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首页> 外文期刊>International Journal of Pharmacy and Pharmaceutical Sciences >PHYTOCHEMICAL STUDIES AND GC-MS ANALYSIS OF SPERMADICTYON SUAVEOLENS ROXB
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PHYTOCHEMICAL STUDIES AND GC-MS ANALYSIS OF SPERMADICTYON SUAVEOLENS ROXB

机译:精子D的理化研究和GC-MS分析

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Objective: The present study was performed to identify the phytochemical constituents of leaves and flowers of a plant Spermadictyon suaveolens extracted with four different solvents. Methods: Dried and powdered samples were subjected to soxhlation based on the polarity of the solvents. The extracts were scanned using Ultra Violet-visible (UV-Vis) spectrophotometry with the wavelength ranging from 200–800 nm by comparing the absorption spectrum with the spectra of known compounds, Fourier Transform Infrared (FT-IR) spectrometry was used to find out the functional groups of the compounds and GC-MS system consisting of a Perkin Elmer Technologies Model Clarus 680 GC equipped with Clarus 600 (EI) was used to identify the metabolites by matching their recorded mass spectra with the standard mass spectra from National Institute of Standards and Technology (NIST05. LIB) libraries provided by the software of the GCMS system (TurboMass version 5.4.2). Results: The phytochemical tests indicated the presence of carbohydrates, alkaloids, flavonoids, phenols, tannins, saponins and terpenoids from the chloroform extract of leaves and flowers. UV-visible spectrophotometer results indicated a wavelength range between 230–660 nm for the flower and leaf extracts for major peaks. FT-IR analysis indicated major functional groups such as aromatic, primary, secondary and aliphatic amines, alkanes, carboxylic acids and amides. GC-MS analysis results revealed major bioactive compounds in the crude extracts. Conclusion: Presence of secondary metabolites has been identified from the phytochemical studies. Many phyto-compounds have been identified from the leaves and flowers of using GC-MS analysis. Hence, this medicinal plant may be used as a source for treating many diseases.
机译:目的:进行本研究以鉴定用四种不同溶剂提取的植物精子植物叶片的花和叶的植物化学成分。方法:根据溶剂的极性,将干燥和粉末状的样品进行溶胶化。通过将吸收光谱与已知化合物的光谱进行比较,使用紫外可见(UV-Vis)分光光度法对提取物进行扫描,波长范围为200–800 nm,并使用傅立叶变换红外(FT-IR)光谱法进行分析化合物的官能团和由Perkin Elmer Technologies配备Clarus 600(EI)的Perkin Elmer Technologies型号Clarus 680 GC组成的GC-MS系统用于鉴定代谢物,方法是将其记录的质谱图与美国国家标准研究院的标准质谱图进行匹配和技术(NIST05。LIB)库由GCMS系统的软件(TurboMass版本5.4.2)提供。结果:植物化学测试表明,叶和花的氯仿提取物中存在碳水化合物,生物碱,类黄酮,酚,单宁,皂角苷和萜类化合物。紫外可见分光光度计的结果表明,花和叶提取物的主要峰波长范围在230-660 nm之间。 FT-IR分析表明主要官能团如芳族,伯,仲和脂族胺,烷烃,羧酸和酰胺。 GC-MS分析结果显示了粗提物中的主要生物活性化合物。结论:从植物化学研究中已经鉴定出次生代谢产物的存在。使用GC-MS分析已从叶子和花朵中鉴定出许多植物化合物。因此,该药用植物可用作治疗许多疾病的来源。

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