menthol has been researched along with 4-methyl-1-(1-methylethyl)-3-cyclohexen-1-ol in 16 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 2 (12.50) | 18.2507 |
2000's | 5 (31.25) | 29.6817 |
2010's | 6 (37.50) | 24.3611 |
2020's | 3 (18.75) | 2.80 |
Authors | Studies |
---|---|
Strassburg, CP; Tukey, RH | 1 |
Cioni, PL; Flamini, G; Macchioni, G; Morelli, I; Perrucci, S | 1 |
Kubo, A; Kubo, I; Muroi, H | 1 |
Frolova, O; Hoang, T; Kidder, J; McNamara, PJ; Milligan-Myhre, K; Proctor, RA; Schroeder, S; Syverson, RE | 1 |
Brand, C; Carson, CF; Finlay-Jones, JJ; Hart, PH; Prager, RH; Riley, TV | 1 |
Brand, C; Carson, CF; Ferrante, A; Finlay-Jones, JJ; Hart, PH; Prager, RH; Riley, TV | 1 |
Api, AM; Bhatia, SP; Letizia, CS; McGinty, D | 1 |
Mitsuhashi, S; Nagamatsu, R; Shigetomi, K; Ubukata, M | 1 |
Jiao, HY; Liu, Y; Tang, QF; Wang, YS | 1 |
Chooluck, K; Derendorf, H; Sathirakul, K; Singh, RP | 1 |
Li, X; Li, YW; Pan, HY; Qin, JC; Qiu, DR; Shi, LN; Sun, JZ; Wang, DC; Wei, DS; Xue, YJ; Zhang, YM | 1 |
Doyle, JM; Krin, A; Medcraft, C; Patterson, D; Schmitz, D; Schnell, M; Shubert, VA | 1 |
de Groot, AC; Schmidt, E | 1 |
Bedini, S; Braca, A; Cioni, PL; Conti, B; Farina, P; Leo, M; Menghini, L; Politi, M | 1 |
Alves, AF; Bezerra Barros, GC; Ferreira, LAMP; Mozzini Monteiro, T; Paiva Ferreira, LKD; Pereira, RA; Piuvezam, MR | 1 |
Api, AM; Belsito, D; Botelho, D; Bruze, M; Burton, GA; Cancellieri, MA; Chon, H; Dagli, ML; Date, M; Dekant, W; Deodhar, C; Fryer, AD; Jones, L; Joshi, K; Kumar, M; Lapczynski, A; Lavelle, M; Lee, I; Liebler, DC; Moustakas, H; Na, M; Penning, TM; Ritacco, G; Romine, J; Sadekar, N; Schultz, TW; Selechnik, D; Siddiqi, F; Sipes, IG; Sullivan, G; Thakkar, Y; Tokura, Y | 1 |
3 review(s) available for menthol and 4-methyl-1-(1-methylethyl)-3-cyclohexen-1-ol
Article | Year |
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Human UDP-glucuronosyltransferases: metabolism, expression, and disease.
Topics: Autoimmunity; Chromosome Mapping; Glucuronides; Glucuronosyltransferase; Humans; Hyperbilirubinemia; Neoplasms; Steroids; Terminology as Topic | 2000 |
Fragrance material review on 4-carvomenthenol.
Topics: Animals; Drug Administration Routes; Guinea Pigs; Humans; Menthol; Molecular Structure; Perfume; Rats | 2008 |
Tea tree oil: contact allergy and chemical composition.
Topics: Bicyclic Monoterpenes; Cyclohexane Monoterpenes; Cyclohexanols; Cyclohexenes; Cymenes; Dermatitis, Allergic Contact; Eucalyptol; Humans; Limonene; Menthol; Monoterpenes; Patch Tests; Peroxides; Tea Tree Oil; Terpenes | 2016 |
13 other study(ies) available for menthol and 4-methyl-1-(1-methylethyl)-3-cyclohexen-1-ol
Article | Year |
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Structure/activity relationship of some natural monoterpenes as acaricides against Psoroptes cuniculi.
Topics: Animals; Female; Insecticides; Male; Mites; Oils, Volatile; Plants; Rabbits; Structure-Activity Relationship; Terpenes | 1995 |
Naturally occurring antiacne agents.
Topics: Acne Vulgaris; Anti-Bacterial Agents; Fatty Alcohols; Membrane Fluidity; Microbial Sensitivity Tests; Plants, Medicinal; Propionibacterium acnes; Structure-Activity Relationship | 1994 |
Surfactants, aromatic and isoprenoid compounds, and fatty acid biosynthesis inhibitors suppress Staphylococcus aureus production of toxic shock syndrome toxin 1.
