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A Wearable Optical Microfibrous Biomaterial with Encapsulated Nanosensors Enables Wireless Monitoring of Oxidative Stress

机译:具有封装纳米调传料的可穿戴光学微纤维生物材料可实现无线监测氧化应激

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摘要

In an effort to facilitate personalized medical approaches, the continuous and noninvasive monitoring of biochemical information using wearable technologies can enable a detailed understanding of an individual's physiology. Reactive oxygen species (ROS) are a class of oxygen-containing free radicals that function in a wide range of biological processes. In wound healing applications, the continuous monitoring of ROS through a wearable diagnostics platform is essential for the prevention of chronicity and pathogenic infection. Here, a versatile one-step procedure is utilized to fabricate optical core-shell microfibrous textiles incorporating single-walled carbon nanotubes (SWCNTs) for the real-time optical monitoring of hydrogen peroxide concentrations in in vitro wounds. The environmentally sensitive and non-photobleachable fluorescence of SWCNTs enables continuous analyte monitoring without decay in signal over time. The existence of multiple chiralities of SWCNTs emitting near-infrared fluorescence with narrow bandwidths allows a ratiometric signal readout invariant to the excitation source distance and exposure time. The individual fibers encapsulate the SWCNT nanosensors for at least 21 days without apparent loss in structural integrity. Moreover, the microfibrous textiles are utilized to spatially resolve peroxide concentrations using a camera and further integrated into commercial wound bandages without significant degradation in their optical properties.
机译:为了促进个性化的医学方法,使用可穿戴技术的生化信息的连续和非侵入性监测可以详细了解个体的生理学。反应性氧物质(ROS)是一类含氧的自由基,可在广泛的生物过程中起作用。在伤口愈合应用中,通过可穿戴诊断平台的ROS的连续监测对于预防慢性和致病感染是必不可少的。这里,使用通用的一步法用于制造包含单壁碳纳米管(SWCNTs)的光学核 - 壳微纤维织物,用于在体外伤口中的过氧化氢浓度的实时光学监测。 SWCNT的环境敏感和非光脱色荧光使得连续分析物监测能够随时间衰减而不会衰减。具有窄带宽发射近红外荧光的SWCNT的多个手套的存在允许大量信号读出不变于激发源距离和曝光时间。单个纤维将SWCNT纳米传感器包封至少21天,而无明显损失结构完整性。此外,微纤维纺织品用于使用相机在空间上解析过氧化物浓度,并进一步集成到商业伤口绷带中而不会在其光学性质中显着降解。

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