持续监测
再生(生物学)
期限(时间)
寡核苷酸
生物传感器
重置(财务)
检出限
计算机科学
纳米技术
生物
材料科学
化学
物理
细胞生物学
色谱法
工程类
DNA
量子力学
生物化学
运营管理
金融经济学
经济
作者
Abtin Saateh,Saeid Ansaryan,Jiarui Gao,Livio Oliveira de Miranda,Peter Zijlstra,Hatice Altug
标识
DOI:10.1002/anie.202410076
摘要
The demand for continuous monitoring of biochemical markers for diagnostic purposes is increasing as it overcomes the limitations of traditional intermittent measurements. This study introduces a method for long‐term, continuous plasmonic biosensing of oligonucleotides with high temporal resolution. Our method is based on a regeneration‐based reversibility approach that ensures rapid reversibility in less than 1 minute, allowing the sensor to fully reset after each measurement. We investigated label‐free and AuNP enhancements for different dynamic ranges and sensitivities, achieving a limit of detection down to pM levels. We developed a regeneration‐based reversibility approach for continuous biosensing, optimizing buffer conditions using the Taguchi method to achieve rapid, consistent reversibility, ensuring reliable performance for long‐term monitoring. We detected oligonucleotides in buffered and complex solutions, including undiluted and unfiltered human serum, for up to 100 sampling cycles in a day. Moreover, we showed the long‐term stability of the sensor for monitoring capabilities in buffered solutions and human serum, with minimal signal value drift and excellent sensor reversibility for up to 9 days. Our method opens the door to new prospects in continuous biosensing by providing insights beyond intermittent measurements for numerous analytical and diagnostic applications.
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