact in acid solution (mimicking gastric conditions), then dissolve at a duodenum-mimicking neutral pH for triggered opening of the sensing chamber from which we can subsequently detect the presence of pancreatic lipase. This device strategy represents a significant step towards using embedded packaging and triglyceride-based materials to target specific regions of the GI tract and sensing biochemical contents for evaluating gastrointestinal health.
可摄入胶囊系统不断发展,以克服与传统胃肠道(GI)诊断和治疗过程相关的缺点,例如胃肠道哪些部位可被触及存在限制,或者无法测量局部生物标志物浓度。我们报告了一种集成胶囊传感系统,该系统采用混合封装方案并结合甘油三酯薄膜涂层电容式传感器,用于测量十二指肠中存在的生化物质,如胰脂肪酶和胆汁酸。该系统使用与蓝牙低功耗(BLE)微控制器接口的微加工电容式传感器,实现与移动应用程序的无线连接。甘油三酯薄膜使传感器表面绝缘,并在模拟流体中通过水解与0.01 - 1 mM脂肪酶反应,或通过乳化与0.07 - 7% w/v胆汁酸反应,导致电容发生可测量的变化。在磷酸盐缓冲盐水(PBS)以及胰蛋白酶溶液中评估甘油三酯薄膜的交叉反应性。在暴露于每种刺激后观察薄膜形态,以更好地理解这些变化如何改变传感器电容。该胶囊采用涂有聚合物的3D打印封装,该聚合物在酸性溶液(模拟胃部环境)中保持完整,然后在模拟十二指肠的中性pH值下溶解,以触发传感腔室打开,随后我们可以检测胰脂肪酶的存在。这种设备策略代表了朝着使用嵌入式封装和基于甘油三酯的材料靶向胃肠道特定区域并传感生化成分以评估胃肠道健康迈出的重要一步。