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incarvillea sinensis/silisyum dioksit

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[Chemical constituents from acetyl acetate extract fraction of Incarvillea delavayi].

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OBJECTIVE To investigate chemical constituents from acetyl acetate extract fraction of Incarvillea delavayi. METHODS The chemical constituents were isolated by chromatographic techniques with silica gel, Sephadex LH-20 and semipreparative HPLC. The structures of those compounds were identified by
For the purpose of preventative treatment for oxidative stress-mediated diseases and anti-aging, a high-antioxidant compound was isolated from the roots of Incarvillea younghusbandii Sprague for the first time through silica gel column chromatography, reverse-phase C18 column chromatography and
Using a bioassay-guided fractionation technique, two compounds were isolated from the roots of Incarvillea younghusbandii Sprague through silica gel, reverse-phase C18 column chromatography and reverse-phase HPLC. Their structures were identified as acteoside (1) and isoacteoside (2) by ESI-MS,

[Study on chemical constituents from Incarvillea arguta and their accelerating PC-12 cell differentiation].

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OBJECTIVE To study chemical constituents of Incarvillea arguta and their accelerating PC-12 cell differentiation. METHODS The constituents were isolated and repeatedly purified on silica gel column chromatography, and were identified on the basis of physicochemical and spectroscopic analysis. The

[Chemical constituents from roots of Incarvillea mairei].

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OBJECTIVE To study the chemical constituents of the roots of Incarvillea mairei. METHODS The chemical constituents were isolated and purified by chromatographic techniques with silica gel, Sephadex LH-20 column, and preparative TLC. Structures of the compounds were identified by spectroscopic
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