Bhadra Joyita, Sridhar Nakul, Fajrial Apresio Kefin, Hammond Nia, Xue Ding, Ding Xiaoyun
Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, CO 80309, USA.
Department of Mechanical Engineering, University of Colorado, 1111 Engineering Dr., Boulder, CO 80309, USA.
Sci Adv. 2023 Feb 22;9(8):eadf5056. doi: 10.1126/sciadv.adf5056.
Regular physical exercise has been shown to delay and alleviate neurodegenerative diseases. Yet, optimum physical exercise conditions that provide neuronal protection and exercise-related factors remain poorly understood. Here, we create an Acoustic Gym on a chip through the surface acoustic wave (SAW) microfluidic technology to precisely control the duration and intensity of swimming exercise of model organisms. We find that precisely dosed swimming exercise enabled by acoustic streaming decreases neuronal loss in two different neurodegenerative disease models of , a Parkinson's disease model and a tauopathy model. These findings highlight the importance of optimum exercise conditions for effective neuronal protection, a key characteristic of healthy aging in the elderly population. This SAW device also paves avenues for screening for compounds that can enhance or replace the beneficial effects of exercise and for identifying drug targets for treating neurodegenerative diseases.
规律的体育锻炼已被证明可以延缓和缓解神经退行性疾病。然而,能提供神经元保护作用的最佳体育锻炼条件以及与锻炼相关的因素仍知之甚少。在此,我们通过表面声波(SAW)微流控技术在芯片上创建了一个声学健身房,以精确控制模式生物游泳锻炼的持续时间和强度。我们发现,由声流实现的精确剂量游泳锻炼可减少两种不同神经退行性疾病模型(帕金森病模型和tau蛋白病模型)中的神经元损失。这些发现凸显了最佳锻炼条件对有效神经元保护的重要性,而有效神经元保护是老年人群健康衰老的一个关键特征。这种SAW设备还为筛选可增强或替代锻炼有益效果的化合物以及识别治疗神经退行性疾病的药物靶点开辟了道路。