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Pharmaceutical analysis and aspects of the quality control of St. John's Wort products

机译:圣约翰草产品的药物分析和质量控制方面

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摘要

Most complementary medicines contain a multitude of chemical components, some of which are claimed to contribute to the biological activity of such products. Use of complementary medicines for preventative and therapeutic purposes is increasing rapidly worldwide. Unfortunately, although control of these products is essential to ensure quality, safety, and efficacy, the quality control of most herbal preparations is currently poor to non-existent, with little or no safety and efficacy data required to support the marketing and use of these products. The objective of this study was therefore to develop suitable analytical methods to qualitatively and quantitatively analyse the relevant components (rutin, isoquercitrin, hyperoside, quercitrin, quercetin, kaempferol, hypericin, pseudohypericin and hyperforin) in St John's Wort dosage forms for quality control purposes.A gradient HPLC method using a Luna 5·mC₁₈(2) 150 x 2.00mm internal diameter (i.d.) column and UV detection, was developed for the separation of six of the relevant flavonoid compounds in St John's Wort, namely rutin, isoquercitrin, hyperoside, quercitrin, quercetin and kaempferol. The development process involved a systematic investigation of gradient conditions, flow rate, and temperature. This method was subsequently applied to assay selected commercially available St John's Wort products. This system provided the necessary accuracy, precision and reproducibility and was associated with several advantages when compared to using standard bore (4.60 mm i.d.) HPLC columns. The method developed is currently the only known method that separates all six relevant flavonoids in a reasonable run time (less than 20 minutes). It is also one of the few methods that has sufficient separation between rutin, isoquercitrin and hyperoside.A qualitative method for the fingerprinting of flavonoid components was also developed, using capillary electrophoresis (CE). CE is a rapidly growing powerful analytical technique for the separation of charged compounds. Micellar electrokinetic chromatography (MEKC) is a very powerful electrophoretic technique that is capable of selectively resolving both neutral and ionic solutes in a single run. A MEKC method suitable for the separation and determination of various flavonoid constituents used as marker compounds in Hypericum perforatum was developed. Investigations into the effect of pH, ionic strength, applied voltage and capillary dimensions on separation were performed. The optimised method was then applied to qualitatively analyse various St John's Wort products on the market. This method was found to be advantageous in that it was simple, cost-effective, required minimal sample preparation and utilised very small quantities of sample.Due to the vast differences in chemical properties between the various marker and active components in St John's Wort, it was necessary to develop separate analytical methods for the flavonoids and for the other three relevant compounds (hypericin, pseudohypericin and hyperforin). An isocratic HPLC method using a Luna 5·mC₁₈(2) 150 x 2.00mm (i.d.) column and UV detection was developed for the separation of hypericin, pseudohypericin