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用于原位检测易变炎症生物标志物的亚 1.4 厘米胶囊。

Sub-1.4 cm capsule for detecting labile inflammatory biomarkers in situ.

机构信息

Synthetic Biology Group, MIT Synthetic Biology Center, Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.

Research Laboratory of Electronics, Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Nature. 2023 Aug;620(7973):386-392. doi: 10.1038/s41586-023-06369-x. Epub 2023 Jul 26.

DOI:10.1038/s41586-023-06369-x
PMID:37495692
Abstract

Transient molecules in the gastrointestinal tract such as nitric oxide and hydrogen sulfide are key signals and mediators of inflammation. Owing to their highly reactive nature and extremely short lifetime in the body, these molecules are difficult to detect. Here we develop a miniaturized device that integrates genetically engineered probiotic biosensors with a custom-designed photodetector and readout chip to track these molecules in the gastrointestinal tract. Leveraging the molecular specificity of living sensors, we genetically encoded bacteria to respond to inflammation-associated molecules by producing luminescence. Low-power electronic readout circuits integrated into the device convert the light emitted by the encapsulated bacteria to a wireless signal. We demonstrate in vivo biosensor monitoring in the gastrointestinal tract of small and large animal models and the integration of all components into a sub-1.4 cm form factor that is compatible with ingestion and capable of supporting wireless communication. With this device, diseases such as inflammatory bowel disease could be diagnosed earlier than is currently possible, and disease progression could be more accurately tracked. The wireless detection of short-lived, disease-associated molecules with our device could also support timely communication between patients and caregivers, as well as remote personalized care.

摘要

胃肠道中的瞬态分子(如一氧化氮和硫化氢)是炎症的关键信号和介质。由于它们在体内具有高度反应性和极短的寿命,这些分子很难被检测到。在这里,我们开发了一种小型化设备,该设备将基因工程益生菌生物传感器与定制设计的光电探测器和读出芯片集成在一起,以跟踪胃肠道中的这些分子。利用活传感器的分子特异性,我们通过产生发光来基因编码细菌以响应与炎症相关的分子。集成到设备中的低功耗电子读出电路将封装细菌发出的光转换为无线信号。我们在小动物和大动物模型的胃肠道中展示了体内生物传感器监测,并将所有组件集成到一个 1.4 厘米以下的外形尺寸中,该尺寸与摄入兼容,并且能够支持无线通信。有了这个设备,像炎症性肠病这样的疾病可以比目前更早地被诊断出来,并且可以更准确地跟踪疾病的进展。我们的设备可以无线检测寿命短的、与疾病相关的分子,这也可以支持患者和护理人员之间的及时沟通以及远程个性化护理。

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