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一种用于高通量细胞刺激的透明低强度脉冲超声(LIPUS)芯片。

A transparent low intensity pulsed ultrasound (LIPUS) chip for high-throughput cell stimulation.

机构信息

Department of Biomedical Engineering, The Pennsylvania State University, University Park, PA 16802, USA.

Department of Mechanical Engineering, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Lab Chip. 2021 Dec 7;21(24):4734-4742. doi: 10.1039/d1lc00667c.

Abstract

We report an on-chip platform for low-intensity pulsed ultrasound (LIPUS) stimulation of cells directly cultured on a biocompatible surface of a transparent ultrasound transducer (TUT) fabricated using lithium niobate. The high light transmittance (>80%) and compact size (3 mm × 3 mm × 2 mm) of TUTs allowed easy integration with powerful optical microscopy techniques with no additional acoustic coupling and risk for contamination. TUTs were excited with varying acoustic excitation parameters (voltage amplitude and duty cycle) and resulting live cell calcium signaling was simultaneously imaged using time-lapse confocal microscopy, while the temperature change was measured by a thermocouple. Quantitative single-cell fluorescence analysis revealed the dynamic calcium signaling responses and together with the temperature measurements elucidated the optimal stimulation parameters for non-thermal and thermal effects. The fluorescence change profile was distinct from the recorded temperature change (<1 degree Celsius) profile under LIPUS treatment conditions. Cell dead assay results confirmed cells remain viable after the LIPUS treatment. These results confirmed that the TUT platform enables controllable, safe, high-throughput, and uniform mechanical stimulation of all plated cells. The on-chip LIPUS stimulation using TUTs has the potential to attract several and biomedical applications such as controlling stem cell differentiation and proliferation, studying biomechanical properties of cancer cells, and gaining fundamental insights into mechanotransduction pathways when integrated with state-of-the-art high-speed and high-resolution microscopy techniques.

摘要

我们报告了一种用于低强度脉冲超声 (LIPUS) 刺激的片上平台,该平台可直接在使用铌酸锂制造的透明超声换能器 (TUT) 的生物相容性表面上培养细胞。TUT 的高光透过率(>80%)和紧凑尺寸(3mm×3mm×2mm)允许与强大的光学显微镜技术轻松集成,无需额外的声耦合和污染风险。TUT 采用不同的声激励参数(电压幅度和占空比)进行激励,同时使用时程共聚焦显微镜对活细胞钙信号进行实时成像,而热电偶测量温度变化。定量单细胞荧光分析揭示了动态钙信号响应,并且与温度测量一起阐明了非热和热效应的最佳刺激参数。荧光变化曲线与 LIPUS 处理条件下记录的温度变化曲线(<1 摄氏度)明显不同。细胞死亡测定结果证实细胞在 LIPUS 处理后仍然存活。这些结果证实 TUT 平台能够对所有培养的细胞进行可控、安全、高通量和均匀的机械刺激。使用 TUT 的片上 LIPUS 刺激有可能吸引几个 和 生物医学应用,例如控制干细胞分化和增殖、研究癌细胞的生物力学特性以及在与最先进的高速和高分辨率显微镜技术集成时获得对机械转导途径的基本了解。

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