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Highly sensitive surface-enhanced Raman scattering detection of brodifacoum and 1080 rodenticide in milk.

机译:高敏感的表面增强拉曼散射检测Brodifacoum和1080个臭肽在牛奶中。

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Surface enhanced Raman scattering (SERS) is a powerful technique for food inspection because of its readiness, sensitivity, and minimum sample preparation requirements.~1 Milk is a vulnerable target for contamination. In this work, we demonstrate a reliable SERS method for detecting toxins in milk focusing on brodifacoum, an anticoagulant rodenticide and sodium fluoroacetate, also commonly known as 1080. Surface-enhanced Raman spectroscopy is an advanced Raman technique for ultrasensitive detection of chemical and biological species. Liquid milk presents further challenges due to the complex colloidal nature of milk itself; producing much weaker SERS. Therefore, we applied and omniphobic surface platform, which has the potential to deliver near 100% analyte concentration by constant contact angle drying (and therefore no contact line pinning). Such omniphobic SERS substrates, so-called Slippery liquid-infused porous surfaces (SLIPS) were recently reported.~2 SLIPSERS method coupled with the dilution of rodenticide spiked milk samples and then extraction with a mixed solvent of methanol: water (3:1) was performed for rodenticide detection.~3 All the spectra were taken on an in-house Raman set up based on a Princeton Instruments FERGIE spectrometer using 532 nm excitation wavelength (with 2-3 mW laser power) focused onto the sample using a 40 x 0.65 NA objective. A series of diluted concentrations of each rodenticide ranging from 8-fold dilution to 1600-fold dilution were used to construct a calibration curve. There is a good linear relationship (R~2=0.9897) in this concentration range. A critical challenge in detecting bioanalytes is to achieve high specificity, high throughput, and trace-level detection.~4 The approach adopted in this work can be extended to detect various molecules in complex chemical and biological matrices.
机译:表面增强拉曼散射(SERS)是一种强大的食物检查技术,因为它准备好,灵敏度和最小的样品制备要求。〜1牛奶是一种脆弱的污染目标。在这项工作中,我们证明了一种可靠的SERS方法,用于检测聚焦在Brodifacoum的牛奶中的毒素,抗凝血剂啮齿乳肽和氟乙酸钠,也是常见称为1080.表面增强的拉曼光谱是用于化学和生物物种的超细敏感检测的先进拉曼技术。由于牛奶本身的复杂胶体性质,液体牛奶呈现出进一步的挑战;生产更弱的Sers。因此,我们施用和丝状表面平台,具有通过恒定接触角干燥(因此没有接触线钉扎)递送接近100%的分析物浓度。最近报道了这种唯一的含有液体注入的液体注入多孔表面(SLIPS)。〜2次怠速方法与稀释剂稀释牛奶样品的稀释,然后用甲醇的混合溶剂提取:水(3:1)进行了寄生虫检测。〜3所有光谱都在基于普林斯顿仪器Fergie光谱仪的内部拉曼,使用532nm激发波长(具有2-3兆瓦激光功率),使用40 x 0.65 NA目标。使用从8倍稀释至1600倍稀释的每种滴定剂的一系列稀释浓度从8倍稀释液构造校准曲线。在该浓度范围内有一个良好的线性关系(R〜2 = 0.9897)。检测生物分析的临界挑战是达到高特异性,高通量和痕量检测。〜4可以扩展本作作品中采用的方法以检测复杂化学和生物基质中的各种分子。

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