Record Information |
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Version | 5.0 |
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Status | Expected but not Quantified |
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Creation Date | 2012-09-11 20:23:27 UTC |
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Update Date | 2023-02-21 17:24:48 UTC |
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HMDB ID | HMDB0035411 |
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Secondary Accession Numbers | |
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Metabolite Identification |
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Common Name | (R)-Dihydrocitronellol |
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Description | (R)-Dihydrocitronellol, also known as tetrahydrogeraniol or 3,7-dimethyl-1-octanol, belongs to the class of organic compounds known as fatty alcohols. These are aliphatic alcohols consisting of a chain of a least six carbon atoms. Thus, (R)-dihydrocitronellol is considered to be a fatty alcohol. Based on a literature review a significant number of articles have been published on (R)-Dihydrocitronellol. |
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Structure | InChI=1S/C10H22O/c1-9(2)5-4-6-10(3)7-8-11/h9-11H,4-8H2,1-3H3 |
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Synonyms | Value | Source |
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Dihydrocitronellol | MeSH | Tetrahydrogeraniol | MeSH | 3,7-Dimethyl-1-octanol | MeSH | 3,7-Dimethyloctan-1-ol, titanium salt | MeSH | 2,6-Dimethyl-8-octanol | HMDB | 3,7-Dimethyl-(.+/-.)-1-octanol | HMDB | 3,7-Dimethyl-(R)-1-octanol | HMDB | 3,7-Dimethyl-(S)-1-octanol | HMDB | 3,7-Dimethyloctan-1-ol | HMDB, MeSH | dihydro-Citronellol | HMDB | Dimethyl octanol | HMDB | Dimethyl-1-octanol | HMDB | Dimethyloctan-2-ol | HMDB | Dimethyloctanol | HMDB | Geraniol tetrahydride | HMDB | Pelargol | HMDB | perhydro-Geraniol | HMDB | S-3,7-Dimethyl-1-octanol | HMDB | tetrahydro-Geraniol | HMDB |
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Chemical Formula | C10H22O |
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Average Molecular Weight | 158.2811 |
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Monoisotopic Molecular Weight | 158.167065326 |
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IUPAC Name | 3,7-dimethyloctan-1-ol |
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Traditional Name | 3,7-dimethyloctan-1-ol |
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CAS Registry Number | 1117-60-8 |
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SMILES | CC(C)CCCC(C)CCO |
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InChI Identifier | InChI=1S/C10H22O/c1-9(2)5-4-6-10(3)7-8-11/h9-11H,4-8H2,1-3H3 |
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InChI Key | PRNCMAKCNVRZFX-UHFFFAOYSA-N |
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Chemical Taxonomy |
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Description | Belongs to the class of organic compounds known as fatty alcohols. These are aliphatic alcohols consisting of a chain of a least six carbon atoms. |
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Kingdom | Organic compounds |
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Super Class | Lipids and lipid-like molecules |
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Class | Fatty Acyls |
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Sub Class | Fatty alcohols |
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Direct Parent | Fatty alcohols |
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Alternative Parents | |
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Substituents | - Fatty alcohol
- Organic oxygen compound
- Hydrocarbon derivative
- Primary alcohol
- Organooxygen compound
- Alcohol
- Aliphatic acyclic compound
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Molecular Framework | Aliphatic acyclic compounds |
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External Descriptors | Not Available |
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Ontology |
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Physiological effect | |
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Disposition | |
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Process | |
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Role | |
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Physical Properties |
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State | Not Available |
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Experimental Molecular Properties | |
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Experimental Chromatographic Properties | Not Available |
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Predicted Molecular Properties | |
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Predicted Chromatographic Properties | Predicted Collision Cross SectionsPredicted Kovats Retention IndicesUnderivatizedDerivatized |
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Spectra |
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| GC-MS SpectraSpectrum Type | Description | Splash Key | Deposition Date | Source | View |
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Experimental GC-MS | GC-MS Spectrum - (R)-Dihydrocitronellol EI-B (Non-derivatized) | splash10-0a4l-9000000000-cf4e5b3123dc8268afe3 | 2017-09-12 | HMDB team, MONA, MassBank | View Spectrum | Experimental GC-MS | GC-MS Spectrum - (R)-Dihydrocitronellol EI-B (Non-derivatized) | splash10-0a4l-9000000000-cf4e5b3123dc8268afe3 | 2018-05-18 | HMDB team, MONA, MassBank | View Spectrum | Predicted GC-MS | Predicted GC-MS Spectrum - (R)-Dihydrocitronellol GC-MS (Non-derivatized) - 70eV, Positive | splash10-022l-9400000000-a82ed7d0f4f4755f36c6 | 2017-09-01 | Wishart Lab | View Spectrum | Predicted GC-MS | Predicted GC-MS Spectrum - (R)-Dihydrocitronellol GC-MS (1 TMS) - 70eV, Positive | splash10-0g4m-9610000000-0ca6035f57f928ad187d | 2017-10-06 | Wishart Lab | View Spectrum | Predicted GC-MS | Predicted GC-MS Spectrum - (R)-Dihydrocitronellol GC-MS (Non-derivatized) - 70eV, Positive | Not Available | 2021-10-12 | Wishart Lab | View Spectrum |
MS/MS SpectraSpectrum Type | Description | Splash Key | Deposition Date | Source | View |
