紫锥菊酊剂的色谱-质谱对比研究Moench

Y. I. Kornievskiy, D. Skoryna, V. H. Korniievska, N. V. Kandybei
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引用次数: 0

摘要

当今的一个紧迫问题是继发性免疫缺陷的蔓延,这与压力增加、城市化和环境的负面变化有关,这些变化导致免疫功能受损。草药更温和,不容易上瘾和有副作用,而且长效。紫锥菊(Echinacea purpurea, L.)是一种具有免疫调节作用的植物。一种菊科植物。紫锥菊的主要有效成分是酚类化合物、碳水化合物和烷基酰胺。紫锥菊的化学成分还包括黄酮类、单宁、皂苷、高级脂肪酸、氨基酸、甜菜碱、精油、宏微量元素(Se、Co、Ag、Mo、Zn、Mg、K、Na、Fe等)。药物具有免疫刺激、抗氧化、稳定膜的作用,促进伤口、烧伤、溃疡的愈合,多用于感染性和病毒性疾病,尤其是心衰。它们传统上用于疖病、败血症(血液感染)、脓漏、扁桃体炎,特别是用于治疗疖子、痈和脓肿。同样重要的是,在现代制药科学中,与将草药引入医疗实践、研究其化学成分、标准化、开发制造植物修复剂的最佳技术有关的研究占据了主导地位。因此,我们的研究对象是紫锥菊酊剂。本研究的目的是对紫锥菊(紫锥菊)酊剂的成分进行研究和比较。采用气相色谱法(GC)。材料和方法。本研究采用紫锥菊根茎酊剂:实验-根据工业工艺配方(1:5,萃取剂-乙醇70%)制备,原料于2019年7月在中国国立医科大学研究基地收获,对照-成品有限责任公司“日托米药厂”,系列20319。用安捷伦7890B气相色谱仪和5977B质谱检测器对酊剂进行分析。使用NIST14质谱库对成分进行鉴定。用气相色谱法鉴定了紫锥菊根茎中31个(实验)成分和23个(对照)成分。研究结果表明,紫锥菊根茎的定性定量化学成分具有复杂性和变异性。这一事实使植物修复的标准化过程复杂化,并可能影响其有效性和安全性。因此,紫锥菊属植物应成为进一步深入化学研究的对象。紫锥菊酊剂成分的比较分析在气相色谱的帮助下,对Moench进行了研究。气相色谱法适用于紫锥菊植物提取物中天然BAS含量的测定,可为其标准化方法的建立提供依据。研究结果对进一步制定和完善紫锥菊原料及植物修复成分的分析规范具有一定的参考价值。它们也可以作为以紫锥菊地下器官为基础,创造具有免疫调节活性的新物质的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative chromato-mass spectrometric study of tinctures based on Echinacea purpurea (L.) Moench
An urgent problem today is the spread of secondary immunodeficiencies associated with increased stress, urbanization, and negative changes in the environment that lead to impaired immune function. Herbal remedies are milder, less likely to become addictive and have side effects, and are long-lasting. A promising plant with immunomodulatory action is Echinacea purpurea (L.) Moench, a member of the family Asteraceae. The main active ingredients of echinacea are phenolic compounds, carbohydrates, and alkylamides. The chemical composition of echinacea is also represented by flavonoids, tannins, saponins, higher fatty acids, amino acids, betaine, essential oil, macro- and microelements (Se, Co, Ag, Mo, Zn, Mg, K, Na, Fe, etc.). Drugs have immunostimulatory, antioxidant, membrane-stabilizing effect, promote healing of wounds, burns, ulcers, are used in infectious and viral diseases, especially HF. They are traditionally used for furunculosis, septicemia (infection of the blood), pyorrhea, tonsillitis, especially for the treatment of boils, carbuncles, and abscesses. It is also important that in modern pharmaceutical science the leading place is occupied by research related to the introduction into medical practice of herbal medicines, the study of their chemical composition, standardization, development of optimal technologies for the manufacture of phytopreparations. That is why the objects of our research were tinctures based on Echinacea purpurea. The aim of the work is to study and compare the component composition of tinctures based on Echinacea purpurea (L.) Moench using gas chromatography (GC). Materials and methods. Tinctures of rhizomes with roots of Echinacea purpurea were used for the study: experimental – made according to industrial technological recipe (1:5, extractant – ethanol 70 %) from raw materials harvested in July 2019 at the research site of Zaporizhzhia State Medical University and control – finished products LLC “Zhytomyr Pharmaceutical Factory”, series 20319. Tinctures were investigated on a gas chromatograph Agilent 7890B with mass spectrometric detector 5977B. The NIST14 mass spectrum library was used to identify the components. Results. 31 (experimental) and 23 (control) components were identified by GC in rhizomes with rhizomes of Echinacea purpurea. The results of the study indicate that the qualitative and quantitative chemical composition of rhizomes with roots of Echinacea purpurea was characterized by complexity and variability. This fact complicates the process of standardization of phytopreparations and can affect their effectiveness and safety. Therefore, members of the genus Echinacea should be the subject of further in-depth chemical study. Conclusions. A comparative analysis of the component composition of tinctures based on Echinacea purpurea (L.) Moench was studied and performed with the help of GC. The GC method is suitable for the determination of natural BAS in the composition of phytopreparations from echinacea and can be used in the development of methods for their standardization. The results of the study were of value for further development and improvement of analytical regulations for raw materials and phytopreparations from Echinacea purpurea. They can also be the basis for the creation of new substances with immunomodulatory activity based on the underground organs of echinacea.
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