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Two-Input Enzymatic Logic Gates Made Sigmoid by Modifications of the Biocatalytic Reaction Cascades

机译:通过改变生物催化反应叶栅制成乙状结肠的两输入酶逻辑门

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摘要

Computing based on biochemical processes is a newest rapidly developing field of unconventional information and signal processing. In this paper we present results of our research in the field of biochemical computing and summarize the obtained numerical and experimental data for implementations of the standard two-input OR and AND gates with dou-ble-sigmoid shape of the output signal. This form of response was obtained as a function of the two inputs in each of the realized biochemical systems. The enzymatic gate processes in the first system were activated with two chemical inputs and resulted in optically detected chromogen oxidation, which happens when either one or both of the inputs arc present. In this case, the biochemical system is functioning as the OR gate. We demonstrate that the addition of a "filtering" biocatalytic process leads to a considerable reduction of the noise transmission factor and the resulting gate response has sigmoid shape in both inputs. The second system was developed for functioning as an AND gate, where the output signal was activated only by a simultaneous action of two enzymatic biomarkers. This response can be used as an indicator of liver damage, but only if both of these of the inputs are present at their elevated, pathophysiological values of concentrations. A kinetic numerical model was developed and used to estimate the range of parameters for which the experimentally realized logic gate is close to optimal. We also analyzed the system to evaluate its noise-handling properties.
机译:基于生化过程的计算是非常规信息和信号处理的最新快速发展领域。在本文中,我们介绍了在生化计算领域的研究成果,并总结了获得的数值和实验数据,用于实现标准双输入或门的输出信号为双-S形。这种响应形式是每个已实现生化系统中两个输入的函数。第一个系统中的酶门过程由两个化学输入激活,并导致光学检测的色原氧化,这在输入中的一个或两个都出现时发生。在这种情况下,生化系统起“或”门的作用。我们证明,添加“过滤”生物催化过程会导致噪声传输系数的显着降低,并且最终的门响应在两个输入端均具有S型形状。开发了第二个系统,用作“与”门,仅通过两个酶促生物标记物的同时作用激活输出信号。该反应可以用作肝损害的指标,但前提是这两个输入均以其升高的病理生理浓度值存在。建立了动力学数值模型,并将其用于估算通过实验实现的逻辑门接近最佳值的参数范围。我们还分析了系统,以评估其噪声处理性能。

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