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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Determination of Ochratoxin-A in the brain microdialysates and plasma of awake, freely moving rats using ultra high performance liquid chromatography fluorescence detection method
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Determination of Ochratoxin-A in the brain microdialysates and plasma of awake, freely moving rats using ultra high performance liquid chromatography fluorescence detection method

机译:用超高效液相色谱荧光检测方法测定脑微透明酸盐和血浆中脑微透明酸盐和血浆的测定

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In this study, a simple, efficient and rapid Ultra High Performance Liquid Chromatography method with fluorescence detection (UHPLC-FLD) has been developed and validated for the determination of Ochratoxin-A (OTA) in rat brain microdialysates and plasma samples. Six adult male wistar rats were used in the study and a single dose (5 mg/kg b.w.) of OTA was given by intraperitoneal (i.p.) injection. Rat blood and microdialysate samples were collected simultaneously after i.p. injection in awake freely moving rats, over a twelve-hour period. An UHPLC analysis was performed on a Zorbax Eclipse Plus C8 (150 mm x 3.0 mm ID x 1.8 mu m particles) column with a mobile phase of acetonitrile:water:phosphoric acid (50:50:0.1, v/v) using a flow rate of 0.6 mL/min. The fluorescence detector was set at 330 nm excitation and 460 nm emission wavelengths. Diflunisal (DIF) was used as an internal standard (IS). OTA and IS were separated within 5 min under these conditions. The method was validated in terms of linearity, precision, accuracy, limit of detection, limit of quantification, and stability. Calibration curves obtained with spiked biological matrices show good linearity with high correlation coefficients. The intra- and inter-day assay variability was < 5% for the OTA. The limit of detection and the limit of quantification values were found to be 0.490 ng/mL and 1.48 ng/mL for plasma; 0.0900 ng/mL and 0.270 ng/mL for microdialysate samples, respectively. This method was successfully applied for the monitoring of OTA levels in the rat brain and plasma samples.
机译:在该研究中,已经开发了一种简单,高效,快速的超高效液相色谱法(UHPLC-FLD),并验证了大鼠脑微透明酸盐和血浆样品中的核毒素-A(OTA)。在研究中使用六只成年雄性Wistar大鼠,并通过腹膜内(I.P.)注射给出单一剂量(5mg / kg B.W.)的OTA。在I.P中同时收集大鼠血液和微透明酸盐样品。注射在唤醒自由移动大鼠,超过十二个小时。在Zorbax Eclipse加上C8(150mM×3.0mM ID×1.8μmmm颗粒)柱上进行UHPLC分析,具有乙腈的流动相:水:使用流动的磷酸(50:50:0.1,v / v)速率为0.6 ml / min。荧光检测器设定为330nm激发和460nm发射波长。使用不同的(DIF)作为内标(是)。在这些条件下在5分钟内分离出OTA。该方法在线性,精度,准确度,检测极限,量化限制和稳定性方面进行了验证。用尖刺的生物基质获得的校准曲线显示出具有高相关系数的良好线性度。 OTA的日期和白天间测定变异性<5%。发现检测极限和定量值限制为0.490ng / ml,等离子体的1.48ng / ml;微透明化样品的0.0900ng / ml和0.270ng / ml。该方法已成功应用于对大鼠脑和血浆样品中的OTA水平进行监测。

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