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Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 10V, Positive-QTOF | splash10-0a4l-1900000000-ae95dfe4e9ba656e1b1c | 2015-04-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 20V, Positive-QTOF | splash10-052f-7900000000-aacea2d911c47e71282b | 2015-04-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 40V, Positive-QTOF | splash10-0a4i-9100000000-cb894cdd71ed845de559 | 2015-04-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 10V, Negative-QTOF | splash10-0a4i-0900000000-b86498e83f376ec918ae | 2015-04-25 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 20V, Negative-QTOF | splash10-056r-0900000000-e9cdc4c9eb7a745aabab | 2015-04-25 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 40V, Negative-QTOF | splash10-0bvr-9800000000-b3654cce129ff74febe7 | 2015-04-25 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 10V, Negative-QTOF | splash10-0a4i-0900000000-45f48cadb8b4ef8a602f | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 20V, Negative-QTOF | splash10-0a6r-0900000000-680af2fd94b1c3853325 | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 40V, Negative-QTOF | splash10-0aou-9500000000-e6f488f230acbc414ba1 | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 10V, Positive-QTOF | splash10-05g0-9200000000-5272d0d7a828c5c7fed4 | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 20V, Positive-QTOF | splash10-000f-9000000000-fd135c154c0dd705ca4b | 2021-09-24 | Wishart Lab | View Spectrum | Predicted LC-MS/MS | Predicted LC-MS/MS Spectrum - (R)-Dihydrocitronellol 40V, Positive-QTOF | splash10-0006-9000000000-f6d0d8356a7878a8e5b1 | 2021-09-24 | Wishart Lab | View Spectrum |
IR SpectraSpectrum Type | Description | Deposition Date | Source | View |
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Predicted IR Spectrum | IR Ion Spectrum (Predicted IRIS Spectrum, Adduct: [M-H]-) | 2023-02-04 | FELIX lab | View Spectrum | Predicted IR Spectrum | IR Ion Spectrum (Predicted IRIS Spectrum, Adduct: [M+H]+) | 2023-02-04 | FELIX lab | View Spectrum | Predicted IR Spectrum | IR Ion Spectrum (Predicted IRIS Spectrum, Adduct: [M+Na]+) | 2023-02-04 | FELIX lab | View Spectrum |
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Biological Properties |
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Cellular Locations | |
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Biospecimen Locations | Not Available |
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Tissue Locations | Not Available |
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Pathways | |
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Normal Concentrations |
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| Not Available |
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Abnormal Concentrations |
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| Not Available |
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Associated Disorders and Diseases |
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Disease References | None |
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Associated OMIM IDs | None |
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External Links |
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DrugBank ID | Not Available |
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Phenol Explorer Compound ID | Not Available |
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FooDB ID | FDB014093 |
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KNApSAcK ID | Not Available |
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Chemspider ID | 7504 |
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KEGG Compound ID | Not Available |
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BioCyc ID | Not Available |
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BiGG ID | Not Available |
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Wikipedia Link | Not Available |
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METLIN ID | Not Available |
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PubChem Compound | 7792 |
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PDB ID | Not Available |
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ChEBI ID | Not Available |
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Food Biomarker Ontology | Not Available |
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VMH ID | Not Available |
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MarkerDB ID | Not Available |
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Good Scents ID | rw1455281 |
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References |
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Synthesis Reference | Not Available |
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Material Safety Data Sheet (MSDS) | Not Available |
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General References | - Hanif RM, Qineng P, Zhan G: Penetration enhancing effect of tetrahydrogeraniol on the percutaneous absorption of 5-fluorouracil from gels in excised rat skin. J Control Release. 1998 Nov 13;55(2-3):297-302. [PubMed:9795085 ]
- Khan GM, Hussain A, Hanif RM: Preparation and evaluation of 5, 9-dimethyl-2-cyclopropyl-2-decanol as a penetration enhancer for drugs through rat skin. Pak J Pharm Sci. 2011 Oct;24(4):451-7. [PubMed:21959804 ]
- Joglekar SS, Dhavlikar RS: Microbial transformation of terpenoids. I. Identification of metabolites produced by a pseudomonad from citronellal and citral. Appl Microbiol. 1969 Dec;18(6):1084-7. [PubMed:5370660 ]
- Popjak G, Holloway PW, Bond RP, Roberts M: Analogues of geranyl pyrophosphate as inhibitors of prenyltransferase. Biochem J. 1969 Feb;111(3):333-43. [PubMed:4304160 ]
- Hanif RM, Ping Q, Muo F: Synthesis and effect of two new penetration enhancers on the transdermal delivery of 5-fluorouracil through excised rat skin. Chem Pharm Bull (Tokyo). 1998 Sep;46(9):1428-31. [PubMed:9775437 ]
- Simons K, Toomre D: Lipid rafts and signal transduction. Nat Rev Mol Cell Biol. 2000 Oct;1(1):31-9. [PubMed:11413487 ]
- Watson AD: Thematic review series: systems biology approaches to metabolic and cardiovascular disorders. Lipidomics: a global approach to lipid analysis in biological systems. J Lipid Res. 2006 Oct;47(10):2101-11. Epub 2006 Aug 10. [PubMed:16902246 ]
- Sethi JK, Vidal-Puig AJ: Thematic review series: adipocyte biology. Adipose tissue function and plasticity orchestrate nutritional adaptation. J Lipid Res. 2007 Jun;48(6):1253-62. Epub 2007 Mar 20. [PubMed:17374880 ]
- Lingwood D, Simons K: Lipid rafts as a membrane-organizing principle. Science. 2010 Jan 1;327(5961):46-50. doi: 10.1126/science.1174621. [PubMed:20044567 ]
- (). Yannai, Shmuel. (2004) Dictionary of food compounds with CD-ROM: Additives, flavors, and ingredients. Boca Raton: Chapman & Hall/CRC.. .
- Gunstone, Frank D., John L. Harwood, and Albert J. Dijkstra (2007). The lipid handbook with CD-ROM. CRC Press.
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