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The cooperative actuation of polypyrrole electrochemical machines senses the chemical conditions as muscles sense their fatigue state

机译:聚吡咯电化学机器的协同致动在肌肉感知其疲劳状态时感知化学条件

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Polypyrrole films are constituted by multistep electrochemical molecular machines, counterions and water, and have been considered here as a material model of the intracellular matrix in muscular cells. Their reversible oxidation/reduction in different concentrations of NaCl aqueous solution was studied by consecutive square current waves. The evolution of both, the material potential and the consumed electrical energy during every reaction, changes as a function of the electrolyte concentration. The reactions involving molecular motors as reactants respond to (and sense) any chemical energetic perturbations of the reaction ambient (variations of electrolyte concentration here), by adapting the evolution of the material potential and that of the consumed reaction energy to fit the new energetic conditions. A theoretical description of the attained empirical results is presented getting the sensing equations and the concomitant sensitivities. The results could indicate how the neuronal signal informing the brain about the fatigue state of a muscle is generated from the muscular chemical potential or the consumed reaction energy at any time. The actin-myosin-ATP reaction should originate, simultaneously, actuating and sensing biological functions.
机译:聚吡咯膜由多步电化学分子机器,抗衡离子和水构成,在这里已被视为肌肉细胞内细胞内基质的材料模型。通过连续方波研究了它们在不同浓度的NaCl水溶液中的可逆氧化/还原作用。在每个反应过程中,材料势和所消耗的电能的变化均随电解质浓度的变化而变化。涉及分子电动机作为反应物的反应,通过适应材料势和消耗的反应能的变化以适应新的能量条件,来响应(并感应)反应环境的任何化学高能扰动(此处电解质浓度的变化) 。给出了获得的经验结果的理论描述,得到了感测方程式和伴随的灵敏度。这些结果可能表明,如何在任何时候从肌肉的化学势或消耗的反应能量中生成通知大脑有关肌肉疲劳状态的神经元信号。肌动蛋白-肌球蛋白-ATP反应应同时引发和感知生物学功能。

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