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A valve powered by earthworm muscle with both electrical and 100 chemical control

机译:由earth肌肉驱动的阀门具有电气和100%化学控制功能

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摘要

Development of bio-microactuators combining microdevices and cellular mechanical functions has been an active research field owing to their desirable properties including high mechanical integrity and biocompatibility. Although various types of devices were reported, the use of as-is natural muscle tissue should be more effective. An earthworm muscle-driven valve has been created. Long-time (more than 2 min) and repeatable displacement was observed by chemical (acetylcholine) stimulation. The generated force of the muscle (1 cm × 3 cm) was 1.57 mN on average for 2 min by the acetylcholine solution (100 mM) stimulation. We demonstrated an on-chip valve that stopped the constant pressure flow by the muscle contraction. For electrical control, short pulse stimulation was used for the continuous and repeatable muscle contraction. The response time was 3 s, and the pressure resistance was 3.0 kPa. Chemical stimulation was then used for continuous muscle contraction. The response time was 42 s, and the pressure resistance was 1.5 kPa. The ON (closed) state was kept for at least 2 min. An on-chip valve was demonstrated that stopped the constant pressure flow by the muscle contraction. This is the first demonstration of the muscle-based valve that is 100% chemically actuated and controlled.
机译:结合微装置和细胞机械功能的生物微致动器的开发由于其所期望的特性包括高机械完整性和生物相容性而一直是活跃的研究领域。尽管已经报道了各种类型的设备,但是按原样使用天然肌肉组织应该更加有效。 muscle肌肉驱动的瓣膜已创建。通过化学(乙酰胆碱)刺激观察到长时间(超过2分钟)且可重复位移。通过乙酰胆碱溶液(100 mM)刺激,肌肉产生的力(1 cm×3 cm)平均为1.57 mN,持续2 min。我们演示了一种片上阀,该阀通过肌肉收缩来停止恒压流动。对于电控制,短脉冲刺激用于连续和可重复的肌肉收缩。响应时间为3 s,耐压性为3.0 kPa。然后将化学刺激用于连续的肌肉收缩。响应时间为42 s,耐压性为1.5 kPa。 ON(关闭)状态至少保持2分钟。片上阀被证明通过肌肉收缩停止了恒压流动。这是基于肌肉的瓣膜的首次演示,该瓣膜是100%化学促动和控制的。

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