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SpectIR-fluidics:完全可定制的微流控芯片,用于具有应用点研究的细菌生物膜的高灵敏度片上红外光谱。

SpectIR-fluidics: completely customizable microfluidic cartridges for high sensitivity on-chip infrared spectroscopy with point-of-application studies on bacterial biofilms.

机构信息

Département de chimie, Faculté des sciences et de génie, Université Laval, Québec, QC G1V 0A6, Canada.

Département de génie mécanique, Faculté des sciences et de génie, Université Laval, Québec, QC G1V 0A6, Canada.

出版信息

Lab Chip. 2023 Aug 8;23(16):3561-3570. doi: 10.1039/d3lc00388d.

Abstract

We present a generalizable fabrication method for a new class of analytical devices that merges virtually any microfluidic design with high-sensitivity on-chip attenuated total reflection (ATR) sampling using any standard Fourier transform infrared (FTIR) spectrometer. Termed "spectIR-fluidics", a major design feature is the integration of a multi-groove silicon ATR crystal into a microfluidic device, compared with previous approaches in which the ATR surface served as a structural support for the entire device. This was accomplished by the design, fabrication, and aligned bonding of a highly engineered ATR sensing layer, which con```tains a seamlessly embedded ATR crystal on the channel side and an optical access port that matched the spectrometer light path characteristics at the device exterior. The refocused role of the ATR crystal as a dedicated analytical element, combined with optimized light coupling to the spectrometer, results in limits of detection as low as 540 nM for a D-glucose solution, arbitrarily complex channel features that are fully enclosed, and up to 18 world-to-chip connections. Three purpose-built spectIR-fluidic cartridges are used in a series of validation experiments followed by several point-of-application studies on biofilms from the gut microbiota of plastic-consuming insects using a small portable spectrometer.

摘要

我们提出了一种通用的制造方法,用于制造一类新的分析器件,该器件将几乎任何微流控设计与使用任何标准傅里叶变换红外(FTIR)光谱仪的高灵敏度片上衰减全反射(ATR)采样相结合。称为“spectIR-fluidics”,其主要设计特点是将多槽硅 ATR 晶体集成到微流控器件中,而以前的方法中,ATR 表面作为整个器件的结构支撑。这是通过设计、制造和对准键合高度工程化的 ATR 传感层来实现的,该传感层在通道侧包含一个无缝嵌入的 ATR 晶体和一个光学接入端口,该端口与光谱仪在设备外部的光路特性相匹配。ATR 晶体作为专用分析元件的重新聚焦作用,以及与光谱仪的优化光耦合,使得对于 D-葡萄糖溶液的检测限低至 540nM,任意复杂的通道特征完全封闭,并且多达 18 个世界到芯片的连接。三个专门设计的 spectIR-fluidic 盒式磁带在一系列验证实验中使用,然后在使用小型便携式光谱仪对来自消耗塑料昆虫肠道微生物群的生物膜进行了几项现场应用研究。

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