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1.
The title compound, C19H13N3S, is folded, with the central ring in a boat conformation. The folding angle between the two quinoline rings is 150.2 (1)°. The 14‐methyl substituent is in a quasi‐axial orientation with respect to the thia­zine ring. The S?N—Cmethyl angle is 120.1 (1)°.  相似文献   

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Svehla G 《Talanta》1970,17(12):1141
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Svehla G 《Talanta》1970,17(2):III
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《Analytical letters》2012,45(3):xiii-xvi
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Svehla G 《Talanta》1972,19(5):III-IIV
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Reversed-phase LC on C-18 bonded silica with a methanol–ammonium formate gradient was used to determine the main flavonoids in leaves of four species of the Leguminosae family. The detection modes were diode-array UV absorbance, fluorescence, and (tandem) mass spectrometry. LC–UV was used for a general screening, sub-classification, and the calculation of total flavonoid contents. LC–FLU was included to identify isoflavones on the basis of their native fluorescence. Most structural information regarding aglycons, sugar moieties, and acidic groups was derived from LC–MS in both the full-scan and extracted-ion mode, using negative-ion atmospheric pressure chemical ionization. MS/MS did not provide much additional information, because the same fragments were observed as in full-scan MS.In T. pratense and T. repens, the main constituents were flavonoid glucoside–(di)malonates, while T. dubium and L. corniculatus mainly contained flavonoid (di)glycosides. Satellite sets comprising an aglycon, the glucoside and glucoside–malonates or –acetates, were abundantly present only in T. pratense. Generally speaking, the main aglycons and sugars in the four plant species are surprisingly different. In addition, while the results for T. pratense are similar to those reported in the literature, there is little agreement in the case of the other species. Finally, total flavonoid contents ranged from 50–65 mg/g for L. corniculatus and T. dubium, to 15 mg/g for T. pratense and only 1 mg/g for T. repens.  相似文献   

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The antioxidant properties of five different extracts (Et?O, CHCl?, EtOAc, n-BuOH, and H?O) of Ocimum basilicum L. and Origanum vulgare L. were studied. Antioxidant activity was assessed in six different model systems. Free radical scavenging capacity (RSC) was evaluated by measuring the scavenging capacity of extracts on DPPH, NO, O??? and OH radical, as well as on hydrogen peroxide (H?O?). In addition, the protective effects on lipid peroxidation in liposomes (LPx) were evaluated by TBA-assay using the Fe2?/ascorbate induction system. The amount of total phenolic compounds and content of total flavonoids was also determined. EtOAc, n-BuOH and H?O extracts of O. basilicum and O. vulgare expressed very strong scavenger activity. Furthermore, the mentioned extracts showed notable inhibition of LPx. On the other hand, Et?O and CHCl? extracts showed much weaker effect in the neutralization of DPPH, NO and O??? radicals and the neutralization of H?O?. When examining the production of OH radicals and inhibition of LPx, the Et?O and CHCl? extracts showed weak prooxidative properties. The observed differences in antioxidant activity could be partially explained by the levels of phenolics and flavonoids in the investigated O. basilicum and O. vulgare extracts.  相似文献   

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The isolation and the determination of structure and relative configuration of a new iridoid diglycoside 1 is described.  相似文献   

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