# trans-6-shogaol

> chemical compound

**Wikidata**: [Q2746448](https://www.wikidata.org/wiki/Q2746448)  
**Source**: https://4ort.xyz/entity/trans-6-shogaol


## References

1. [No public or meaningful name is available]. ECHA Substance Infocard database
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3. ChEBI release 2020-09-01
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7. Shogaol. ChemSpider
8. [6]-Shogaol. ChEBI
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13. Structural Characterization of Terpenoids from Abies holophylla Using Computational and Statistical Methods and Their Biological Activities
14. Securinega Alkaloids from the Twigs of Securinega suffruticosa and Their Biological Activities
15. Chemistry, antioxidant and antimicrobial investigations on essential oil and oleoresins of Zingiber officinale
16. A new method for the determination of pungent compounds in ginger (Zingiber officinale)
17. Studies on the constituents of ginger (Zingiber officinale Roscoe) by GC-MS (author's transl)
18. Fresh organically grown ginger (Zingiber officinale): composition and effects on LPS-induced PGE2 production.
19. High-performance liquid chromatographic separation of pungency components of ginger
20. High-performance liquid chromatography–electrospray mass spectrometric analysis of pungent constituents of ginger
21. Crude Drug Processing by Far-infrared Treatment. II. Chemical Fluctuation of the Constituents during the Drying of Zingiberis Rhizoma
22. Changes in the amounts of [6]gingerol and derivatives during a culture cycle of ginger, Zingiber officinale
23. Pungent compounds of ginger (Zingiber officinale roscoe) extracted by liquid carbon dioxide
24. Mutagenicity of gingerol and shogaol and antimutagenicity of zingerone in Salmonella/microsome assay
25. Molluscicidal and antischistosomal activities of Zingiber officinale
26. The effect of ginger on serotonin induced hypothermia and diarrhea
27. A re-examination of gingerol, shogaol, and zingerone, the pungent principles of ginger (Zingiber officinale Roscoe)
28. 5-HT3 receptor blocking activity of arylalkanes isolated from the rhizome of Zingiber officinale.
29. Antiallergic potential on RBL-2H3 cells of some phenolic constituents of Zingiber officinale (ginger).
30. Stomachic principles in ginger. II. Pungent and anti-ulcer effects of low polar constituents isolated from ginger, the dried rhizoma of Zingiber officinale Roscoe cultivated in Taiwan. The absolute stereostructure of a new diarylheptanoid
31. Stomachic principles in ginger. III. An anti-ulcer principle, 6-gingesulfonic acid, and three monoacyldigalactosylglycerols, gingerglycolipids A, B, and C, from Zingiberis Rhizoma originating in Taiwan
32. Pharmacognostic studies on ginger and related drugs--part 1: five sulfonated compounds from Zingiberis rhizome (Shokyo)
33. Diarylheptanoids from rhizomes ofZingiber officinale
34. Inhibition of Prostaglandin and Leukotriene Biosynthesis by Gingerols and Diarylheptanoids
35. Application of two rapid techniques of column chromatography to separate the pungent principles of ginger,Zingiber officinale Roscoe
36. Antioxidant Effects of Some Ginger Constituents
37. Shogaols from Zingiber officinale protect IMR32 human neuroblastoma and normal human umbilical vein endothelial cells from beta-amyloid(25-35) insult
38. Shogaols from Zingiber officinale as promising antifouling agents
39. Component of Zingiber officinale that improves the enhancement of small intestinal transport
40. Gastrointestinal motility enhancing effect of ginger and its active constituents
41. Increased growth inhibitory effects on human cancer cells and anti-inflammatory potency of shogaols from Zingiber officinale relative to gingerols.
42. Ginger ingredients reduce viability of gastric cancer cells via distinct mechanisms
43. Ginger inhibits cell growth and modulates angiogenic factors in ovarian cancer cells
44. Constituents of Zingiber aromaticum and Their CYP3A4 and CYP2D6 Inhibitory Activity.
45. Sesquiterpenes and flavonol glycosides from Zingiber aromaticum and their CYP3A4 and CYP2D6 inhibitory activities
46. Shogaol. PubChem
47. [Source](http://www.alfa-chemistry.com/6-shogaol-cas-555-66-8-item-1434.htm)
48. UMLS 2023
49. UniChem