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首页> 外文期刊>Biomaterials Science >Enzymatic filter for improved separation of output signals in enzyme logic systems towards 'sense and treat' medicine
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Enzymatic filter for improved separation of output signals in enzyme logic systems towards 'sense and treat' medicine

机译:酶滤器可改善酶逻辑系统中输出信号的分离,以实现“感知和治疗”医学

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The major challenge for the application of autonomous medical sensing systems is the noise produced by non-zero physiological concentrations of the sensed target. If the level of noise is high, then a real signal indicating abnormal changes in the physiological levels of the analytes might be hindered. Inevitably, this could lead to wrong diagnostics and treatment, and would have a negative impact on human health. Here, we report the realization of a filter system implemented to improve both the fidelity of sensing and the accuracy of consequent drug release. A new filtering method was tested in the sensing system for the diagnosis of liver injury. This sensing system used the enzymes alanine transaminase (ALT) and aspartate transaminase (AST) as the inputs. Furthermore, the output of the sensing system was designed to trigger drug release, and therefore, the role of the filter in drug release was also investigated. The drug release system consists of beads with an iron-cross-linked alginate core coated with different numbers of layers of poly-L-lysine. Dissolution of the beads by the output signals of the sensing system in the presence and absence of the filter was monitored by the release of rhodamine-6G dye encapsulated in the beads, mimicking the release of a real drug. The obtained results offer a new view of the problem of noise reduction for systems intended to be part of sense and treat medical devices.
机译:自主医疗传感系统的应用面临的主要挑战是被传感目标的非零生理浓度所产生的噪声。如果噪声水平很高,则可能会阻止指示分析物生理水平异常变化的真实信号。不可避免地,这可能导致错误的诊断和治疗,并对人类健康产生负面影响。在这里,我们报告了为改善感测保真度和后续药物释放的准确性而实施的过滤器系统的实现。在传感系统中测试了一种新的过滤方法,用于诊断肝损伤。该传感系统使用了丙氨酸转氨酶(ALT)和天冬氨酸转氨酶(AST)作为输入。此外,传感系统的输出被设计为触发药物释放,因此,还研究了过滤器在药物释放中的作用。药物释放系统由具有铁交联藻酸盐核心的小珠组成,该核心涂有不同数量的聚L-赖氨酸层。在存在和不存在过滤器的情况下,通过传感系统的输出信号对小珠的溶解通过包裹在小珠中的罗丹明-6G染料的释放进行监测,从而模拟真实药物的释放。所获得的结果为旨在成为感知和治疗医疗设备一部分的系统的降噪问题提供了新的视角。

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