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人參皂苷Rb1

    
分析標準品,HPLC≥98%

Ginsenoside Rb1

源葉
B21050 一鍵復制產品信息
41753-43-9
C54H92O23
1109.29
MFCD00133367
貨號 規格 價格 上海 北京 武漢 南京 購買數量
B21050-20mg一口價
分析標準品,HPLC≥98% ¥80.00 >10 4 - 6
B21050-100mg
分析標準品,HPLC≥98% ¥420.00 >10 3 - 3
B21050-500mg
分析標準品,HPLC≥98% ¥1500.00 >10 - - -
產品介紹 參考文獻(211篇) 質檢證書(COA) 摩爾濃度計算器 相關產品

產品介紹

熔點: 197-198°C
沸點: 1146°C at 760mmHg
比旋光度: (c=0.91,甲醇)+12.42°
溶解性: DMSO:80mg/ml
敏感性: 易吸潮
儲存條件: 2-8℃
注意: 部分產品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。

參考文獻(211篇)

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[IF=3.8] Chen Yue et al."Impact of ginsenoside Rb1 on gut microbiome and associated changes in pharmacokinetics in rats."Scientific Reports.2024 Sep;14(1):1-12 180. [IF=4.3] Wu Dehua et al."Temperature seasonality and soil phosphorus availability shape ginseng quality via regulating ginsenoside contents."BMC PLANT BIOLOGY.2024 Dec;24(1):1-12 179. [IF=8.5] Jiabao Feng et al."Analysis of sediment re-formation factors after ginseng beverage clarification based on XGBoost machine learning algorithm."FOOD CHEMISTRY.2024 Sep;:141304 178. [IF=4.8] Zhengchao Ji et al."Holistic quality assessment and monitoring of YiXinShu capsule based on three-dimensional fingerprints combined with quantitative analysis, antioxidant activity and chemometrics."JOURNAL OF ETHNOPHARMACOLOGY.2024 Dec;335:118630 177. [IF=3.5] Hong Yinan et al."Biotransformation of ginsenoside compound K using β-glucosidase in deep eutectic solvents."BIOPROCESS AND BIOSYSTEMS ENGINEERING.2024 Jun;:1-11 176. [IF=6.8] Yun Zhao et al."The plant extract PNS mitigates atherosclerosis via promoting Nrf2-mediated inhibition of ferroptosis through reducing USP2-mediated Keap1 deubiquitination."BRITISH JOURNAL OF PHARMACOLOGY.2024 Sep;: 175. [IF=2.8] Liang Liwen et al."Identification of Potential α-Glucosidase Inhibitors from American Ginseng Processed Products by UHPLC-Q-Orbitrap/MS and Molecular Docking."Food Biophysics.2024 Jun;:1-13 174. [IF=3.4] Yanqiu Zheng et al."WeiNaiAn capsule attenuates intestinal mucosal injury and regulates gut microbiome in indomethacin-induced rat."INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY.2024 Jun;:106609 173. [IF=4.1] Yue Gao et al."Biotransformation of Ginsenoside Rb1 to Ginsenoside Rd and 7 Rare Ginsenosides Using Irpex lacteus with HPLC-HRMS/MS Identification."ACS Omega".2024;XXXX(XXX):XXX-XXX 172. 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[IF=6.3] Mengya Zhao et al."Methanol-involved heterogeneous transformation of ginsenoside Rb1 to rare ginsenosides using heteropolyacids embedded in mesoporous silica with HPLC-MS investigation."Journal of Ginseng Research".2024 Feb;: 167. [IF=8.6] Minghui Li et al."Natural deep eutectic solvents-based selective extraction of saponins from Panax notoginseng: Process optimization, chemical profiling, and bioactivities evaluation."SEPARATION AND PURIFICATION TECHNOLOGY".2024 Aug;341:126882 166. [IF=5.2] Yanbo Hu et al."Targeted preparation of six rare ginsenosides using two β-glucosidases from Bifidobacterium adolescentis."Food Bioscience".2024 Jun;59:104192 165. [IF=5.6] Bin Xu et al."Identification of ginsenoside components from adventitious root of ginseng and their hypoglycemic effects on T1DM mice: A network pharmacology and