Faculty of Science and Engineering, Doshisha University, 1-3 TataraMiyakodani, Kyotanabe, Kyoto, 610-0321, Japan.
Graduate School of Biostudies, Kyoto University, Yoshida Konoe, Kyoto, 606-8501, Japan.
Sci Rep. 2024 Oct 28;14(1):25737. doi: 10.1038/s41598-024-77277-x.
This study investigated a technique for controlling the orientation of C2C12-derived myotube cells using ultrasonication for future clinical applications of cultured skeletal muscle tissues. An ultrasonicating cell culture dish, comprising a plastic-bottomed culture dish and a circular glass plate (diameter, 35 mm; thickness, 1.1 mm) attached to an annular piezoelectric ultrasonic transducer (inner diameter, 10 mm; outer diameter, 20 mm; thickness, 1 mm), was constructed. A concentric resonant vibrational mode at 89 kHz was generated on the bottom of the dish, and the orientations of myotube cells were quantitatively evaluated using two-dimensional Fourier transform analysis of phase contrast microscopy images captured over a 14 × 10 mm area at the center of the dish. Unsonicated myotube cells grew in random directions, but ultrasonication aligned them circumferentially in the culture dish. The timing of treatment was important, with ultrasonication for 48 h before differentiation having a greater impact on myotube orientation than ultrasonication after differentiation. A larger ultrasonic vibration, with an amplitude of over 20 V, resulted in significantly smaller angles of deviation in the circumferential direction than the control. Ultrasonication enhanced the expression of differentiation-related genes and the formation of aligned myotubes, suggesting that it promotes differentiation of C2C12 cells into myotubes.
本研究探索了一种利用超声处理控制 C2C12 衍生的肌管细胞方向的技术,以期将培养的骨骼肌组织应用于未来的临床治疗。本研究构建了一种超声细胞培养皿,由一个底部为塑料的培养皿和一个附在环形压电超声换能器(内径 10mm,外径 20mm,厚度 1mm)上的圆形玻璃盘(直径 35mm,厚度 1.1mm)组成。在培养皿底部产生了一个 89kHz 的同心共振振动模式,并使用二维傅里叶变换分析对相位对比显微镜图像进行定量评估,这些图像是在培养皿中心的 14×10mm 区域拍摄的。未经超声处理的肌管细胞呈随机方向生长,但超声处理可使它们沿培养皿圆周方向排列。处理时间很重要,分化前的超声处理 48 小时比分化后的超声处理对肌管方向的影响更大。较大的超声振动(振幅超过 20V)导致圆周方向的偏差角度明显小于对照组。超声处理增强了分化相关基因的表达和排列整齐的肌管的形成,表明其促进了 C2C12 细胞向肌管的分化。