热监测:拉曼光谱仪系统,用于在微观尺度上远程测量细胞温度。

Victor Pikov, Peter H Siegel
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引用次数: 16

摘要

演示了一种简单的设置,用于在微观尺度上对水、水性介质和细胞进行远程温度监测。这项技术依赖于记录液态水中羟基拉伸带在3100 - 3700厘米(-1)处的形状变化。而不是直接测量在近红外(IR),实现了一个简单的拉曼光谱仪设置。与昂贵的近红外元件相比,使用标准物镜倒置显微镜在近光学波长处观察到测量的拉曼位移。这允许通过相同的光路同时可见检查。一个廉价的671纳米二极管泵浦激光器(< 100 mW),标准二向色和低通滤波器,以及一个商用600-1,000纳米光谱仪完成仪器。1摄氏度的温度变化很容易在与细胞过程(25-45摄氏度)一致的范围内区分,使用低于10秒的积分时间。通过自动双峰拟合程序大大提高了灵敏度。当与光学摄像机结合使用时,该仪器可用于监测细胞行为随温度的变化,而无需侵入性探测。与传统的拉曼光谱仪和红外显微镜相比,该仪器实现简单,价格低廉,适用于生物系统显微测温的广泛问题。该仪器首次应用于射频毫米波辐射(60 GHz、1.3、2.6和5.2 mW/mm2)下,成功测定了一组H1299衍生的人肺细胞粘附在聚苯乙烯上并浸入磷酸盐缓冲盐水(PBS)中的温升。
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Thermal monitoring: Raman spectrometer system for remote measurement of cellular temperature on a microscopic scale.

A simple setup is demonstrated for remote temperature monitoring of water, water-based media, and cells on a microscopic scale. The technique relies on recording changes in the shape of a stretching band of the hydroxyl group in liquid water at 3,100-3,700 cm(-1). Rather than direct measurements in the near-infrared (IR), a simple Raman spectrometer setup is realized. The measured Raman shifts are observed at near optical wavelengths using an inverted microscope with standard objectives in contrast to costly near-IR elements. This allows for simultaneous visible inspection through the same optical path. An inexpensive 671-nm diode pump laser (< 100 mW), standard dichroic and lowpass filters, and a commercial 600-1,000 nm spectrometer complete the instrument. Temperature changes of 1 degrees C are readily distinguished over a range consistent with cellular processes (25-45 degrees C) using integration times below 10 s. Greatly improved sensitivity was obtained by an automated two-peak fitting procedure. When combined with an optical camera, the instrument can be used to monitor changes in cell behavior as a function of temperature without the need for invasive probing. The instrument is very simple to realize, inexpensive compared with traditional Raman spectrometers and IR microscopes, and applicable to a wide range of problems in microthermometry of biological systems. In a first application of its kind, the instrument was used to successfully determine the temperature rise of a cluster of H1299 derived human lung cells adhered to polystyrene and immersed in phosphate-buffered saline (PBS) under exposure of RF millimeter wave radiation (60 GHz, 1.3, 2.6, and 5.2 mW/mm2).

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来源期刊
IEEE Engineering in Medicine and Biology Magazine
IEEE Engineering in Medicine and Biology Magazine 工程技术-工程:生物医学
自引率
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1
审稿时长
>12 weeks
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