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General survey of Fructus Psoraleae from the different origins and chemical identification of the roasted from raw Fructus Psoraleae

机译:不同来源的补骨脂的普查和生骨补骨脂的烤制的化学鉴定

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Fructus Psoraleae, a traditional Chinese medicine, is widely used for preventing and treating various diseases such as vitiligo, osteoporosis and psoriasis. Coumarin, such as psoralenoside, isopsoralenoside, psoralen and isopsoralen, are important compounds in Fructus Psoraleae. In our study, ultra performance liquid chromatography coupled with diode array detector was employed for an excellent method validation for simultaneous quantification of psoralenoside, isopsoralenoside, psoralen and isopsoralen, which was further applied in performing general survey of Fructus Psoraleae from the different origins and chemical identification of the roasted from raw Fructus Psoraleae in the light of illuminating the transformed rule of psoralenoside and isopsoralenoside. There is a reciprocal relationship between (iso)psoralenoside and (iso)psoralen, and the total content remains balance in Fructus Psoraleae from the different origins. In addition, we found that (iso)psoralenoside in the powder of the raw Fructus Psoraleae could be easily transformed into (iso)psoralen in methanol aqueous solution, especially above 50% water, rather than the roasted one. Thus, we proposed a hypothesis that transformation between (iso)psoralenoside and (iso)psoralen was hindered by inactivation of β -glucosidase in the process of roasting Fructus Psoraleae, which was further verified by observing transformation of (iso)psoralenoside under the different conditions, such as temperature, pH and β -glucosidase. Therefore, we developed a feasible method to distinguish the roasted from raw Fructus Psoraleae by observing conversion from (iso)psoralenoside to (iso)psoralen in 50% methanol aqueous solution. In summary, these results pave the way for elevating quality standard for Fructus Psoraleae and distinguishing the salt-processed from raw Fructus Psoraleae.
机译:补骨脂被广泛用于预防和治疗白癜风,骨质疏松和牛皮癣等多种疾病。香豆素,例如补骨脂甙,异补骨脂甙,补骨脂素和异补骨脂素是补骨脂中的重要化合物。在我们的研究中,超高效液相色谱结合二极管阵列检测器用于同时定量补骨补骨脂甙,异补骨脂甙,补骨脂素和异补骨脂素的出色方法验证,并进一步应用于从不同产地进行的补骨骨survey普查和化学鉴定照补骨脂补骨脂和异补骨脂补骨脂的转化规律,从生补骨补骨脂中烤制而成。 (异)补骨脂甙和(异)补骨脂素之间存在相互关系,不同部位的补骨脂中总含量保持平衡。此外,我们发现粗骨F的粉末中的(异)补骨脂甙可以很容易地在甲醇水溶液(尤其是50%以上的水)中转化为(异)补骨脂素,而不是经过焙烧的。因此,我们提出了一种假设,即在烧烤s骨中,β-葡糖苷酶的失活会阻碍(异)补骨脂苷和(异)补骨脂素之间的转化,这一点通过观察不同条件下的(异)补骨脂苷的转化得到进一步证实。 ,例如温度,pH和β-葡萄糖苷酶。因此,我们开发了一种可行的方法,通过观察在50%甲醇水溶液中从(异)补骨脂甙到(异)补骨脂素的转化来区分生骨s。总而言之,这些结果为提高补骨脂的质量标准和区分食盐和生补骨脂的加工方法铺平了道路。

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