animal experiment study."Journal of Functional Foods".2024 May;116:106083 164. [IF=1.6] Dai Tingting et al."Prediction of molecular mechanism of processed ginseng in the treatment of heart failure based on network pharmacology and molecular docking technology."MEDICINE.2023 Dec;102(49):e36576 163. [IF=8.8] Haiyang Li et al."Research on rapid quality identification method of Panax notoginseng powder based on artificial intelligence sensory technology and multi-source information fusion technology."FOOD CHEMISTRY.2024 May;440:138210 162. [IF=17.1] Shihui Li et al."Supramolecular Integration of Multifunctional Nanomaterial by Mannose-Decorated Azocalixarene with Ginsenoside Rb1 for Synergistic Therapy of Rheumatoid Arthritis."ACS Nano.2023;17(24):25468–25482 161. [IF=4.1] Mengya Zhao et al."Heterogeneous Transformation of Ginsenoside Rb1 with Ethanol Using Heteropolyacid-Loaded Mesoporous Silica and Identification by HPLC-MS."ACS Omega.2023;8(45):43285–43294 160. 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[IF=3.408] Ping Di et al."LED Light Irradiations Differentially Affect the Physiological Characteristics, Ginsenoside Content, and Expressions of Ginsenoside Biosynthetic Pathway Genes in Panax ginseng."Agriculture-Basel.2023 Apr;13(4):807 139. [IF=4.927] Junchen Liu et al."Anti-Inflammatory Activity of Panax notoginseng Flower Saponins Quantified Using LC/MS/MS."MOLECULES.2023 Jan;28(5):2416 138. [IF=5.561] Xueyan Yuan et al."Metabolite Fingerprinting for Identification of Panax ginseng Metabolites Using Internal Extractive Electrospray Ionization Mass Spectrometry."Foods.2023 Jan;12(6):1152 137. [IF=6.208] Long Chen et al."Ginsenoside Rb1 Improves Post-Cardiac Arrest Myocardial Stunning and Cerebral Outcomes by Regulating the Keap1/Nrf2 Pathway."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2023 Jan;24(5):5059 136. 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Chen using supercritical fluid chromatography–mass spectrometry and chemical pattern recognition."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2022 Nov;221:115029 119. [IF=5.168] Pan Wang et al."Discovery and characterization of novel ATP citrate lyase inhibitors from natural products by a luminescence-based assay."CHEMICO-BIOLOGICAL INTERACTIONS.2022 Nov;367:110199 118. [IF=5.846] Li-li Hong et al."Tentative exploration of pharmacodynamic substances: Pharmacological effects, chemical compositions, and multi-components pharmacokinetic characteristics of ESZWD in CHF-HKYd rats.."Frontiers in Cardiovascular Medicine.2022 Sep;9:913661- 117. [IF=5.988] Tiantian Liu et al."Study on the mechanism of American ginseng extract for treating type 2 diabetes mellitus based on metabolomics.."Frontiers in Pharmacology.2022 Sep;13:960050-960050 116. 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[IF=1.885] Guo Na et al."Comparison of the Saponins in Three Processed American Ginseng Products by Ultra-High Performance Liquid Chromatography-Quadrupole Orbitrap Tandem Mass Spectrometry and Multivariate Statistical Analysis."International Journal of Analytical Ch 107. [IF=6.576] Rensong Huang et al."Studies on Bioactive Components of Red Ginseng by UHPLC-MS and Its Effect on Lipid Metabolism of Type 2 Diabetes Mellitus."Frontiers in Nutrition. 