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Stability of Hydroxytyrosol in Aqueous Solutions at Different Concentration, Temperature and with Different Ionic Content: A Study Using UPLC-MS

机译:不同浓度,温度和不同离子含量下水溶液中羟基酪醇的稳定性:UPLC-MS研究

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The work describes a stability study of hydroxytyrosol (HTyr) in aqueous solutions carried out varying the following parameters: HTyr concentration, temperature and ionic content in the aqueous solution. First, an analytical method based on the use of ultra performance liquid chromatography (UPLC-MS) as analytical technique was developed and validated. The equation of the linear model was A/AISTD= –0.0013 + 0.0117. [HTyr], with a very good linearity, since the R-Squared was 99.9% and the P value of the lack of fit test was higher than 5%. Limits of quantification estimated, CCα(α= 0.05%) and CCβ(β= 0.05%), were 0.2 and 0.4 g/L respectively. As well, the relative standard deviation in the intra-day precision was lower than 3%. Therefore, the method is reproducible. We have applied this methodology to study the stability of HTyr and have observed that the most critical aspect turned to be the ionic content of the aqueous solutions. A tap water with high contents of calcium and magnesium (52 and 21 mg/L) degraded HTyr up to 64% in 48 hours whereas a low mineralization water with low contents of calcium and magnesium (4 and 2 mg/L) produced only 19% degradation.
机译:这项工作描述了羟基酪醇(HTyr)在水溶液中的稳定性研究,该研究通过改变以下参数进行:HTyr浓度,温度和水溶液中的离子含量。首先,开发并验证了一种基于超高效液相色谱(UPLC-MS)作为分析技术的分析方法。线性模型的方程为A / AISTD = –0.0013 + 0.0117。 [HTyr]具有很好的线性,因为R平方为99.9%,而缺乏拟合检验的P值高于5%。估计的定量限CCα(α= 0.05 %)和CCβ(β= 0.05 %)分别为0.2 g / L和0.4 g / L。同样,日内精度的相对标准偏差也低于3%。因此,该方法是可重复的。我们将这种方法应用于研究HTyr的稳定性,并且观察到最关键的方面变成了水溶液中的离子含量。高钙和镁含量(52和21 mg / L)的自来水在48小时内将HTyr降解高达64%,而仅矿化度低的钙和镁含量低的水(4和2 mg / L)仅产生降级19%。

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