Two new dihydroflavonoids were obtained from the traditional Chinese medicinal herb Patrinia villosa Juss. Their structures were elucidated as (2S)-5, 7, 2', 6'-tetrahydroxy-6, 8-di (γ, γ-dimethylallyl) flavan...Two new dihydroflavonoids were obtained from the traditional Chinese medicinal herb Patrinia villosa Juss. Their structures were elucidated as (2S)-5, 7, 2', 6'-tetrahydroxy-6, 8-di (γ, γ-dimethylallyl) flavanone (1) and (2S)-5, 7, 2', 6'-tetrahydroxy-6-1avandulylated flavanone (2) by spectroscopic methods including UV, IR, HR-TOF-MS, 1D NMR and 2D NMR techniques.展开更多
Alzheimer’s disease(AD)is a progressive neurodegenerative disorder associated with global deterioration of intellectual function,including memory,learning,orientation,language,comprehension and judgment.Given the pre...Alzheimer’s disease(AD)is a progressive neurodegenerative disorder associated with global deterioration of intellectual function,including memory,learning,orientation,language,comprehension and judgment.Given the prevalence of AD and the lack of effective long-term therapies,there is a pressing need to discover viable leads that can be developed into clinically approved drugs with disease-modifying effects.The analysis of current reported literatures confirms the importance of Patrinia villosa J.as candidate against AD.Hence,the compound-disease target network based on the methods of network pharmacology prediction was established in this paper.The aim is to explore potential compounds with marked effect on AD in P.villosa.The result showed that the most effective compound in this plant might be threo-(7R,8R)-guaiacyl-glycerol-β-O-4′-dihydroconiferyl ether,and the most potential target might be Maltose-binding periplasmic.展开更多
Two new dihydroflavonoids named villosin A and viUosin B were obtained from the traditional Chinese medicinal herb Patrinia viUosa Juss. Their structures were elucidated as (2S)-5, 2', 6'-trihydroxy-2", 2"-dimet...Two new dihydroflavonoids named villosin A and viUosin B were obtained from the traditional Chinese medicinal herb Patrinia viUosa Juss. Their structures were elucidated as (2S)-5, 2', 6'-trihydroxy-2", 2"-dimethylpyrano [5", 6": 6, 7]flavanone 1 and (2S, 3"S)-5, 2', 6'- trihydroxy-3"-γ, γ-dimethylallyl-2", 2"-dimethyl-3", 4"-dihydropyrano [5", 6": 6, 7] flavanone 2 by spectroscopic methods including UV, IR, HR-TOF- MS, 1D NMR and 2D NMR techniques.展开更多
文摘Two new dihydroflavonoids were obtained from the traditional Chinese medicinal herb Patrinia villosa Juss. Their structures were elucidated as (2S)-5, 7, 2', 6'-tetrahydroxy-6, 8-di (γ, γ-dimethylallyl) flavanone (1) and (2S)-5, 7, 2', 6'-tetrahydroxy-6-1avandulylated flavanone (2) by spectroscopic methods including UV, IR, HR-TOF-MS, 1D NMR and 2D NMR techniques.
文摘Alzheimer’s disease(AD)is a progressive neurodegenerative disorder associated with global deterioration of intellectual function,including memory,learning,orientation,language,comprehension and judgment.Given the prevalence of AD and the lack of effective long-term therapies,there is a pressing need to discover viable leads that can be developed into clinically approved drugs with disease-modifying effects.The analysis of current reported literatures confirms the importance of Patrinia villosa J.as candidate against AD.Hence,the compound-disease target network based on the methods of network pharmacology prediction was established in this paper.The aim is to explore potential compounds with marked effect on AD in P.villosa.The result showed that the most effective compound in this plant might be threo-(7R,8R)-guaiacyl-glycerol-β-O-4′-dihydroconiferyl ether,and the most potential target might be Maltose-binding periplasmic.
文摘Two new dihydroflavonoids named villosin A and viUosin B were obtained from the traditional Chinese medicinal herb Patrinia viUosa Juss. Their structures were elucidated as (2S)-5, 2', 6'-trihydroxy-2", 2"-dimethylpyrano [5", 6": 6, 7]flavanone 1 and (2S, 3"S)-5, 2', 6'- trihydroxy-3"-γ, γ-dimethylallyl-2", 2"-dimethyl-3", 4"-dihydropyrano [5", 6": 6, 7] flavanone 2 by spectroscopic methods including UV, IR, HR-TOF- MS, 1D NMR and 2D NMR techniques.