Structural characterization and discrimination of Ophiopogon japonicas (Liliaceae) from different geographical origins based on metabolite profiling analysis.
暂无分享,去创建一个
Jian Yang | Sheng Wang | Luqi Huang | Lan-Ping Guo | Chuan-Zhi Kang | Li‐ping Kang | Ai-ping Deng | Hongyang Wang | Chaogeng Lyu | Ya-li He
[1] Jian-wei Mao,et al. Enrichment and separation of steroidal saponins from the fibrous roots of Ophiopogon japonicus using macroporous adsorption resins , 2019, RSC advances.
[2] Jian Yang,et al. A practical protocol for comprehensive evaluation of sulfur-fumigation of Gastrodia Rhizoma using metabolome and health risk assessment analysis. , 2017, Journal of hazardous materials.
[3] Huasheng Peng,et al. Structural characterization and discrimination of the Paris polyphylla var. yunnanensis and Paris vietnamensis based on metabolite profiling analysis , 2017, Journal of pharmaceutical and biomedical analysis.
[4] Tingting Wang,et al. Effects of drying processes on starch-related physicochemical properties, bioactive components and antioxidant properties of yam flours. , 2017, Food chemistry.
[5] L. Cao,et al. Comparison of bioactive components and pharmacological activities of ophiopogon japonicas extracts from different geographical origins , 2017, Journal of pharmaceutical and biomedical analysis.
[6] A. Khan,et al. Homo-aro-cholestane, furostane and spirostane saponins from the tubers of Ophiopogon japonicus. , 2017, Phytochemistry.
[7] Feng Liu,et al. Homoisoflavonoids and the Antioxidant Activity of Ophiopogon japonicus Root , 2017, Iranian journal of pharmaceutical research : IJPR.
[8] N. Dat,et al. Cytotoxic Homoisoflavonoids from Ophiopogon japonicus Tubers. , 2017, Chemical & pharmaceutical bulletin.
[9] Wei Zhu,et al. Evaluation of anti-inflammatory activity of compounds isolated from the rhizome of Ophiopogon japonicas , 2017, BMC Complementary and Alternative Medicine.
[10] Bin Liu,et al. New sesquiterpenoid glycoside and phenylpropanoid glycosides from the tuber of Ophiopogon japonicus , 2016, Journal of Asian natural products research.
[11] Yi-Tao Wang,et al. Ophiopogon japonicus--A phytochemical, ethnomedicinal and pharmacological review. , 2016, Journal of ethnopharmacology.
[12] P. Sun,et al. Determination of Saponin Content in Hang Maidong and Chuan Maidong via HPLC-ELSD Analysis , 2016, Journal of analytical methods in chemistry.
[13] J. V. Sancho,et al. Metabolomic approaches for orange origin discrimination by ultra-high performance liquid chromatography coupled to quadrupole time-of-flight mass spectrometry. , 2014, Food chemistry.
[14] L. Kang,et al. Two novel furostanol saponins from the tubers of Ophiopogon japonicus , 2013, Journal of Asian natural products research.
[15] Kewu Zeng,et al. Cytotoxic steroidal saponins from Ophiopogon japonicus , 2013, Steroids.
[16] S. Cao,et al. Soluble Sugar Content and Metabolism as Related to the Heat-Induced Chilling Tolerance of Loquat Fruit During Cold Storage , 2013, Food and Bioprocess Technology.
[17] L. Kang,et al. Steroidal saponins from the tuber of Ophiopogon japonicus , 2012, Steroids.
[18] Kewu Zeng,et al. Anti-inflammatory homoisoflavonoids from the tuberous roots of Ophiopogon japonicus. , 2012, Fitoterapia.
[19] Guangji Wang,et al. Rapid identification of ophiopogonins and ophiopogonones in Ophiopogon japonicus extract with a practical technique of mass defect filtering based on high resolution mass spectrometry. , 2012, Journal of chromatography. A.
[20] Yining Lin,et al. Characterization of homoisoflavonoids in different cultivation regions of Ophiopogon japonicus and related antioxidant activity. , 2010, Journal of pharmaceutical and biomedical analysis.
[21] J. Qi,et al. New features on the fragmentation patterns of homoisoflavonoids in Ophiopogon japonicus by high-performance liquid chromatography/diode-array detection/electrospray ionization with multi-stage tandem mass spectrometry. , 2010, Rapid communications in mass spectrometry : RCM.
[22] Tao Zhang,et al. Two novel furostanol saponins from Ophiopogon japonicus , 2009, Journal of Asian natural products research.
[23] J. Kou,et al. Antithrombotic activities of aqueous extract from Radix Ophiopogon japonicus and its two constituents. , 2006, Biological & pharmaceutical bulletin.
[24] M. Ye,et al. Analysis of homoisoflavonoids in Ophiopogon japonicus by HPLC-DAD-ESI-MS , 2005, Journal of the American Society for Mass Spectrometry.