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Responsive Interface Switchable by Logically Processed Physiological Signals: Toward 'Smart' Actuators for Signal Amplification and Drug Delivery

机译:可通过逻辑处理的生理信号切换的响应式接口:面向“智能”执行器,用于信号放大和药物输送

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摘要

Biomarkers characteristic of liver injury, alanine transaminase and lactate dehydrogenase, were processed by an enzyme-based system functioning as a logic AND gate. The NAD~+ output signal produced by the system upon its activation in the presence of both biomarkers was then biocatalytically converted to a decrease in pH, The acidic pH value biocatalytically produced by the system as a response to the biomarkers triggered the restructuring of a polymer-modified electrode interface. This allowed a soluble redox species to approach the electrode surface, thus switching the electrochemical reaction ON, The redox transformations activated by the biochemical signals resulted in an amplification of signals. This system represents the first example of an integrated sensing-actuating chemical device with the implemented AND Boolean logic for processing natural biomarkers at their physiologically relevant concentrations.
机译:肝损伤的特征性生物标志物,丙氨酸转氨酶和乳酸脱氢酶由基于酶的系统处理,该系统起着逻辑与门的作用。系统在两种生物标记物存在下激活后产生的NAD〜+输出信号随后被生物催化转化为pH值的降低。系统对生物标记物做出的生物催化产生的酸性pH值触发了聚合物的重组修饰的电极界面。这使可溶性氧化还原物质接近电极表面,从而开启了电化学反应。由生化信号激活的氧化还原转化导致信号放大。该系统代表了集成感应传感化学设备的第一个示例,该设备具有已实现的AND布尔逻辑,用于处理处于生理相关浓度的天然生物标记。

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