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Towards Maintenance-Free Biosensors for Hundreds of Bind/Release Cycles

机译:迈向免维护生物传感器的绑定/释放周期数以百计

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A single aptamer bioreceptor layer was formed using a common streptavidin-biotin immobilization strategy and employed for 100-365 bind/release cycles. Chemically induced aptamer unfolding and release of its bound target was accomplished using alkaline solutions with high salt concentrations or deionized (DI) water. The use of DI water scavenged from the ambient atmosphere represents a first step towards maintenance-free biosensors that do not require the storage of liquid reagents. The aptamer binding affinity was determined by surface plasmon resonance and found to be almost constant over 100-365 bind/release cycles with a variation of less than 5% relative standard deviation. This reversible operation of biosensors based on immobilized aptamers without storage of liquid reagents introduces a conceptually new perspective in biosensing. Such new biosensing capability will be important for distributed sensor networks, sensors in resource-limited settings, and wearable sensor applications.
机译:使用常见的链霉亲和素-生物素固定策略形成单个适体生物受体层,并用于100-365个结合/释放循环。使用高盐浓度的碱性溶液或去离子(DI)水,可实现化学诱导的适体的解折叠和结合靶标的释放。使用从周围环境中清除的去离子水代表了无需维护液体试剂的免维护生物传感器的第一步。适体结合亲和力是通过表面等离子体共振确定的,发现在100-365个结合/释放循环中几乎恒定,相对标准偏差小于5%。基于固定化适体的生物传感器的这种可逆操作,无需存储液体试剂,为生物传感带来了概念上的新观点。这种新的生物传感功能对于分布式传感器网络,资源有限的环境中的传感器以及可穿戴传感器应用而言至关重要。

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