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Study on Extraction and Purification of Apigenin and the Physical and Chemical Properties of Its Complex with Lecithin

机译:芹菜素的提取纯化及其与卵磷脂配合物的理化性质研究

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Background: The apigenin has important medicinal value. However, the low solubility of apigenin in water significantly reduced its application. Objective: In this study, the apigenin was extracted, and the complex of apigenin and lecithin was obtained by the solvent method and its physical and chemical properties were investigated. Materials and Methods: The apigenin was extracted from the leaves of Adinandra nitida . Afterward, its apigenin was obtained by hydrolysis and recrystallization. The solvent method was used to synthesis the complex of apigenin and lecithin. Tetrahydrofuran was used as the solvent. The physicochemical properties of the complex were investigated by the various methods such as ultraviolet (UV)-visible spectrometry, infrared spectrometry (IR), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), and X-ray diffractometry. Results: No distinct difference was examined between the complex and physical mixture according to the UV analysis. While the result of Fourier transform-IR analysis indicated the characteristic absorption peaks of apigenin was subdued by the absorption peaks of lecithin. SEM showed the irregular form of the complex. In the DSC thermogram of the complex, the characteristic endothermic peak belonging to apigenin disappears, and the apparent amorphous properties are shown in the X-ray X-diffractograms of the complex. Conclusion: The synthetic process does not break the conjugated structure of apigenin. The complex is held together by Hydrogen bonding and van der Waals force and processes new physical and chemical characteristics. The industrial application of apigenin might be enhanced by the increase of the bioavailability. SUMMARY The apigenin was extracted from the leaves of Adinandra nitida The complex of apigenin and lecithin was obtained by solvent method The physical and chemical properties of the complex were investigated The complex is held together by Hydrogen bonding and van der Waals force and processes new physical and chemical characteristics. Abbreviation used: SLA: The synthesis of the complex of soy lecithin and apigenin, PMSLA: The manufacture of a physical mixture of soybean lecithin and apigenin, UV: Ultraviolet, IR; Infrared Radiation, FT-IR: Fourier transform infrared, NMR: Nuclear magnetic resonance, SEM: Scanning electron microscopy, DSC: Differential scanning calorimetry, XRD: X-ray diffractometry.
机译:背景:芹菜素具有重要的药用价值。然而,芹菜素在水中的低溶解度显着降低了其应用。目的:提取芹菜素,用溶剂法制得芹菜素与卵磷脂的配合物,研究其理化性质。材料和方法:芹菜素是从nitinant Anitandra的叶子中提取的。之后,通过水解和重结晶获得其芹菜素。用溶剂法合成芹菜素和卵磷脂的配合物。使用四氢呋喃作为溶剂。通过多种方法研究了该复合物的理化性质,例如紫外(UV)-可见光谱,红外光谱(IR),扫描电子显微镜(SEM),差示扫描量热法(DSC)和X射线衍射法。结果:根据紫外分析,在复合物和物理混合物之间没有发现明显差异。傅里叶变换IR分析的结果表明芹菜素的特征吸收峰被卵磷脂的吸收峰所抵消。 SEM显示复合物的不规则形式。在配合物的DSC热谱图中,属于芹菜素的特征吸热峰消失,并且在配合物的X射线X射线衍射图中显示出明显的无定形性质。结论:合成工艺未破坏芹菜素的共轭结构。该复合物通过氢键和范德华力结合在一起,并处理新的物理和化学特性。芹菜素的工业应用可以通过提高生物利用度来增强。小结芹菜素是从Adinandra nitida的叶子中提取的。芹菜素和卵磷脂的复合物是通过溶剂法获得的。研究了该复合物的理化性质。化学特性。使用的缩写:SLA:大豆卵磷脂和芹菜素复合物的合成,PMSLA:大豆卵磷脂和芹菜素的物理混合物的制造,UV:紫外线,IR;红外辐射,FT-IR:傅立叶变换红外,NMR:核磁共振,SEM:扫描电子显微镜,DSC:差示扫描量热法,XRD:X射线衍射法。

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