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Exploration of Modern Chromatographic Methods Coupled to Mass Spectrometric Techniques for Trace Element and Chemical Composition Analyses in the Leaf Extracts of Kigelia africana

机译:探测曲叶叶片叶提取物中痕量细胞和化学成分分析的质谱耦合的现代色谱方法探讨

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The use of Kigelia africana (Lam.) Benth. plant dates back to last century. The different parts of the plant exhibited various pharmacological activities. But literature search revealed scanty use of the leaf extract owing to few information regarding the various phytochemical constituents. The aim of this study is, therefore, to profile the chemical compounds through the use of omics-based approach. Ultrahigh-pressure liquid chromatography quadrupole-time-of-flight tandem mass spectrometry (qTOF-UPLC/MS) alongside gas chromatography quadrupole time-of-flight tandem mass spectrometry (qTOF-GC/MS) were used to profile these chemical compounds. Inductively coupled plasma optical emission spectrometry (ICP-OES) was used to determine the concentration of trace elements as well as limit of detection (LOD) and quantification (LOQ). For broader metabolite determination, a modified sample preparation was employed and to ascertain the cytoprotective potential of the leaf extract, MTT assay on A375 human melanoma cell lines was carried out. Sixty-eight peaks were characterized with the identification of 275 metabolites where 8 of these were confirmed. Of importance is the identification of eugenol; a polyphenolic compound at m/z 165.09 on fragments 119.09, 147.08, 109.10, 137.10, and 137.06. for qTOF-GC/MS analysis, 232 metabolites were identified consisting of terpenes, fatty acids, furans, amines, amides, and alkanes. The concentration of trace elements in the leaf extract ranged from 0.08 for Zn to 0.28 mg/kg for Fe with low concentrations of Cd according to the recommendation of European Legislation. The leaf showed higher inhibition of growth against A375 human melanoma cell lines in a dose-dependent manner. The results showed that K. africana leaf contained various pharmaceuticals, nutraceuticals, designer drugs, and phytochemicals, and these chemicals have minimal cytotoxic side effects. To the best of our knowledge, this is the first study providing information on the various secondary metabolites in the leaf extract through the use of omics-based approach. Therefore, the leaves of K. africana plant can be used as antiinflammatory, antimicrobial, antibacterial, antifungal, and antiproliferative agents for industrial, therapeutic, and medicinal applications.
机译:Kigelia Africania(林)的使用本特。这种植物可以追溯到上个世纪。植物的不同部位表现出不同的药理活性。但文献检索显示,由于有关各种植物化学成分的信息很少,叶提取物的使用很少。因此,本研究的目的是通过使用基于组学的方法来描述化合物。采用超高压液相色谱-四极杆飞行时间串联质谱(qTOF UPLC/MS)和气相色谱-四极杆飞行时间串联质谱(qTOF GC/MS)对这些化合物进行了分析。电感耦合等离子体发射光谱法(ICP-OES)用于测定微量元素的浓度、检测限(LOD)和定量(LOQ)。为了更广泛地测定代谢物,采用了改良的样品制备方法,并在A375人黑色素瘤细胞系上进行了MTT试验,以确定叶提取物的细胞保护潜力。共鉴定出275种代谢物,对68个峰进行了表征,其中8种得到确认。重要的是丁香酚的鉴定;在片段119.09、147.08、109.10、137.10和137.06上m/z 165.09处的多酚化合物。对于qTOF GC/MS分析,共鉴定出232种代谢物,包括萜烯、脂肪酸、呋喃、胺、酰胺和烷烃。根据欧洲立法的建议,叶片提取物中微量元素的浓度范围为:锌为0.08 mg/kg,铁为0.28 mg/kg,镉浓度较低。该叶对A375人黑色素瘤细胞系的生长有较高的抑制作用,且呈剂量依赖性。结果表明,非洲红豆杉叶含有多种药物、营养药物、设计药物和植物化学物质,这些化学物质的细胞毒副作用最小。据我们所知,这是首次通过基于组学的方法提供有关叶提取物中各种次生代谢物信息的研究。因此,K.africana植物的叶子可作为抗炎、抗菌、抗菌、抗真菌和抗增殖剂用于工业、治疗和医药应用。

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