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Optofluidic detection setup for multi-parametric analysis of microbiological samples in droplets

机译:液滴微生物样品多参数分析的Optof流体检测设置

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摘要

High-throughput microbiological experimentation using droplet microfluidics is limited due to the complexity and restricted versatility of the available detection techniques. Current detection setups are bulky, complicated, expensive, and require tedious optical alignment procedures while still mostly limited to fluorescence. In this work, we demonstrate an optofluidic detection setup for multi-parametric analyses of droplet samples by easily integrating micro-lenses and embedding optical fibers for guiding light in and out of the microfluidic chip. The optofluidic setup was validated for detection of absorbance, fluorescence, and scattered light. The developed platform was used for simultaneous detection of multiple parameters in different microbiological applications like cell density determination, growth kinetics, and antibiotic inhibition assays. Combining the high-throughput potential of droplet microfluidics with the ease, flexibility, and simplicity of optical fibers results in a powerful platform for microbiological experiments.
机译:使用液滴微流体的高通量微生物实验由于可用检测技术的复杂性和限制多功能性而受到限制。电流检测设置庞大,复杂,昂贵,并且需要繁琐的光学对准程序,同时仍然主要限于荧光。在这项工作中,我们通过易于整合微透镜和嵌入光纤,用于将微透镜和嵌入微流体芯片中的光光纤维的多参数分析的多参数分析的多参数分析的optoProid分析。验证了替代物流体设置,用于检测吸光度,荧光和散射光。开发平台用于同时检测不同微生物应用中的多种参数,如细胞密度测定,生长动力学和抗生素抑制测定等。将液滴微流体的高通量电位与光纤的轻松,灵活性和简单性相结合,导致对微生物实验的强大平台。

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