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3,4-Secolupa-4(23),20(29)-diene-3,28-dioic acid
ChemFaces products have been cited in many studies from excellent and top scientific journals
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According to end customer requirements, ChemFaces provide solvent format. This solvent format of product intended use: Signaling Inhibitors, Biological activities or Pharmacological activities.
Size /Price /Stock |
10 mM * 1 mL in DMSO / Inquiry |
Other Packaging |
*Packaging according to customer requirements(100uL/well, 200uL/well and more), and Container use Storage Tube With Screw Cap |
More articles cited ChemFaces products.
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Related Screening Libraries
Size /Price /Stock |
10 mM * 100 uL in DMSO / Inquiry / In-stock 10 mM * 1 mL in DMSO / Inquiry / In-stock
|
Related Libraries |
|
Description: |
3,4-Secolupa-4(23),20(29)-diene-3,28-dioic acid exhibits potent inhibition of superoxide-anion generation with 86.9 ± 2.8% inhibition at 1 uM. |
In vitro: |
Planta Med. 2017 Jul 12. | Bioactive Triterpenoids from the Leaves and Twigs of Lithocarpus litseifolius and L. corneus.[Pubmed: 28701018] | METHODS AND RESULTS:
Phytochemical investigation of the leaves and twigs of Lithocarpus litseifolius and Lithocarpus corneus resulted in the isolation of four new triterpenoids (1-4), three triterpenoids (5-7) isolated from a natural source for the first time, and six known compounds (8-13). In addition, four known triterpenoids (14-17) were isolated from L. corneus. Compound 1 is a 3,4-seco-lupane-type triterpenoid, and compounds 2-4 are lupane-type triterpenoids in different oxidation states. The structures of all isolated compounds were identified by spectroscopic methods, especially NMR and mass spectrometry data. The absolute configuration of 2 and 3 was confirmed by X-ray single crystallographic analysis. The anti-inflammatory activities of 1-17 and anti-HIV activities of 2-17 were evaluated.
CONCLUSIONS:
Among them, 3-epi-betulinic acid (8) showed a strong anti-HIV activity comparable to abacavir, a drug used for treating HIV/AIDS. 3,4-seco-4(23),20(29)-lupadiene-3,28-dioic acid (3,4-Secolupa-4(23),20(29)-diene-3,28-dioic acid ,5) exhibited potent inhibition of superoxide-anion generation with 86.9 ± 2.8% inhibition at 1 μM. |
|
3,4-Secolupa-4(23),20(29)-diene-3,28-dioic acid Description
Source: |
The leaves and twigs of Lithocarpus litseifolius. |
Solvent: |
Chloroform, Dichloromethane, Ethyl Acetate, DMSO, Acetone, etc. |
Storage: |
Providing storage is as stated on the product vial and the vial is kept tightly sealed, the product can be stored for up to 24 months(2-8C).
Wherever possible, you should prepare and use solutions on the same day. However, if you need to make up stock solutions in advance, we recommend that you store the solution as aliquots in tightly sealed vials at -20C. Generally, these will be useable for up to two weeks. Before use, and prior to opening the vial we recommend that you allow your product to equilibrate to room temperature for at least 1 hour.
Need more advice on solubility, usage and handling? Please email to: service@chemfaces.com
|
After receiving: |
The packaging of the product may have turned upside down during transportation, resulting in the natural compounds adhering to the neck or cap of the vial. take the vial out of its packaging and gently shake to let the compounds fall to the bottom of the vial. for liquid products, centrifuge at 200-500 RPM to gather the liquid at the bottom of the vial. try to avoid loss or contamination during handling. |
ChemFaces New Products and Compounds
Recently, ChemFaces products have been cited in many studies from excellent and top scientific journals
Cell. 2018 Jan 11;172(1-2):249-261.e12. doi: 10.1016/j.cell.2017.12.019.
IF=36.216(2019)PMID: 29328914
Cell Metab. 2020 Mar 3;31(3):534-548.e5. doi: 10.1016/j.cmet.2020.01.002.
IF=22.415(2019)PMID: 32004475
Mol Cell. 2017 Nov 16;68(4):673-685.e6. doi: 10.1016/j.molcel.2017.10.022.
IF=14.548(2019)PMID: 29149595
ACS Nano. 2018 Apr 24;12(4): 3385-3396. doi: 10.1021/acsnano.7b08969.
IF=13.903(2019)PMID: 29553709
Nature Plants. 2016 Dec 22;3: 16206. doi: 10.1038/nplants.2016.205.
IF=13.297(2019)PMID: 28005066
Sci Adv. 2018 Oct 24;4(10): eaat6994. doi: 10.1126/sciadv.aat6994.
IF=12.804(2019)PMID: 30417089
Calculate Dilution Ratios(Only for Reference)
|
1 mg |
5 mg |
10 mg |
20 mg |
25 mg |
1 mM |
2.1245 mL |
10.6227 mL |
21.2454 mL |
42.4908 mL |
53.1135 mL |
5 mM |
0.4249 mL |
2.1245 mL |
4.2491 mL |
8.4982 mL |
10.6227 mL |
10 mM |
0.2125 mL |
1.0623 mL |
2.1245 mL |
4.2491 mL |
5.3114 mL |
50 mM |
0.0425 mL |
0.2125 mL |
0.4249 mL |
0.8498 mL |
1.0623 mL |
100 mM |
0.0212 mL |
0.1062 mL |
0.2125 mL |
0.4249 mL |
0.5311 mL |
* Note: If you are in the process of experiment, it's need to make the dilution ratios of the samples. The dilution data of the sheet for your reference. Normally, it's can get a better solubility within lower of Concentrations.
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