近红外荧光aptananosensor可选择性检测人工脑脊液中的应激激素皮质醇。

IF 4.1 Q2 CHEMISTRY, ANALYTICAL
Jessica Kretli Zanetti, Maria Celina Stefoni, Catarina Ferraz, Amelia Ryan, Atara Israel, Ryan M Williams
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引用次数: 0

摘要

皮质醇是一种调节身体对压力源反应的激素。检测和监测皮质醇水平可以提供有关身体和心理健康的信息,因此开发一种能够以敏感的方式检测它的传感器至关重要。本研究提出了一种生物相容性近红外荧光传感器,其中单壁碳纳米管(SWCNT)被皮质特异性适配体功能化。我们发现该传感器能够检测37.5 μg mL-1到300 μg mL-1的皮质醇,并且与类似的分子雌激素相比,它对皮质醇具有选择性。此外,用非特异性寡核苷酸功能化的swcnts对皮质醇没有表现出浓度依赖性的反应,证明了适体序列提供的特异性。该传感器还显示了检测人工脑脊液中皮质醇的能力。我们预计,该传感器的未来优化将使潜在的即时护理或基于植入式设备的皮质醇快速检测成为可能,并有可能改善患者的整体健康和压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A near-infrared fluorescent aptananosensor enables selective detection of the stress hormone cortisol in artificial cerebrospinal fluid.

Cortisol is a hormone which regulates the body's response to stressors. Detection and monitoring of cortisol levels can provide information about physical and psychological health, thus it is essential to develop a sensor that can detect it in a sensitive manner. This study presents a biocompatible near-infrared fluorescent sensor, wherein single-walled carbon nanotubes (SWCNT) are functionalized with a cortisol-specific aptamer. We found this sensor was capable of detecting cortisol from 37.5 μg mL-1 to 300 μg mL-1 and that it was selective for cortisol compared to the similar molecule estrogen. Moreover, SWCNT functionalized with non-specific oligonucleotides did not exhibit a concentration-dependent response to cortisol, demonstrating the specificity provided by the aptamer sequence. The sensor also demonstrated the ability to detect cortisol in artificial cerebrospinal fluid. We anticipate that future optimization of this sensor will enable potential point-of-care or implantable device-based rapid detection of cortisol, with the potential for improving overall patient health and stress.

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CiteScore
2.30
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