Institute of Chemistry, Saratov State University, Astrakhanskaya 83, 410012 Saratov, Russia.
Biosensors (Basel). 2019 Jul 23;9(3):91. doi: 10.3390/bios9030091.
This report is dedicated to development of surface-enhanced Raman spectroscopy (SERS) based analysis protocol for detection of antibiotics in urine. The key step of the protocol is the pretreatment of urine before the detection to minimize background signal. The pretreatment includes extraction of intrinsic urine components using aluminum hydroxide gel (AHG) and further pH adjusting of the purified sample. The protocol was tested by detection of a single antibiotic in artificially spiked samples of real urine. Five antibiotics of cephalosporin class (cefazolin, cefoperazone, cefotaxime, ceftriaxone, and cefuroxime) were used for testing. SERS measurements were performed using a portable Raman spectrometer with 638 nm excitation wavelength and silver nanoparticles as SERS substrate. The calibration curves of four antibiotics (cefuroxime is the exception) cover the concentrations required for detection in patient's urine during therapy (25/100‒500 μg/mL). Random error of the analysis (RSD < 20%) and limits of quantification (20‒90 μg/mL) for these antibiotics demonstrate the applicability of the protocol for reliable quantitative detection during therapeutic drug monitoring. The detection of cefuroxime using the protocol is not sensitive enough, allowing only for qualitative detection. Additionally, time stability and batch-to-batch reproducibility of AHG were studied and negative influence of the pretreatment protocol and its limitations were estimated and discussed.
本报告致力于开发基于表面增强拉曼光谱(SERS)的分析方案,用于检测尿液中的抗生素。该方案的关键步骤是在检测前对尿液进行预处理,以最小化背景信号。预处理包括使用氢氧化铝凝胶(AHG)提取尿液中的固有成分,以及进一步调整纯化样品的 pH 值。该方案通过检测人工添加到真实尿液样本中的单一抗生素进行了测试。使用头孢菌素类的五种抗生素(头孢唑林、头孢哌酮、头孢噻肟、头孢曲松和头孢呋辛)进行了测试。SERS 测量使用便携式拉曼光谱仪进行,激发波长为 638nm,银纳米颗粒作为 SERS 基底。除头孢呋辛外,四种抗生素(头孢唑林、头孢哌酮、头孢噻肟和头孢曲松)的校准曲线涵盖了治疗期间患者尿液中检测所需的浓度(25/100-500μg/mL)。分析的随机误差(RSD<20%)和定量限(20-90μg/mL)表明,该方案适用于治疗药物监测中的可靠定量检测。该方案对头孢呋辛的检测不够敏感,只能进行定性检测。此外,还研究了 AHG 的时间稳定性和批间重现性,并评估和讨论了预处理方案的负面影响及其局限性。