Topics: Bacterial Toxins; Benzyl Alcohols; Culture Media; Enterotoxins; Fatty Acid Synthesis Inhibitors; Female; Humans; Shock, Septic; Staphylococcus aureus; Superantigens; Surface-Active Agents; Terpenes; Vagina | 2009 |
Terpinen-4-ol, the main component of the essential oil of Melaleuca alternifolia (tea tree oil), suppresses inflammatory mediator production by activated human monocytes.
Topics: Anti-Inflammatory Agents, Non-Steroidal; Cyclohexane Monoterpenes; Cyclohexanols; Cyclohexenes; Cytokines; Emulsions; Eucalyptol; Humans; Interleukin-1; Lipopolysaccharides; Macrophages; Menthol; Monocytes; Monoterpenes; Plants, Medicinal; Solubility; Tea Tree Oil; Terpenes; Tumor Necrosis Factor-alpha | 2000 |
The water-soluble components of the essential oil of Melaleuca alternifolia (tea tree oil) suppress the production of superoxide by human monocytes, but not neutrophils, activated in vitro.
Topics: Anti-Infective Agents, Local; Cells, Cultured; Cyclohexane Monoterpenes; Cyclohexanols; Cyclohexenes; Eucalyptol; Humans; Lipopolysaccharides; Menthol; Monocytes; Monoterpenes; N-Formylmethionine Leucyl-Phenylalanine; Neutrophils; Solubility; Superoxides; Tea Tree Oil; Terpenes; Tetradecanoylphorbol Acetate; Water | 2001 |
Cleavage of α-dicarbonyl compounds by terpene hydroperoxide.
Topics: Carboxylic Acids; Hydrogen Peroxide; Ketones; Menthol | 2012 |
[GC-MS study on fingerprint of volatile oil from Kadsura heteroclita].
Topics: Azulenes; Cluster Analysis; Drugs, Chinese Herbal; Gas Chromatography-Mass Spectrometry; Kadsura; Menthol; Oils, Volatile; Plant Stems; Plants, Medicinal; Quality Control; Reproducibility of Results; Sesquiterpenes | 2012 |
Plasma and dermal pharmacokinetics of terpinen-4-ol in rats following intravenous administration.
Topics: Animals; Blood Proteins; Calibration; Gas Chromatography-Mass Spectrometry; Indicators and Reagents; Injections, Intravenous; Male; Menthol; Microdialysis; Models, Statistical; Quality Control; Rats; Rats, Wistar; Reproducibility of Results; Skin | 2013 |
Identification of insecticidal constituents of the essential oils of Dahlia pinnata Cav. against Sitophilus zeamais and Sitophilus oryzae.
Topics: Animals; Cyclohexane Monoterpenes; Cyclohexenes; Dahlia; Insecticides; Limonene; Menthol; Monoterpenes; Oils, Volatile; Plant Oils; Terpenes; Weevils | 2015 |
Rotational spectroscopy and three-wave mixing of 4-carvomenthenol: A technical guide to measuring chirality in the microwave regime.
Topics: Menthol; Microwaves; Quantum Theory; Rotation; Spectrum Analysis | 2015 |
Reconsidering Hydrosols as Main Products of Aromatic Plants Manufactory: The Lavandin (
Topics: Acyclic Monoterpenes; Animals; Camphor; Eucalyptol; Flowers; Gas Chromatography-Mass Spectrometry; Germination; Insect Repellents; Italy; Lavandula; Menthol; Monoterpenes; Oils, Volatile; Plant Extracts; Plant Oils; Plant Stems; Raphanus; Tribolium | 2020 |
4-Carvomenthenol ameliorates the murine combined allergic rhinitis and asthma syndrome by inhibiting IL-13 and mucus production via p38MAPK/NF-κB signaling pathway axis.
Topics: Allergens; Animals; Anti-Allergic Agents; Asthma; Bronchoalveolar Lavage Fluid; Cytokines; Female; Interleukin-13; Lung; Menthol; Mice, Inbred BALB C; Mucus; NF-kappa B; Ovalbumin; p38 Mitogen-Activated Protein Kinases; Rhinitis, Allergic; Signal Transduction; Syndrome | 2020 |
Update to RIFM fragrance ingredient safety assessment, 4-carvomenthenol, CAS Registry Number 562-74-3.
Topics: Menthol; Odorants; Perfume; Registries | 2022 |