and hyperforin. The development process involved a systematic investigation of buffer molarity, mobile phase composition, pH, flow rate, and temperature. This method was subsequently applied to assay selected commercially available St John's Wort products on the South African market. This system also provided the necessary accuracy, precision and reproducibility, as well as the advantages associated with the use of a narrow bore column as opposed to the use of the more commonly used wider bore columns. This method was validated and used to quantitate these three compounds in various commercial St John's Wort products.By applying this method to liquid chromatography – tandem mass spectrometry (LC-MS-MS), qualitative analyses of the same products was performed to obtain confirmation of the quantitative HPLC results. Mass spectrometry is a powerful detection tool that is more selective and specific than many detection systems used with HPLC. Natural medicines usually constitute a multitude of constituents with much potential interference. In this regard LC-MS-MS is a powerful tool, with its ability to unequivocally identify target analytes regardless of the presence of interferences or complex matrices. ESI-MS-MS was used for the qualitative analysis of the content of the naphthodianthrones and hyperforin in the respective tablet products assayed with HPLC. LC-MS-MS analyses were performed in order to identify the constituents and to verify the specificity of the HPLC method.High inter-product and inter-batch variability was observed for all nine compounds assayed. These quantitative results were confirmed with the respective qualitative analyses. This study confirms the need for strict quality control of herbal medicinal products commercially available to consumers.
机译:大多数补充药物都包含多种化学成分,据称其中一些化学成分有助于此类产品的生物活性。在世界范围内,用于预防和治疗目的的补充药物的使用正在迅速增加。不幸的是,尽管控制这些产品对于确保质量,安全性和有效性至关重要,但是目前大多数草药制剂的质量控制差强人意,甚至根本不存在,几乎不需要或不需要安全和功效数据来支持这些产品的营销和使用。产品。因此,本研究的目的是开发合适的分析方法,以定性和定量分析St John's Wort剂型中的相关成分(芦丁,异槲皮苷,金丝桃苷,槲皮素,槲皮素,山ic酚,金丝桃素,假高丝素和金丝桃素),以进行质量控制。开发了一种使用Luna 5·mC₁₈(2)150 x 2.00mm内径(id)色谱柱和UV检测的梯度HPLC方法,用于分离圣约翰草中的六种相关黄酮类化合物,即芦丁,异槲皮苷,金丝桃苷,槲皮素,槲皮素和山奈酚。开发过程涉及对梯度条件,流速和温度的系统研究。该方法随后应用于测定选择的市售St John's Wort产品。与使用标准内径(4.60 mm内径)HPLC色谱柱相比,该系统提供了必要的准确性,准确性和可重复性,并具有多项优势。目前开发的方法是在合理的运行时间(少于20分钟)内分离所有六个相关类黄酮的唯一已知方法。这也是在芦丁,异槲皮苷和高苷之间进行充分分离的少数方法之一。还开发了一种使用毛细管电泳(CE)的定性方法鉴定类黄酮成分。 CE是一种快速增长的强大的分析技术,用于分离带电化合物。胶束电动色谱(MEKC)是一种非常强大的电泳技术,能够在一次运行中选择性地分离中性和离子型溶质。建立了一种适于分离和测定贯叶连翘中标记化合物的各种类黄酮成分的MEKC方法。研究了pH,离子强度,施加电压和毛细管尺寸对分离的影响。然后将优化的方法应用于定性分析市场上各种圣约翰草的产品。人们发现这种方法的优势在于它简单,经济高效,所需样品制备量少,使用样品量少。由于圣约翰草中各种标记物和活性成分之间的化学性质差异很大,对于开发类黄酮和其他三种相关化合物(高丝素,假高丝素和金丝桃素)的单独分析方法是必要的。建立了使用Luna 5·mC₁₈(2)150 x 2.00mm(i.d.)色谱柱和UV检测的等度HPLC方法,用于分离金丝桃素,假高丝素和金丝桃素。开发过程涉及对缓冲液摩尔浓度,流动相组成,pH,流速和温度的系统研究。该方法随后应用于分析在南非市场上选择的市售St John's Wort产品。该系统还提供了必要的精度,精确度和可重复性,以及与使用更常用的宽口径色谱柱相比,使用窄口径色谱柱带来的优势。该方法经过验证,可用于定量各种St John's Wort产品中的这三种化合物。将该方法应用于液相色谱-串联质谱(LC-MS-MS),对同一产品进行了定性分析,从而确定了定量HPLC结果。质谱是一种功能强大的检测工具,比许多与HPLC一起使用的检测系统更具选择性和特异性。天然药物通常会构成许多潜在干扰因素。在这方面,LC-MS-MS是功能强大的工具,无论干扰物或复杂基质的存在如何,它都能明确鉴定目标分析物。 ESI-MS-MS用于定性分析用HPLC测定的各个片剂产品中萘二蒽酮和Hyperforin的含量。进行LC-MS-MS分析以鉴定其组成并验证HPLC方法的特异性。在所有9种测定的化合物中观察到较高的产物间和批间差异。这些定量结果已通过相应的定性分析得到证实。这项研究证实了对消费者可买到的草药产品进行严格质量控制的需要。

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    Wild Tracy Joy;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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