2022; 9: 865070 106. [IF=6.576] Zhi-man Li et al."Transformation Mechanism of Rare Ginsenosides in American Ginseng by Different Processing Methods and Antitumour Effects."Frontiers in Nutrition. 2022; 9: 833859 105. [IF=5.34] Dong Shao et al."Identification of the active compounds and functional mechanisms of Jinshui Huanxian formula in pulmonary fibrosis by integrating serum pharmacochemistry with network pharmacology."PHYTOMEDICINE. 2022 Jul;102:154177 104. [IF=4.35] Di Qu et al."Analysis of Key Chemical Components in Aqueous Extract Sediments of Panax Ginseng at Different Ages."Foods. 2022 Jan;11(8):1161 103. [IF=5.811] He Zhang et al."Prevention Effect of Protopanaxadiol-Type Saponins Saponins and Protopanaxatriol-Type Saponins on Myelosuppression Mice Induced by Cyclophosphamide.."Frontiers in Pharmacology. 2022 Apr;13:845034-845034 102. [IF=6.06] Zhu Zhu et al."Target engagement of ginsenosides in mild cognitive impairment using mass spectrometry-based drug affinity responsive target stability."J Ginseng Res. 2021 Dec;: 101. [IF=3.373] Yu Yao et al."UPLC–MS/MS method for the determination of the herb composition of Tangshen formula and the in vivo pharmacokinetics of its metabolites in rat plasma."Phytochemical Analysis. 2021 Dec 14 100. [IF=7.514] Di Qu et al."Sediment formation and analysis of the main chemical components of aqueous extracts from different parts of ginseng roots."Food Chem. 2022 Jan;:132146 99. [IF=6.06] Qingxia Huang et al."Major ginsenosides from Panax ginseng promote aerobic cellular respiration and SIRT1-mediated mitochondrial biosynthesis in cardiomyocytes and neurons."J Ginseng Res. 2022 Feb;: 98. [IF=2.419] Yinping Jin et al."Dynamic changes of ginsenosides in Panax quinquefolius fruit at different development stages measured by UHPLC-Orbitrap MS."Rapid Communications In Mass Spectrometry. 2022 Feb 17 97. [IF=3.105] Zhao Yan et al.Protopanaxadiol and Protopanaxatriol Ginsenosides Can Protect Against Aconitine-induced Injury in H9c2 Cells by Maintaining Calcium Homeostasis and Activating the AKT Pathway.J Cardiovasc Pharm. 2021 Nov;78(5):e690-e702 96. [IF=4.411] Aftab Shaukat et al.Ginsenoside Rb1 Mitigates Escherichia coli Lipopolysaccharide-Induced Endometritis through TLR4-Mediated NF-κB Pathway.Molecules. 2021 Jan;26(23):7089 95. [IF=1.934] Zhang Chen et al."Biotransformation of ginsenoside Rc to Rd by endophytic bacterium Bacillus sp. G9y isolated from Panax quinquefolius."Anton Leeuw Int J G. 2021 Apr;114(4):437-444 94. [IF=2.408] Fang-Tong Li et al."In Vitro Effects of Ginseng and the Seed of Zizyphus jujuba var. spinosa on Gut Microbiota of Rats with Spleen Deficiency."Chem Biodivers. 2020 Sep;17(9):e2000199 93. [IF=2.914] Aftab Shaukat et al."Ginsenoside Rb 1: A novel therapeutic agent in Staphylococcus aureus-induced Acute Lung Injury with special reference to Oxidative stress and Apoptosis."Microb Pathogenesis. 2020 Jun;143:104109 92. [IF=2.914] Aftab Shaukat et al."Ginsenoside Rb1 ameliorates Staphylococcus aureus-induced Acute Lung Injury through attenuating NF-κB and MAPK activation."Microb Pathogenesis. 2019 Jul;132:302 91. [IF=3.21] Ma Zhu et al."Transformation of ginsenoside via deep eutectic solvents based on choline chloride as an enzymatic reaction medium."Bioproc Biosyst Eng. 2020 Jul;43(7):1195-1208 90. 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