MeSH term | MeSH ID | Detail |
---|---|---|
Gastrointestinal Hemorrhage | D006471 | 27 associated lipids |
Geranial is a lipid of Prenol Lipids (PR) class. Geranial is associated with abnormalities such as Wiskott-Aldrich Syndrome. The involved functions are known as Anabolism, Oxidation, Process, geranial dehydrogenase activity and retinoid X receptor binding. Geranial often locates in soluble. The associated genes with Geranial are CDKN1A gene.
To understand associated biological information of Geranial, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.
Geranial is suspected in and other diseases in descending order of the highest number of associated sentences.
Disease | Cross reference | Weighted score | Related literature |
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We collected disease MeSH terms mapped to the references associated with Geranial
MeSH term | MeSH ID | Detail |
---|---|---|
Gastrointestinal Hemorrhage | D006471 | 27 associated lipids |
There are no associated biomedical information in the current reference collection.
Associated locations are in red color. Not associated locations are in black.
Location | Cross reference | Weighted score | Related literatures |
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Function | Cross reference | Weighted score | Related literatures |
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There are no associated biomedical information in the current reference collection.
Gene | Cross reference | Weighted score | Related literatures |
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There are no associated biomedical information in the current reference collection.
Authors | Title | Published | Journal | PubMed Link |
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Rice PJ and Coats JR | Insecticidal properties of several monoterpenoids to the house fly (Diptera: Muscidae), red flour beetle (Coleoptera: Tenebrionidae), and southern corn rootworm (Coleoptera: Chrysomelidae). | 1994 | J. Econ. Entomol. | pmid:7962947 |
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Segal R and Milo-Goldzweig I | The hemolytic activity of citral--II. Glutathione depletion in citral treated erythrocytes. | 1985 | Biochem. Pharmacol. | pmid:4062979 |
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Connor MJ and Smit MH | Terminal-group oxidation of retinol by mouse epidermis. Inhibition in vitro and in vivo. | 1987 | Biochem. J. | pmid:3663136 |
Jackson GM et al. | Comparison of the short-term hepatic effects of orally administered citral in Long Evans hooded and Wistar albino rats. | 1987 | Food Chem. Toxicol. | pmid:3623339 |
Moleyar V and Narasimham P | Effect of agar on the inhibitory activity of antifungal compounds citral and menthol. | 1987 | Indian J. Exp. Biol. | pmid:3453817 |
Moleyar V and Narasimham P | Mode of antifungal action of essential oil components citral and camphor. | 1987 | Indian J. Exp. Biol. | pmid:3452599 |
Sandbank M et al. | Sebaceous gland hyperplasia following topical application of citral. An ultrastructural study. | 1988 | Am J Dermatopathol | pmid:3228188 |
Connor MJ | Oxidation of retinol to retinoic acid as a requirement for biological activity in mouse epidermis. | 1988 | Cancer Res. | pmid:3191479 |
Abramovici A and Sandbank U | The mortician's mystery solved? | 1988 | N. Engl. J. Med. | pmid:3173450 |
pmid:29433490 | ||||
pmid:29374173 | ||||
Wang CY | [The active principles of Litsea cubeba in the treatment of coronary heart disease]. | 1985 | Zhong Yao Tong Bao | pmid:2935312 |
pmid:29072326 | ||||
Diliberto JJ et al. | Disposition of citral in male Fischer rats. | 1988 Sep-Oct | Drug Metab. Dispos. | pmid:2906597 |
pmid:28899514 | ||||
Asakawa Y et al. | Volatile Compounds from the Different Organs of Houttuynia cordata and Litsea cubeba (L. citriodora). | 2017 | J Oleo Sci | pmid:28701654 |
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pmid:28669187 | ||||
pmid:28644990 | ||||
pmid:28621584 | ||||
pmid:28351318 | ||||
pmid:28185379 | ||||
pmid:28176464 | ||||
Ishida T et al. | Terpenoid biotransformation in mammals. V. Metabolism of (+)-citronellal, (+-)-7-hydroxycitronellal, citral, (-)-perillaldehyde, (-)-myrtenal, cuminaldehyde, thujone, and (+-)-carvone in rabbits. | 1989 | Xenobiotica | pmid:2815827 |
pmid:28093037 | ||||
pmid:28088731 | ||||
pmid:28000503 | ||||
pmid:27979148 | ||||
Saito K et al. | An in vitro skin sensitization assay termed EpiSensA for broad sets of chemicals including lipophilic chemicals and pre/pro-haptens. | 2017 | Toxicol In Vitro | pmid:27965148 |
pmid:27859362 | ||||
pmid:27802570 | ||||
Tofiño-Rivera A et al. | Effect of Lippia alba and Cymbopogon citratus essential oils on biofilms of Streptococcus mutans and cytotoxicity in CHO cells. | 2016 | J Ethnopharmacol | pmid:27765606 |
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pmid:27742357 | ||||
pmid:27710890 | ||||
pmid:27607409 | ||||
Thomas ML et al. | Citral reduces breast tumor growth by inhibiting the cancer stem cell marker ALDH1A3. | 2016 | Mol Oncol | pmid:27592281 |
Adukwu EC et al. | Antimicrobial activity, cytotoxicity and chemical analysis of lemongrass essential oil (Cymbopogon flexuosus) and pure citral. | 2016 | Appl. Microbiol. Biotechnol. | pmid:27562470 |
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pmid:27494458 | ||||
Shi C et al. | Antimicrobial Activity and Possible Mechanism of Action of Citral against Cronobacter sakazakii. | 2016 | PLoS ONE | pmid:27415761 |
pmid:27270209 | ||||
pmid:27259704 | ||||
pmid:27173561 | ||||
pmid:27059866 | ||||
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pmid:26795242 | ||||
Hu Y et al. | Structures of Iridoid Synthase from Cantharanthus roseus with Bound NAD(+) , NADPH, or NAD(+) /10-Oxogeranial: Reaction Mechanisms. | 2015 | Angew. Chem. Int. Ed. Engl. | pmid:26768532 |
pmid:26740132 | ||||
pmid:26720890 | ||||
Jarvis GE et al. | Noncompetitive Inhibition of 5-HT3 Receptors by Citral, Linalool, and Eucalyptol Revealed by Nonlinear Mixed-Effects Modeling. | 2016 | J. Pharmacol. Exp. Ther. | pmid:26669427 |
pmid:26658749 | ||||
pmid:26587965 | ||||
Ka SM et al. | Citral alleviates an accelerated and severe lupus nephritis model by inhibiting the activation signal of NLRP3 inflammasome and enhancing Nrf2 activation. | 2015 | Arthritis Res. Ther. | pmid:26584539 |
Liang D et al. | Inhibitory Effect of Cinnamaldehyde, Citral, and Eugenol on Aflatoxin Biosynthetic Gene Expression and Aflatoxin B1 Biosynthesis in Aspergillus flavus. | 2015 | J. Food Sci. | pmid:26556681 |
pmid:26493760 |