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Bioanalytical Method Development and Validation Study of Neuroprotective Extract of Kashmiri Saffron Using Ultra-Fast Liquid Chromatography-Tandem Mass Spectrometry (UFLC-MS/MS): In Vivo Pharmacokinetics of Apocarotenoids and Carotenoids

机译:使用超快速液相色谱 - 串联质谱法(UFLC-MS / MS)克什米尔藏红花神经保护提取物的生物分析方法开发及验证研究:在偶发藻藻和类胡萝卜素的体内药代动力学中

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摘要

Kashmir saffron (Crocus sativus L.), also known as Indian saffron, is an important Asian medicinal plant with protective therapeutic applications in brain health. The main bioactive in Kashmir or Indian Saffron (KCS) and its extract (CSE) are apocarotenoids picrocrocin (PIC) and safranal (SAF) with carotenoids, crocetin esters (crocins), and crocetins. The ultra-fast liquid chromatography(UFLC)- photodiode array standardization confirmed the presence of biomarkers PIC, trans-4-GG-crocin (T4C), trans-3-Gg-crocin (T3C), cis-4-GG-crocin (C4C), trans-2-gg-crocin (T2C), trans-crocetin (TCT), and SAF in CSE. This study’s objectives were to develop and validate a sensitive and rapid UFLC-tandem mass spectrometry method for PIC and SAF along T4C and TCT in rat plasma with internal standards (IS). The calibration curves were linear (R2 > 0.990), with the lower limit of quantification (LLOQ) as 10 ng/mL. The UFLC-MS/MS assay-based precision (RSD, <15%) and accuracy (RE, −11.03–9.96) on analytical quality control (QC) levels were well within the acceptance criteria with excellent recoveries (91.18–106.86%) in plasma samples. The method was applied to investigate the in vivo pharmacokinetic parameters after oral administration of 40 mg/kg CSE in the rats (n = 6). The active metabolite TCT and T4C, PIC, SAF were quantified for the first time with T3C, C4C, T2C by this validated bioanalytical method, which will be useful for preclinical/clinical trials of CSE as a potential neuroprotective dietary supplement.
机译:克什米尔藏红花(Crocus Sativus L.),也被称为印度藏红花,是一个重要的亚洲药用植物,具有脑健康的保护性治疗应用。 Kashmir或印度藏红花(KCS)的主要生物活性及其提取物(CSE)是磷甲酸皮藤蛋白(PIC)和Safranal(Saf),具有类胡萝卜素,鳄鱼酯(雌激素)和鳄鱼。超快速液相色谱(UFLC) - 光电二极管阵列标准化证实了生物标志物PIC,反式4-GG-甲壳(T4C),反式-3-GG-甲壳(T3C),CIS-4-GG-甲壳( C4C),反式2-GG-甲壳(T2C),转鳄(TCT)和CSE中的SAF。本研究的目的是开发和验证沿T4C的敏感和快速的UFLC串联质谱法,沿T4C和RCT在大鼠等离子体中具有内部标准(是)。校准曲线是线性的(R2> 0.990),其定量下限(LLOQ)为10ng / mL。基于UFLC-MS / MS测定的精度(RSD,<15%)和准确度(RE,-11.03-9.96)在分析质量控制(QC)水平上很好地在验收标准内,具有优异的回收率(91.18-106.86%)在等离子体样本中。应用该方法以在口服施用大鼠40mg / kg CSE后的体内药代动力学参数(n = 6)。通过该验证的生物分析方法首次使用T3C,C4C,T2C定量活性代谢物TCT和T4C,SAF,这将是CSE的临床前/临床试验作为潜在的神经保护膳食补充剂。

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