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Economic Spectrofluorometric Bioanalysis of Empagliflozin in Rats' Plasma

机译:大鼠等离子体中Empagliflozin的经济光谱荧光测定生物分析

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A simple, economic, green, and sensitive bioanalytical method for empagliflozin bioassay in rats' plasma was employed successfully owing to the empagliflozin native fluorescence behavior. Enhanced liquid-liquid extraction, using diethyl ether (DEE), was successfully employed for the improved extraction of empagliflozin from rats' plasma based on its high value of logP as 1.8 that boosted the drug migration from plasma to the organic layer. The relative fluorescence intensity for empagliflozin was recorded at emission (299.4?nm) after excitation at 226.5?nm. The method was validated with satisfactory results for linearity (500–5000?ng/mL), trueness, precision, the matrix effect, and extraction recovery. The matrix effect ranged between 15.63% and 23.10% for LQC and HQC samples, respectively. Extraction recovery ranged between 54.61% and 62.54% for LQC and HQC samples, respectively. Bias values for the trueness ranged between ?10.62 and +14.95, while %RSD values for the precision ranged between 5.39% and 9.33%. The method was successfully applied to rats' plasma samples that included six rats, and the drug concentration was determined in their plasma after 1 hour (estimated Cmax based on literature) following oral administration of empagliflozin with a concentration of 10?mg/Kg, p.o.. The developed cost-effective spectrofluorimetric method in the present work will be of beneficial use in further pharmacokinetic studies that include rats' plasma and biological fluids. Moreover, with the suitable modifications, the described novel extraction of empagliflozin could be adopted to human plasma samples and future clinical studies. Moreover, development of new simple cost-effective methods is necessary to give the researchers a set of “varieties” that they can use according to the laboratory limitations, especially in the developing countries in addition of being a greener method due to the lower consumption of toxic solvents and lower waste production.
机译:由于Empagliflozin天然荧光行为,采用了大鼠血浆中empagliflozin生物测定的简单,经济,绿色和敏感的生物分析方法。使用乙醚(DEE)的增强液 - 液萃取成功用于基于其高值的大鼠血浆从大鼠血浆中改善Empagliflozin的改善提取为1.8,使得从等离子体迁移到有机层中的药物迁移。在226.5μm的激发后,在发射(299.4Ω·NM)下记录Empagliflozin的相对荧光强度。该方法验证了线性度(500-5000〜Ng / mL),真实,精度,基质效应和提取恢复的令人满意的结果。 LQC和HQC样品的基质效应分别为15.63%和23.10%。 LQC和HQC样品的提取恢复分别为54.61%和62.54%。 Truuent的偏差值在Δ10.62和+14.95之间进行,而精度的%RSD值范围为5.39%和9.33%。该方法成功地应用于包含六只大鼠的大鼠等离子体样品,并且在口服浓度为10×mg / kg,PO 。在本作中发育的经济高效的光谱氟化方法将在进一步的药代动力学研究中有益使用,所述药代动力学研究包括大鼠血浆和生物流体。此外,通过适当的修饰,可以采用所描述的empagliflozin提取对人体血浆样本和未来的临床研究。此外,新的简单成本效益的方法是必要的,使研究人员能够根据实验室限制,特别是在发展中国家的情况下,由于较低的消耗来说,他们可以使用有毒溶剂和较低的废物生产。

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