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Near Infrared Raman Spectroscopy (NIRS): A technique for doping control

机译:近红外拉曼光谱(NIRS):一种掺杂控制技术

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摘要

This paper reports the application of near-infrared Raman spectroscopy to detect ephedrine in biological medium. At present time, the doping control for ephedrine in athletes uses the urinalysis by the gas chromatography/mass spectrometry, with main disadvantage the need of collecting urine and the time delay to obtain results. This work aims to develop a noninvasive technique that will allow to evaluate the concentration of the ephedrine in a real time diagnosis. A Raman system composed by a Ti:Saphire laser pumped by an Argon laser was used, operating at the wavelength of 785 nm, with a laser power of 70 mW at sample position. Raman scattered photons were collected by a f/l.8 spectrometer and a N_2-cooled CCD detector. Ephedrine Raman peaks at 1002 and 1603 cm~(-1) were studied, opening possibility for the identification and quantification of ephedrine. Raman spectra of ephedrine with different concentrations in human urine were taken, and the intensity of the ephedrine peak at 1002 cm~(-1) was measured as a function of its concentration. It was also studied the Raman spectrum of an urine sample from a Wistar rat, after a subcutaneous inoculation of an ephedrine solution in physiologic serum, at the concentration of 5 mg/ml. It was found that Raman spectroscopy could detect ephedrine in urine at concentrations lower than the doping limit legally permitted by the International Olympic Committee.
机译:本文报道了近红外拉曼光谱技术在生物介质中检测麻黄碱的应用。目前,运动员中麻黄碱的兴奋剂控制使用气相色谱/质谱法进行尿液分析,主要缺点是需要收集尿液和延迟时间以获得结果。这项工作旨在开发一种非侵入性技术,该技术可在实时诊断中评估麻黄碱的浓度。使用由氩激光器泵浦的Ti:Saphire激光器组成的拉曼系统,其工作波长为785 nm,在样品位置的激光功率为70 mW。拉曼散射光子由f / l.8光谱仪和N_2冷却的CCD检测器收集。研究了麻黄碱在1002和1603 cm〜(-1)处的拉曼峰,为麻黄碱的鉴定和定量研究提供了可能。采集了人尿中不同浓度的麻黄碱的拉曼光谱,并测量了其浓度在1002 cm〜(-1)处的麻黄碱峰强度。还研究了在皮下注射浓度为5 mg / ml的生理血清中的麻黄碱溶液后,对Wistar大鼠尿液样品的拉曼光谱。结果发现,拉曼光谱法可以检测尿液中的麻黄碱,其浓度低于国际奥委会合法许可的掺杂限量。

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