Zingibroside R1CAS# 80930-74-1 |
2D Structure
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3D structure
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Cas No. | 80930-74-1 | SDF | Download SDF |
PubChem ID | 10395524 | Appearance | Powder |
Formula | C42H66O14 | M.Wt | 795.0 |
Type of Compound | Triterpenoids | Storage | Desiccate at -20°C |
Solubility | Soluble in Chloroform,Dichloromethane,Ethyl Acetate,DMSO,Acetone,etc. | ||
Chemical Name | (2S,3S,4S,5R,6R)-6-[[(3S,4aR,6aR,6bS,8aS,12aS,14aR,14bR)-8a-carboxy-4,4,6a,6b,11,11,14b-heptamethyl-1,2,3,4a,5,6,7,8,9,10,12,12a,14,14a-tetradecahydropicen-3-yl]oxy]-3,4-dihydroxy-5-[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxyoxane-2-carboxylic acid | ||
SMILES | CC1(CCC2(CCC3(C(=CCC4C3(CCC5C4(CCC(C5(C)C)OC6C(C(C(C(O6)C(=O)O)O)O)OC7C(C(C(C(O7)CO)O)O)O)C)C)C2C1)C)C(=O)O)C | ||
Standard InChIKey | WJQOMUVKRDJBGZ-COUNGWPASA-N | ||
Standard InChI | InChI=1S/C42H66O14/c1-37(2)14-16-42(36(51)52)17-15-40(6)20(21(42)18-37)8-9-24-39(5)12-11-25(38(3,4)23(39)10-13-41(24,40)7)54-35-32(29(47)28(46)31(55-35)33(49)50)56-34-30(48)27(45)26(44)22(19-43)53-34/h8,21-32,34-35,43-48H,9-19H2,1-7H3,(H,49,50)(H,51,52)/t21-,22+,23-,24+,25-,26+,27-,28-,29-,30+,31-,32+,34-,35+,39-,40+,41+,42-/m0/s1 | ||
General tips | For obtaining a higher solubility , please warm the tube at 37 ℃ and shake it in the ultrasonic bath for a while.Stock solution can be stored below -20℃ for several months. We recommend that you prepare and use the solution on the same day. However, if the test schedule requires, the stock solutions can be prepared in advance, and the stock solution must be sealed and stored below -20℃. In general, the stock solution can be kept for several months. Before use, we recommend that you leave the vial at room temperature for at least an hour before opening it. |
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About Packaging | 1. The packaging of the product may be reversed during transportation, cause the high purity compounds to adhere to the neck or cap of the vial.Take the vail out of its packaging and shake gently until the compounds fall to the bottom of the vial. 2. For liquid products, please centrifuge at 500xg to gather the liquid to the bottom of the vial. 3. Try to avoid loss or contamination during the experiment. |
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Shipping Condition | Packaging according to customer requirements(5mg, 10mg, 20mg and more). Ship via FedEx, DHL, UPS, EMS or other couriers with RT, or blue ice upon request. |
Description | 1. Zingibroside R1 has anti-HIV-1 activity. |
Targets | HIV |
Zingibroside R1 Dilution Calculator
Zingibroside R1 Molarity Calculator
1 mg | 5 mg | 10 mg | 20 mg | 25 mg | |
1 mM | 1.2579 mL | 6.2893 mL | 12.5786 mL | 25.1572 mL | 31.4465 mL |
5 mM | 0.2516 mL | 1.2579 mL | 2.5157 mL | 5.0314 mL | 6.2893 mL |
10 mM | 0.1258 mL | 0.6289 mL | 1.2579 mL | 2.5157 mL | 3.1447 mL |
50 mM | 0.0252 mL | 0.1258 mL | 0.2516 mL | 0.5031 mL | 0.6289 mL |
100 mM | 0.0126 mL | 0.0629 mL | 0.1258 mL | 0.2516 mL | 0.3145 mL |
* Note: If you are in the process of experiment, it's necessary to make the dilution ratios of the samples. The dilution data above is only for reference. Normally, it's can get a better solubility within lower of Concentrations. |
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Saponins composition of rhizomes, taproots, and lateral roots of Satsuma-ninjin (Panax japonicus).[Pubmed:23291557]
Chem Pharm Bull (Tokyo). 2013;61(3):344-50. Epub 2012 Dec 28.
A new dammarane-type triterpenoid saponin, chikusetsusaponin VII (1), and nineteen known triterpenoid saponins, ginsenoside Rb1 (2), ginsenoside Rb3 (3), ginsenoside Rc (4), ginsenoside Rd (5), ginsenoside Re (6), ginsenoside Rg1 (7), ginsenoside Rg2 (8), ginsenoside Rh1 (9), notoginsenoside R1 (10), notoginsenoside R2 (11), notoginsenoside Fe (12), chikusetsusaponin IVa (13), chikusetsusaponin IV (14), chikusetsusaponin V (15), chikusetsusaponin VI (16), chikusetsusaponin FK6 (17), gypenoside XVII (18), 28-desglucosylchikusetsusaponin IV (19), and Zingibroside R1 (20), were isolated from rhizomes, taproots, and lateral roots of Panax japonicus C. A. Meyer, so-called "Satsuma-ninjin," grown in southern Miyazaki Prefecture, Japan. The structure of new chikusetsusaponin VII was elucidated on the basis of spectral and physicochemical evidence. Although the chemical composition of the rhizome was found to be similar to that of the "Chikusetsu-ninjin," the saponin composition of lateral root of "Satsuma-ninjin" was found to be close to that of lateral root of P. ginseng. The total yield of oleanolic acid saponins of the taproot was less than that of rhizome, but the total yield of dammarane-type saponins of the taproot was found to be similar to that of rhizome.
Inhibitory effect of some triterpenoid saponins on glucose transport in tumor cells and its application to in vitro cytotoxic and antiviral activities.[Pubmed:8073091]
Planta Med. 1994 Jun;60(3):240-3.
The effects of some triterpenoid saponins on glucose transport in Ehrlich ascites tumor (EAT) cells were examined by measuring 2-deoxy-D-glucose (2-DG) uptake. The correlation of the effects with those on the growth of a human T-cell line (MT-4) and the replication of human immunodeficiency virus in MT-4 cells was also studied. Chikusetsusaponin Ia isolated from rhizomes of Panax japonicus C. A. Meyer (Araliaceae) inhibited the 2-DG uptake (IC50 = 76.3 microM) in a competitive fashion with respect to 2-DG (Ki = 0.32 mM) and the growth of MT-4 cells with CC50 of 84.4 microM, whereas it did not show any significant anti-HIV-1 activity. In contrast, Zingibroside R1 isolated from rhizomes of Panax zingiberensis Wu et Feng (Araliaceae) showed some anti-HIV-1 activity, which was found to be superior to that of glycyrrhizin, as well as the inhibitory effects on the 2-DG uptake by EAT cells (IC50 = 91.3 microM) and the growth of MT-4 cells (CC50 = 46.2 microM).