Department of Physics, Faculty of Science, Gakushuin University, Toshima-ku, Tokyo, 171-8588, Japan.
International Mass Imaging Center and Department of Cellular and Molecular Anatomy, Hamamatsu University School of Medicine, Hamamatsu, 431-3192, Japan.
Sci Rep. 2018 Oct 22;8(1):15562. doi: 10.1038/s41598-018-33846-5.
To study the properties of tracheal cilia beating under various conditions, we developed a method to monitor the movement of the ciliary tip. One end of a demembranated cilium was immobilized on the glass surface, while the other end was capped with a polystyrene bead and tracked in three dimensions. The cilium, when activated by ATP, stably repeated asymmetric beating as in vivo. The tip of a cilium in effective and recovery strokes moved in discrete trajectories that differed in height. The trajectory remained asymmetric in highly viscous solutions. Model calculation showed that cilia maintained a constant net flux during one beat cycle irrespective of the medium viscosity. When the bead attached to the end was trapped with optical tweezers, it came to display linear oscillation only in the longitudinal direction. Such a beating-mode transition may be an inherent nature of movement-restricted cilia.
为了研究不同条件下气管纤毛的运动特性,我们开发了一种监测纤毛尖端运动的方法。将去膜纤毛的一端固定在玻璃表面,另一端用聚苯乙烯珠帽封闭,并在三维空间中进行跟踪。当纤毛被 ATP 激活时,它会像在体内一样稳定地重复不对称摆动。在有效和恢复冲程中,纤毛的尖端以离散的轨迹移动,轨迹的高度不同。在高粘性溶液中,轨迹仍然不对称。模型计算表明,纤毛在一个拍打周期内保持恒定的净通量,与介质的粘度无关。当附着在末端的珠子被光镊捕获时,它只能在纵向方向上显示线性振动。这种拍打模式的转变可能是运动受限纤毛的固有性质。